BACKGROUND:Subarachnoid hemorrhage from ruptured saccular intracranial aneurysms (IAs) is fatal in ≈50% of cases. Significant effort has been devoted to identifying the molecular pathogenesis of IAs to develop new therapies to treat or halt the progression of IAs. METHODS:Paired deep whole-exome sequencing was performed on the walls of sporadic IAs in a discovery set of 11 sporadic IAs from 10 unrelated patients and matching peripheral blood DNA. Somatic alterations unique to the IA tissue were characterized. Variants were validated with gene-targeted deep next-generation sequencing. The genetic landscape of a validation cohort of 68 IAs was analyzed by targeted deep sequencing of all altered genes detected in the discovery cohort as well as other genes associated with aneurysm formation. RESULTS:Whole-exome sequencing revealed somatic variants in 7 of the 11 IA walls. These somatic variants were found at low allele frequencies (AFs), ranging from 2% to 19% at a consistent AF range within a sample, suggesting a cell-based population. Most coding somatic variants found were missense (91%). Notably, 2 IAs from 1 patient were included in the discovery set and both harbored unique somatic variants, not detected in the other sample. Similarly, a different aneurysm from a patient in the discovery cohort was included in the larger validation cohort and revealed a unique genotype. Saccular aneurysms harbored somatic variants in genes falling into several functional categories including angiogenesis (PKD1, XDH), DNA repair (SFB3, DCC, MLH1), extracellular matrix (FBN1, COL4A1, COL4A5, MMP8) and cancer genes (ERBb4 and PTCH1). Deep targeted sequencing of these genes in a larger cohort by next-generation sequencing revealed other somatic variants in 11 of the same genes in IA walls from 10 unrelated patients, similarly in low AFs. Another custom designed next-generation sequencing panel identified 7 other somatic variants in genes associated with IA formation. Notably, there were no common somatic variants among the 2 aneurysms from the same patient. CONCLUSIONS:Saccular IAs harbor somatic low AF variants in coding genes predicted to alter protein function. AFs occurred in a similar range within and between samples, suggesting a cell- based population driving the pathogenesis of saccular IAs. Recurrent variants in genes known to be involved in IAs such as COL4A5 as well as novel genes (eg, ERBb4 and PABIR3) also suggests a new frontier for further research.
Dyslexia is a common learning impairment with a genetic basis that affects word reading and spelling. An increasing list of loci and genes have been implicated, but analyses to-date have investigated only limited genomic variation within each locus with no confirmed pathogenic variants identified. Our study is the first to comprehensively sequence both coding and cis-acting regulatory regions of such genes in a large study sample. In a collection of >2000 participants in families from three independent sites, we performed targeted capture and comprehensive sequencing of all exons and some regulatory elements of five candidate risk genes (DNAAF4, CYP19A1, DCDC2, KIAA0319 and GRIN2B) for which prior evidence for a role in dyslexia exists from more than one sample. We evaluated evidence for association in each of six dyslexia-related quantitative phenotypes (traits) using both individual common single nucleotide polymorphisms and aggregated rare variants. We detected no promoter alterations and few deleterious variants in the coding exons, none of which showed evidence of association with any trait. Single variant and aggregate testing of DNAAF4 failed to detect significant evidence of association with any of the traits. The other four genes provided evidence of association with one or more traits. A common variant downstream of CYP19A1 showed significant evidence of association with multiple traits with or without verbal IQ (VIQ) adjustment. A haplotype that stretches from the downstream region of KIAA0319 to the second intron of DCDC2 was associated with reduced performance on timed real word reading. Finally, rare exonic variants in GRIN2B were associated with performance on spelling, with or without adjustment for VIQ. Our findings from this large-scale sequencing study complement those from genome-wide association studies, argue against the causative involvement of large-effect coding variants in these five candidate genes, support a multigenic etiology, and suggest a role of transcriptional regulation.
ObjectiveMitochondrial DNA (mtDNA) depletion/deletions syndrome (MDDS) comprises a group of diseases caused by primary autosomal defects of mtDNA maintenance. Our objective was to study the etiology of MDDS in 4 patients who lack pathogenic variants in known genetic causes.MethodsWhole exome sequencing of the probands was performed to identify pathogenic variants. We validated the mitochondrial defect by analyzing mtDNA, mitochondrial dNTP pools, respiratory chain activities, and GUK1 activity. To confirm pathogenicity of GUK1 deficiency, we expressed 2 GUK1 isoforms in patient cells.ResultsWe identified biallelic GUK1 pathogenic variants in all 4 probands who presented with ptosis, ophthalmoparesis, and myopathic proximal limb weakness, as well as variable hepatopathy and altered T‐lymphocyte profiles. Muscle biopsies from all probands showed mtDNA depletion, deletions, or both, as well as reduced activities of mitochondrial respiratory chain enzymes. GUK1 encodes guanylate kinase, originally identified as a cytosolic enzyme. Long and short isoforms of GUK1 exist. We observed that the long isoform is intramitochondrial and the short is cytosolic. In probands’ fibroblasts, we noted decreased GUK1 activity causing unbalanced mitochondrial dNTP pools and mtDNA depletion in both replicating and quiescent fibroblasts indicating that GUK1 deficiency impairs de novo and salvage nucleotide pathways. Proband fibroblasts treated with deoxyguanosine and/or forodesine, a purine phosphatase inhibitor, ameliorated mtDNA depletion, indicating potential pharmacological therapies.InterpretationPrimary GUK1 deficiency is a new and potentially treatable cause of MDDS. The cytosolic isoform of GUK1 may contribute to the T‐lymphocyte abnormality, which has not been observed in other MDDS disorders. ANN NEUROL 2024
Background NOTCH3 is the causative gene for autosomal dominant cerebral arteriopathy with subcortical infarctions and leukoencephalopathy (CADASIL) which is associated with both stroke and dementia. When CADASIL presents primarily as dementia it can be difficult to distinguish from Alzheimer's disease (AD) at both the clinical and neuropathological levels. Methods We performed exome sequencing of several affected individuals from a large family affected with AD. PCR amplification and direct Sanger sequencing were used to verify variants detected by exome analysis and to screen family members at-risk to carry those variants. Neuropathologic brain evaluation by immunohistochemistry and MRI were performed for the carriers of the NOTCH3 variant. Results In a three-generation family with AD, we found a c.601 T > C p.Cys201Arg variant in the NOTCH3 gene that caused clinical and neuropathological manifestations of CADASIL. These features included earlier onset of dementia accompanied by behavioral abnormalities in the father and son and white matter abnormalities in the asymptomatic grandson. The family is one branch of a large pedigree studied by the Alzheimer's Disease Sequencing Project (ADSP). As part of the ADSP linkage analysis and whole genome sequencing endeavor, an ABCA1 variant, p.Ala937Val, was previously found associated with AD in this pedigree. Conclusions Our findings, together with other reported pathogenic missense variants of the C201 codon in NOTCH3, support the role of cysteine 201 as a mutation hotspot for CADASIL and highlight the genetic complexity both clinically and pathologically of AD and related dementia.
Background: Assessing how clinical resistance to PARP inhibitors develops has been challenging, due to the lack of coverage of potential resistance genes in sequencing panels and biopsies being subject to spatial heterogeneity. We studied the development of PARPi and/or platinum resistant disease using both tissue and a novel liquid biopsy assay, in patients treated for BRCA1/2-mutated metastatic breast cancer (BRCA1/2m mBC). Approach: A cohort of 35 mBC patients with germline or somatic BRCA1/2 mutations were identified as having developed PARPi or platinum resistant disease. Tumour biopsies were analysed by exome and transcriptome sequencing whereas ctDNA isolated from plasma sampled across the pre-treatment, response and eventual progression journey were analysed using the Guardant INFINITY platform equipped to detect mutations in >800 genes, and genome wide methylation, including promoter methylation in 398 cancer-related genes. Somatic mutations or regions of methylation that were associated with resistance were identified, including BRCA1/2 reversion mutations. Somatic mutations with the potential to cause PARPi resistance were annotated using CRISPR screen data and other functional analyses describing genes that alter PARPi synthetic lethality. Results: The most common resistance mechanism was BRCA1/2 reversion mutation (51%; n=8 BRCA1m patients, n=10 BRCA2m patients). Most reversions (77%) occurred via deletions (BRCA1, 70%; BRCA2, 79%) and exhibited microhomology use at junctions (> 80% for both BRCA1 and BRCA2). In 14 patients, multiple concurrent reversion mutations were detected with VAFs ranging from 0.1-40% for BRCA1 and 0.05-18% for BRCA2. Changes in VAF over time indicated that different reversions in the same patient may impart different fitness advantages in the face of treatment. Loss-of-function mutations in the 53BP1-Shieldin pathway were identified in two BRCA1m patients, and VUS mutations in the pathway were seen in two further patients. In some patients, reversion mutations co-occurred with either 53BP1-Shieldin pathway mutations or with replication fork stability mutations (PAXIP1 in BRCA2m patients) - indicating concurrent but mechanistically distinct forms of resistance develop in the same patient. We isolated a PDX model from one patient that exhibits resistance via both BRCA1 reversion and loss of 53BP1, allowing this phenomenon to be modelled in more detail. We also detected BRCA1 methylation in ctDNA in a patient with a somatic rearrangement in BRCA1. Conclusions: Liquid biopsy profiling of PARPi-resistance breast cancer patients indicates that many patients develop multiple reversion mutations, and that alterations in the 53BP1-Shieldin pathway are present but less frequent. The co-occurrence of 53BP1-Shieldin pathway mutations and reversion mutations suggests parallel mechanisms of resistance can operate in the same patient. Citation Format: Elizabeth Harvey-Jones, Maya Raghunandan, Luisa Robbez-Masson, Alaguthurai Thanussuyah, Roberta Liccardo, Arielle Yablonovitch, Mingyang Cai, Leylah Drusbosky, Michael Dorschner, Lorena Magraner Pardo, Rebecca Marlow, Asha Konde, Jennifer Trendell, John Alexander, Syed Haider, Chris Starling, Ioannis Roxanis, Jennifer Yen, Stephen J. Pettitt, Christopher J. Lord, Andrew N. Tutt. Longitudinal analysis of PARP inhibitor and platinum resistance in BRCA1/2m breast cancer using liquid biopsy [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2023; Part 1 (Regular and Invited Abstracts); 2023 Apr 14-19; Orlando, FL. Philadelphia (PA): AACR; Cancer Res 2023;83(7_Suppl):Abstract nr 6094.
Background: BRCA1 promoter methylation (PM) is an early initiating event in cancer, occurring in 3 to 65.2% of all breast tumors, and 30 to 65% of triple negative tumors. BRCA1 PM has been associated with defective homologous recombination repair (HRR), early onset of breast and ovarian cancer, and improved clinical response to adjuvant chemotherapy. Historically, there has been no diagnostic assay that comprehensively evaluates both BRCA1 PM and genomic alterations in cell-free circulating tumor DNA (ctDNA). Here, we describe the novel detection of BRCA1 PM and genomic alterations in a cohort of patients with breast cancer using GuardantINFINITY, a liquid biopsy assay interrogating 800+ genes and genome-wide methylation detection. Method: We assessed for BRCA1 PM in ctDNA from 274 patients with late-stage breast cancer. Genomic sequencing of 800+ genes and PM profiling of 398 genes was performed by GuardantINFINITY. The positive calling threshold for PM was established by comparing cell-free DNA derived from patients with cancer and cancer-free donors. The limit of detection (LoD) was determined through in silico and experimental titrations of ctDNA from clinical samples and cell lines with known gene PM into the plasma of cancer-free donors. Results: Among the 274 patients with advanced breast cancer, 8 (2.9%) had germline pathogenic mutations in BRCA1, BRCA2, or ATM. BRCA1 PM was detected in 11/274 (4.0%) patients at the predefined threshold of >99% specificity. BRCA1 PM detection in this cohort was 8.9% (8/90) when excluding samples with low tumor shedding (<1% epigenomic tumor fraction in cfDNA). Among the 11 patients with BRCA1 PM detected in ctDNA, one had a co-occurring somatic BRCA1 nonsense variant (p.S361*); none of the remaining patients with BRCA1 PM had another HRR-related mutation detected in cfDNA. Among patients without BRCA1 PM detected, pathogenic somatic alterations were detected in BRCA2, ATM, and CHEK2 in 25 (9.4%) patients. In silico simulations using clinical samples with BRCA1 PM indicated an LoD of 0.0408%. BRCA1 PM was not detected in 3210 individual and mixed cancer-free clinical samples, indicating a high specificity for BRCA1 PM calls. Conclusion: GuardantINFINITY, a plasma-based diagnostic assay, detected both BRCA1 PM and genomic alterations in this unspecified advanced breast cancer cohort. The BRCA1 PM detection rates of 4.0-8.9% are consistent with values previously reported in the literature. As BRCA1 PM has important prognostic and therapeutic implications for the management of breast (as well as ovarian) cancers, additional studies are warranted to further describe the PM patterns across breast cancer subtypes and how these patterns both influence and are influenced by disease evolution and therapeutic response. Liquid biopsy thus serves as a suitable method to noninvasively identify and monitor changes in both genomics and epigenomics. Citation Format: Jennifer Yen, Sai Chen, Colby Jenkins, Brooke Overstreet, Yu Fu, Jun Zhao, Tingting Jiang, Leylah Drusbosky, Stephen Pettitt, Michael Dorschner, Lauren Lawrence, Han-Yu Chuang, Andrew Tutt. BRCA1 promoter methylation in sporadic breast cancer patients detected by liquid biopsy [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2023; Part 1 (Regular and Invited Abstracts); 2023 Apr 14-19; Orlando, FL. Philadelphia (PA): AACR; Cancer Res 2023;83(7_Suppl):Abstract nr 6603.
To describe the genetic and pathological findings of three Yellow-crowned Amazon parrot (Amazona ochrocepahala) siblings with a severe and rapidly progressive neurological phenotype.
PURPOSE:Effective approaches to communicate genomic information are needed to ensure equitable care. In a randomized controlled superiority trial, we tested a novel practice model that aims to make genetic counseling inclusive, by making the communication accessible, relational, and actionable (ARIA). METHODS:In total, 696 English- and Spanish-speaking patients aged 18 to 49 years, enriched for individuals from historically underserved backgrounds, were randomized in 1:1 ratio to ARIA or usual care. Primary outcomes were accuracy of recall, communication satisfaction, and perceived understanding. In total, 33 participants completed qualitative interviews. RESULTS:Recall and understanding were high for all participants. ARIA participants scored higher on the relationship scale of communication satisfaction (mean difference = 0.09, 95% CI = <0.01 to 0.17). Moderator analyses of communication satisfaction showed that those with lower health literacy reported less communication difficulty in ARIA and those using medical interpreters reported greater communication ease in ARIA. No significant difference was found on other primary and secondary outcomes. Qualitative data enhanced understanding of how and why ARIA can be effective. CONCLUSION:This study provides evidence that a genetic counseling intervention that focuses on specific communication skills to enhance relationship-building, patient engagement, and comprehension can be effective with all patients and may be especially valuable for patients of lower health literacy and Spanish-speakers who use a medical interpreter.
INTRODUCTION: The pathogenesis of intracranial aneurysms (IAs) is complex, with both genetic and environmental risk factors. Much effort has been devoted to identifying the molecular mechanisms of IAs to develop new therapies halting the progression of IAs. METHODS: Deep whole exome sequencing was performed for 11 anterior circulation, sporadic saccular IAs from 10 unrelated patients. Paired aneurysm-peripheral blood DNA samples were compared to evaluate the somatic saccular aneurysm exome alterations. Variants were validated with deep next generation sequencing methods. The genetic landscape of a validation cohort of 60 aneurysms was analyzed by targeted deep sequencing of a vascular panel of genes. RESULTS: Whole exome sequencing revealed somatic variants in 7 of 11 saccular aneurysms. Most coding somatic variants found were missense (68%). Somatic variants in multiple genes were common, all falling into similar allele frequencies (3-18%). Two aneurysms from one patient underwent exome sequencing with differing alterations (Acom with no alterations and MCA with 20 variants with about 8% allele frequencies). Targeted sequencing validation of these in a larger cohort revealed alterations in similar allele fractions. Saccular aneurysms harbored variants in genes falling into several functional categories including angiogenesis (PKD1), DNA repair (SFB3, DCC, MLH1), ECM (COL4A5, MMP8) and cancer genes (ERBb4 and PTCH1). Double variants, predicted to be protein/function altering were found in the following genes: DCC, ATXN1L, CCDC178, GAD2, IARS2, ERBb4, COL4A5, FAM122C, ANK2, SF3B3, ADCY7, ABCB4 and RAB11FIP1. CONCLUSION: Anterior circulation saccular IAs harbor somatic low allele fraction variants in coding genes predicted to alter protein function. Allele fractions occurred in a similar range within and between samples suggesting a cell-based population driving the pathogenesis of saccular IAs. Recurrent variants in genes known to be involved in IAs (PKD1 and COL4A5) and novel genes (ERBb4 and FAM122C) are new frontiers for further research.
ABSTRACTBackgroundSeveral genetic models that recapitulate neurodegenerative features of Parkinson’s disease (PD) exist, which have been largely based on genes discovered in monogenic PD families. However, spontaneous genetic mutations have not been linked to the pathological hallmarks of PD in non-human vertebrates.ObjectiveTo describe the genetic and pathological findings of three yellow crowned parrot (Amazona ochrocepahala) siblings with a severe and rapidly progressive neurological phenotype.MethodsThe phenotype of the three parrots included severe ataxia, head tilt, and stargazing, while their parents were phenotypically normal. Tests to identify avian viral infections and brain imaging studies were all negative. Due to their inability to survive independently, they were all euthanized at age 3 months and their brains underwent neuropathological examination and proteasome activity assays. Whole genome sequencing (WGS) was performed on the three affected parrots and their parents.ResultsThe brains of affected parrots exhibited neuronal loss, spongiosis, and Lewy bodies in the neocortex, amygdala, hypothalamus, periaqueductal gray matter, dorsal vagal nucleus, in some cerebellar Purkinje cells, and in the basal ganglia. Proteasome activity was significantly reduced in the affected parrots compared to a control (p<0.05). WGS identified a single homozygous missense mutation (p.V559L) in a highly conserved amino acid residue within the pleckstrin homology (PH) domain of the Calcium Dependent Secretion Activator 2 (CADPS2) gene. Previous studies suggest that CADPS2 is expressed at high levels in the substantia nigra where it regulates BDNF release. Thus, disruption of CADPS2 function could impact survival of dopaminergic neurons. Furthermore, CADPS2 expression is in part regulated by two well established PD genes, LRRK2 and SNCA.ConclusionsOur data suggest that a homozygous mutation in the CADPS2 gene causes a severe neurodegenerative phenotype with Lewy bodies in parrots. Although CADPS2 variants have not been reported to cause PD in humans, further investigation of the gene in model organisms might provide important insights into the pathophysiology of Lewy body disorders.
Background Activating variants in platelet-derived growth factor receptor beta (PDGFRB), including a variant we have previously described (p.Tyr562Cys [g.149505130T>C [GRCh37/hg19]; c.1685A>G]), are associated with development of multiorgan pathology, including aneurysm formation. To investigate the association between the allele fraction genotype and histopathologic phenotype, we performed an expanded evaluation of post-mortem normal and aneurysmal tissue specimens from the previously published index patient. Methods and Results Following death due to diffuse subarachnoid hemorrhage in a patient with mosaic expression of the above PDGFRB variant, specimens from the intracranial, coronary, radial and aortic arteries were harvested. DNA was extracted and alternate allele fractions (AAF) of PDGFRB were determined using digital droplet PCR. Radiographic and histopathologic findings, together with genotype expression of PDGFRB were then correlated in aneurysmal tissue and compared to non-aneurysmal tissue. The PDGFRB variant was identified in the vertebral artery, basilar artery, and P1 segment aneurysms (AAF: 28.7%, 16.4%, and 17.8%, respectively). It was also identified in the coronary and radial artery aneurysms (AAF: 22.3% and 20.6%, respectively). In phenotypically normal intracranial and coronary artery tissues, the PDGFRB variant was not present. The PDGFRB variant was absent from lymphocyte DNA and normal tissue, confirming it to be a non-germline somatic variant. Primary cell cultures from a radial artery aneurysm localized the PDGFRB variant to CD31-, non-endothelial cells. Conclusions Constitutive expression of PDGFRB within the arterial wall is associated with the development of human fusiform aneurysms. The role of targeted therapy with tyrosine kinase inhibitors in fusiform aneurysms with PDGFRB mutations should be further studied.
PurposeThis study aimed to evaluate the laboratory-related outcomes of participants who were offered genomic testing based on cancer family history risk assessment tools.MethodsPatients from clinics that serve populations with access barriers, who are screened at risk for a hereditary cancer syndrome based on adapted family history collection tools (the Breast Cancer Genetics Referral Screening Tool and PREMM5), were offered exome-based panel testing for cancer risk and medically actionable secondary findings. We used descriptive statistics, electronic health record review, and inferential statistics to explore participant characteristics and results, consultations and actions related to pathogenic/likely pathogenic variants identified, and variables predicting category of findings, respectively.ResultsOf all the participants, 87% successfully returned a saliva kit. Overall, 5% had a pathogenic/likely pathogenic cancer risk variant and 1% had a secondary finding. Almost all (14/15, 93%) participants completed recommended consultations with nongenetics providers after an average of 17 months. The recommended actions (eg, breast magnetic resonance imaging) were completed by 17 of 25 participants. Participant personal history of cancer and PREMM5 score were each associated with the category of findings (history and colon cancer finding, Fisher’s exact P = .02; history and breast cancer finding, Fisher’s exact P = .01; PREMM5TM score; and colon cancer finding, Fisher’s exact P < .001).ConclusionThis accessible model of hereditary cancer risk assessment and genetic testing yielded results that were often acted upon by patients and physicians.
Background: Inactivating HRR gene mutations can lead to HRR deficiency (HRD) and predict response to PARPi therapy in patients with breast cancer. Copy number loss and large genomic rearrangements (LGR) can result in HRD but are challenging to detect in ctDNA. Here, we present the analytical validation of homozygous deletions, loss of heterozygosity (LoH) and LGR detection on the Guardant360 (G360) liquid biopsy panel, previously validated for detection of small variants, copy number amplifications, and fusions. We present real-world outcomes of BRCA1/2-mutant PARPi-treated patients to demonstrate the clinical validity of the detected variants. Methods: Analytical validation was performed using the G360 83-gene ctDNA panel. Cell line DNA and clinical patient cfDNA were titrated into matched normal cell line DNA or healthy donor cfDNA to establish the limit of detection (LoD) and precision for copy number loss and LGRs, respectively. Accuracy results were compared to those from an orthogonal, externally validated tissue and ctDNA panel. De-identified, longitudinal, claims data were linked to the cancer genomic profiles in Guardant INFORM, a clinical-genomics database. Advanced PARPi treated breast cancer patients with an inactivating or reversion BRCA1/2 mutation detected by G360 were assessed. Results: The analytical sensitivity (95% LoD) for detecting homozygous and LoH deletions for deletion sizes >10MB was established at tumor fractions (TF) of 12.5% and 25%, respectively. The 95% LoD for LGRs was 0.2% variant allele fraction (VAF). The per-sample false positive rate for copy number loss and LGRs was <0.5%. Prevalence of BRCA1/2 homozygous deletions, LoH and LGRs in >1000 advanced breast cancer patients was 1.8%, 16.6% and 0.25% respectively, compared to 2.4%, 56.7% and 0.3% in TCGA. To verify the clinical impact of cfDNA-detected HRR alterations, overall survival was determined for PARPi-treated patients with >1 BRCA1/2 germline or somatic SNV, indel or LGR reversion mutation to be 23.2 months [16.4, 30, CI, n=75] compared to 54.4 [28, NA, CI, n=14] months for BRCA1/2-mutant patients without a reversion (p-value=0.049). Conclusion:. This analytical validation demonstrates that G360 detection of inactivating mutations, including copy number loss and LGRs, is highly sensitive, reliable and robust. Real-world evidence analysis confirmed worse survival outcomes in PARPi treated patients harboring a BRCA1/2 reversion compared to BRCA1/2-mutant patients with no reversion. This data further supports ctDNA as a compelling non-invasive means to identify potential PARPi sensitizing and resistance mutations in patients with advanced breast cancer. Citation Format: Jennifer Yen, Leylah Drusbosky, Caroline Weipert, Nicole Zhang, David Hanna, Catalin Barbacioru, Hao Wang, Alex Artyomenko, Arielle Yablonovitch, Yu Fu, Aaron Hardin, Nagesh Alla, Robert Foley, Max Maligska, Bhargavi Panchangam, Phil Yen, Jane Meisel, Neelima Vidula, Massimo Cristofanilli, Jeremy Force, Michael Dorschner, Martina Lefterova, Elena Helman, Becky Nagy, Darya Chudova, AmirAli Talasaz. Analytical and clinical validation of a ctDNA assay for detecting copy number loss and structural rearrangement variants contributing to homologous recombination and repair (HRR) deficiency [abstract]. In: Proceedings of the 2021 San Antonio Breast Cancer Symposium; 2021 Dec 7-10; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2022;82(4 Suppl):Abstract nr P5-13-29.
PURPOSE Patients with metastatic triple-negative breast cancer (mTNBC) have poor outcomes. The Intensive Trial of Omics in Cancer (ITOMIC) sought to determine the feasibility and potential efficacy of informing treatment decisions through multiple biopsies of mTNBC deposits longitudinally over time, accompanied by analysis using a distributed network of experts. METHODS Thirty-one subjects were enrolled and 432 postenrollment biopsies performed (clinical and study-directed) of which 332 were study-directed. Molecular profiling included whole-genome sequencing or whole-exome sequencing, cancer-associated gene panel sequencing, RNA-sequencing, and immunohistochemistry. To afford time for analysis, subjects were initially treated with cisplatin (19 subjects), or another treatment they had not received previously. The results were discussed at a multi-institutional ITOMIC Tumor Board, and a report transmitted to the subject's oncologist who arrived at the final treatment decision in conjunction with the subject. Assistance was provided to access treatments that were predicted to be effective. RESULTS Multiple biopsies in single settings and over time were safe, and comprehensive analysis was feasible. Two subjects were found to have lung cancer, one had carcinoma of unknown primary site, tumor samples from three subjects were estrogen receptor–positive and from two others, human epidermal growth factor receptor 2–positive. Two subjects withdrew. Thirty-four of 112 recommended treatments were accessed using approved drugs, clinical trials, and single-patient investigational new drugs. After excluding the three subjects with nonbreast cancers and the two subjects who withdrew, 22 of 26 subjects (84.6%) received at least one ITOMIC Tumor Board–recommended treatment. CONCLUSION Further exploration of this approach in patients with mTNBC is merited.
PURPOSE:Individuals having genomic sequencing can choose to be notified about pathogenic variants in genes unrelated to the testing indication. A decision aid can facilitate weighing one's values before making a choice about these additional results. METHODS:We conducted a randomized trial (N = 231) comparing informed values-choice congruence among adults at risk for a hereditary cancer syndrome who viewed either the Optional Results Choice Aid (ORCA) or web-based additional findings information alone. ORCA is values-focused with a low-literacy design. RESULTS:Individuals in both arms had informed values-choice congruence (75% and 73% in the decision aid and web-based groups, respectively; odds ratio [OR] = 1.10, 95% CI = 0.58-2.08). Most participants had adequate knowledge (79% and 76% in the decision aid and web-based groups, respectively; OR = 1.20, 95% CI = 0.61-2.34), with no significant difference between groups. Most had information-seeking values (97% and 98% in the decision aid and web-based groups, respectively; OR = 0.59, 95% CI = 0.10-3.61) and chose to receive additional findings. CONCLUSION:The ORCA decision aid did not significantly improve informed values-choice congruence over web-based information in this cohort of adults deciding about genomic results. Both web-based approaches may be effective for adults to decide about receiving medically actionable additional results.
We describe two novel missense variants in CACNA1A segregating in a family with variable severity of ataxia/oculomotor dysfunction, neurobehavioral impairments, and epilepsy. The most severe outcome occurred in a compound heterozygous proband, which could represent variable expression of the paternal allele or biallelic modulation of calcium channel function. Acetazolamide and lamotrigine were effective for seizure control.
Abstract Background Metastatic triple negative breast cancer (mTNBC) is an inherently diverse disease and while molecular classification of mTNBC has assisted in treatment decisions, if based on only an initial biopsy, it does not take into account the evolution of metastatic cancer. Characterization of emerging metastases is needed to reveal both new resistance or sensitivity to available therapeutics. The goal of “Intensive Trial of OMics in Cancer (ITOMIC) - Intensive Longitudinal Monitoring in Subjects With Triple-Negative Breast Cancer” (NCT01957514) - was to determine the feasibility of longitudinal collection of patient biopsies that would be subjected to molecular analysis to provide actionable, relevant and timely information to guide treatment decisions.Methods Multiple biopsies were collected longitudinally, including pre- and post-treatment, from 29 mTNBC patients enrolled in the ITOMIC study and subjected to multi-dimensional molecular profiling including WES, WGS, cancer gene panel sequencing, RNA-seq, and proteomics and/or IHC for tumor biomarkers. This information was used to guide iterative, patient- and tumor- individualized treatment recommendations made by a multi-institutional ITOMIC Tumor Board (ITB) and conveyed to each subject’s oncologist.Results Longitudinal biopsy collection was found to be safe. Molecular profiling revealed that 2 of an original 31 enrolled subjects likely had lung cancer rather than mTNBC, supporting the merit of repeated tissue analysis. While the other 29 subjects had all been given a diagnosis of mTNBC before entering the trial, estrogen receptor, progesterone receptor, and/or HER2 were found to be over-expressed in at least one sample for 12 subjects; appearance of receptor positivity suggests targeted therapy may be effective. Tumor evolution in response to the first on-study treatment for most subjects (cisplatin) was revealed by copy number alterations, changes in single nucleotide variants, and insertions/deletions in pre-/post-treatment biopsies. Over the course of the study, the ITB convened 54 times and 39 of 182 recommended treatments were evaluated and accessed through either an existing clinical trial, a single patient IND, approved off label or label indication. While not all ITB treatment recommendations were followed, 24 subjects did receive at least one ITB-recommended drug, frequently as part of a clinical trial. Currently, for 27 subjects (2 withdrew) median survival is ~31 months. There are 4 surviving patients in treatment with a remarkable median survival of >51 months.Conclusion Collection and molecular analysis of multiple biopsies during the course of patient’s disease, shown here to be safe and feasible, provides information vital to appropriate treatment choice and reveals new targets for and resistance to therapy in metastatic TNBC. Citation Format: Kimberly A Burton, Eric Q Konnick, Sibel Blau, Michael O Dorschner, Julie Gralow, Rahul Parulkar, Elisabeth Mahen, Patricia Spilman, Stephanie Parker, Francis M Senecal, Colin Pritchard, Christopher Szeto, Jing Zhu, Vijayakrishna K Gadi, Stephen C Benz, Shahrooz Rabizadeh, Patrick Soon-Shiong, Carl Anthony Blau. Multidimensional molecular profiling of repeated metastatic TNBC biopsies in the intensive trial of omics safely guides treatment decisions [abstract]. In: Proceedings of the 2020 San Antonio Breast Cancer Virtual Symposium; 2020 Dec 8-11; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2021;81(4 Suppl):Abstract nr PS11-13.
Advances in the application of genomic technologies in clinical care have the potential to increase existing healthcare disparities. Studies have consistently shown that only a fraction of eligible patients with a family history of cancer receive recommended cancer genetic counseling and subsequent genetic testing. Care delivery models using pre-test and post-test counseling are not scalable, which contributes to barriers in accessing genetics services. These barriers are even more pronounced for patients in historically underserved populations. We have designed a multimodal intervention to improve subsequent cancer surveillance, by improving the identification of patients at risk for familial cancer syndromes, reducing barriers to genetic counseling/testing, and increasing patient understanding of complex genetic results. We are evaluating this intervention in two large, integrated healthcare systems that serve diverse patient populations (NCT03426878). The primary outcome is the number of diagnostic (hereditary cancer syndrome) findings. We are examining the clinical and personal utility of streamlined pathways to genetic testing using electronic medical record data, surveys, and qualitative interviews. We will assess downstream care utilization of individuals receiving usual clinical care vs. genetic testing through the study. We will evaluate the impacts of a literacy-focused genetic counseling approach versus usual care genetic counseling on care utilization and participant understanding, satisfaction, and family communication. By recruiting participants belonging to historically underserved populations, this study is uniquely positioned to evaluate the potential of a novel genetics care delivery program to reduce care disparities.
Genetic testing has become routine for many inherited conditions; however, little is known about the unique issues that arise when offering genetic testing for inherited forms of dementia. To better understand the patient perspective, we surveyed study participants about their experiences as they underwent genetic counseling and genetic testing for dementia. We recruited 50 pairs of subjects. Each pair was comprised of one person with cognitive impairment and a cognitively intact co-participant. Study participants received pre- and post-test genetic counseling and comprehensive genetic testing for dementia. During the study, participant pairs completed four surveys which asked about their experience. Testing began with a 38 gene dementia panel. Participants with negative panel results or variants of uncertain significance (VUS) were reflexed to exome sequencing (ES). Twenty-nine participants (58%) reported that their primary motivation to join the study was for the benefit to their families. Fifty-two percent of participants initially planned to use their test results to make health and wellness changes, but, six months after disclosure, only 31% had done so. Six months after result disclosure, approximately 90% of participant pairs accurately recalled their genetic test results. Overall satisfaction with testing was high, and decision regret was negligible. This observational study describes the experiences of study participants undergoing genetic counseling and genetic testing for dementia and found that most participant pairs accurately recalled their results up to six months following disclosure while also maintaining high levels of satisfaction without decision regret. These findings suggest that, in the context of genetic counseling, genetic testing can be effectively used in this population.