Autism spectrum disorder is a neurodevelopmental condition typified by difficulties in social interactions, repetitive and restricted behaviour and heightened anxiety. Increasing evidence suggests that oxidative stress and neuroinflammatory processes are crucial in the development of these behavioural abnormalities. Ertugliflozin, a sodium-glucose cotransporter-2 inhibitor approved by the FDA for treating type 2 diabetes mellitus, has also been reported to exert antioxidant and anti-inflammatory effects. BTBR T + Itpr3tf/J (BTBR) mice are widely used as a preclinical model of autism spectrum disorder, as they show core autism-like behavioural features. The present study investigated whether ertugliflozin could ameliorate autism spectrum disorder-like behaviour in BTBR mice and explored the associated mechanisms. It was found that ertugliflozin treatment significantly improved social interaction while reducing repetitive behaviours and anxiety-like responses compared with untreated BTBR mice. Ertugliflozin (20 mg/kg/day), administered orally, reduced neuronal loss in the CA1 region of the hippocampus and the prefrontal cortex. In addition, ertugliflozin reduced oxidative stress, as demonstrated by decreased malondialdehyde levels, restoration of glutathione content and improved activities of superoxide dismutase and catalase. A significant suppression of inflammatory cytokines accompanied these biochemical improvements. Furthermore, ertugliflozin significantly inhibited microglial activation in BTBR mice. Collectively, the findings indicate that ertugliflozin alleviates autism spectrum disorder-like behavioural deficits in BTBR mouse models, at least in part, by reducing oxidative stress and neuroinflammation. This study highlights ertugliflozin as a potential therapeutic candidate for the management of autism spectrum disorder.
Autism spectrum disorder (ASD) is a neurodevelopmental disorder characterized by core symptoms including impairments in social behavior and communication. The impaired excitatory and inhibitory signals have been implicated in the pathophysiology of social behavior deficits. Altered calretinin (CR)-containing GABAergic interneurons have been observed in ASD, but their roles and underlying mechanisms remain unveiled. Here, using valproic acid (VPA)-exposed mice for CR-Cre and R26::LS-tdTomato (Ai14) model of ASD, we prove that a decreased number of CR interneurons in the mPFC of an animal model for ASD. Double-staining experiments demonstrated the decreased number of CR interneurons stained for c-Fos. Also, reduction in GCaMP7s fluorescence intensity was elicited in sociability and social novelty preference using in vivo fiber photometry, manifesting VPA-induced suppression of CR-positive cell activation. Additionally, we observed the abnormalities of dendrites in CR interneurons including lower dendritic arbors, decreased dendrite complexity, and spine density, paralleled by abnormal development of spine morphology. Intriguingly, the electrophysiological recordings of tdTomato-labeled interneurons revealed that exposure to VPA depressed intrinsic neuronal excitability by decreasing spontaneous and evoked action potential frequencies. These changes were concomitant with impairments of glutamatergic and GABAergic synaptic transmission of CR interneurons. Strikingly, chemogenetic silencing of mPFC CR-expressing interneurons induced social interaction deficits in mice. These sociability impairments can be rescued by optogenetic activation of CR activity in VPA-exposed mice. Our study indicates that prenatal exposure to VPA induced reduced activities, abnormalities in morphological development, and decreased intrinsic excitability as well as accompanying impaired synaptic transmission of CR interneurons. Our findings provide strong evidence for the notion that the CR interneurons has a critical role in the regulation of social behavior in mice and manifest that CR interneurons dysfunction may be implicated in social impairments in ASD.
OBJECTIVE:To explore the clinical phenotypes and genetic characteristics of a pedigree with Distal arthrogryposis type 5D (DA5D) caused by compound heterozygous variants in the ECEL1 gene. METHODS:A child (proband) diagnosed with DA5D and his family members (proband's parents and sister) who was admitted to the Department of Rehabilitation Medicine of Henan Children's Hospital in July 2022 due to "multiplex distal arthrogryposis" were enrolled into this study. Clinical data of the proband were collected and peripheral blood samples were obtained from the proband and members of his family about 3 mL. Trio-whole genome sequencing (trio-WGS) was carried out to detected the genetic variations of the proband and his family members. The candidate's pathogenic gene variants were screened and analyzed by Genome Aggregation Database (gnomAD) and other databases. The screened variants were annotated for clinical phenotypes using databases like the Online Mendelian Inheritance in Man (OMIM). The pathogenicity of the candidate variants was predicted by bioinformatics tools such as Provean. Based on the guidelines of the American College of Medical Genetics and Genomics (ACMG), pathogenicity ratings were conducted for variant sites. The protein conservation and mutation structure prediction of ECEL1 protein among species were carried out though MEGA-X and PyMOL. The research protocol of this study was reviewed by the Ethics Committee of Henan Provincial Children's Hospital (Approval No. 2023-H-H01), and informed consent for clinical research was obtained from the guardians of the probands. RESULTS:The proband had multiplex distal arthrogryposis involving hands, feet, knees, and ankles, and had right ptosis, micrognathia, low auricular position, and upturned nose. The parents and sister both had normal phenotypes. Trio-WGS and Sanger sequencing revealed that the child had compound heterozygous variants of paternal c.1742_c.1743insT and maternal c.2314T>G, for which the father and sister were carriers of the c.1742_c.1743insT heterozygous variant and the mother was carrier of c.2314T>A. Neither mutation site has been reported. According to guidelines of ACMG, the c.1742_c.1743insT variant was classified as likely pathogenic (PSV1+PM2_Supporting), and c.2314T>G was classified as uncertain (PM2_Supporting+PM3+PP3). The results of conserved analysis of amino acid residue sequences of ECEL1 protein showed that the missense mutation of the maternal c.2314T>G (p.Cys772Gly) was highly conserved among humans and other seven species. The protein structure prediction revealed that the c.1742_c.1743insT frameshift mutation led to the protein truncation, and the c.2314T>G missense mutation resulted in the failure of forming 1 disulfide bond. CONCLUSION:The compound heterozygous variants of ECEL1 gene were considered to be pathogenic for this DA5D patient, which have expanded the mutational spectrum of the ECEL1 gene and provided a reference for clinical diagnosis as well as genetic counseling for this family.
To summarize the clinical characteristics of a cohort of nine Chinese children with GNAO1 encephalopathy and analyze their genotypes. A retrospective study was conducted on nine children diagnosed with GNAO1 encephalopathy at the Neurology Department of two children’s hospitals between January 2019 and December 2022. Their clinical manifestations, genetic test results, cranial imaging, electroencephalography and treatment were summarized. Their prognosis was followed up. All nine patients presented with moderate-to-severe psychomotor developmental delay and dystonia. Six patients exhibited neonatal or infantile-onset epilepsy, manifesting as generalized tonic-clonic seizure, myoclonic seizure, epileptic spasms, and were diagnosed with developmental and epileptic encephalopathy 17 (DEE 17). Two patients presented with choreoathetosis in infancy without epileptic seizure and were diagnosed with the neurodevelopmental disorder with involuntary movements (NEDIM). One patient presented with choreoathetosis at two years of age and developed focal seizures at six years of age, representing an intermediate phenotype. During a follow-up period of 0.8–3.5 years, one child died due to infection. The remaining eight continued to exhibit psychomotor retardation. Pathogenic or likely pathogenic de novo heterozygous missense variants in GNAO1 were identified in all nine cases. Among these, the variants c.17G > T (p.Ser6Ile), c.119G > C (p.Gly40Ala), and c.748 C > T (p.Leu250Phe) are novel. In conclusion, we analyzed the clinical characteristics and genetic variants of a cohort of nine Chinese children with GNAO1 variants and identified three novel GNAO1 variants. Our study expanded the spectrum of genotypes and phenotypes in GNOA1-associated encephalopathy.
Dysfunction in social interactions is a core symptom of autism spectrum disorder (ASD). Nevertheless, the neural mechanisms underlying social deficits in ASD are poorly understood. By integrating electrophysiological, in vivo fiber photometry, viral-mediated tracing, optogenetic and pharmacological stimulation, we show reduced intrinsic excitability and hypoactivity of SOM interneurons in medial prefrontal cortex (mPFC) in Magel2-deficient mice, an established ASD model, were required to social defects. Chemogenetic inhibition of mPFC SOM-containing interneurons resulted in reduced social interaction in wild-type Magel2 mice. These sociability deficits can be rescued by optogenetic activation by excitability of SOM in the mPFC and mPFCSOM-LS inhibitory pathway in Magel 2 knockout mice. These results demonstrate the hypoactivity for SOM action in the mPFC in social impairments, and suggest targeting this mechanism that may prove therapeutically beneficial for mitigating social behavioral disturbances observed in ASD.
Autism spectrum disorder (ASD) is a neurodevelopmental disorder characterized by core symptoms including deficits in social interaction, repetitive and stereotyped behaviors, along with higher levels of anxiety and cognitive impairments. Previous studies demonstrate pronounced reduced density of calretinin (CR)-expressing GABAergic interneurons in both ASD patients and animal models. The object of the current study was to determine the role of CR in ASD-relevant behavioral aberrations. Herein, the mRNA and protein levels of CR in the prefrontal cortex (PFC) of mouse model of ASD based on prenatal exposure to valproic acid (VPA) were determined by qRT-PCR and Western blot analysis, respectively. Moreover, the behavioral abnormalities in naive mice with CR deficiency mediated by recombinant adeno-associated virus (rAAV) were evaluated in a comprehensive testing battery including social interaction, marble burying, self-grooming, open-field, elevated plus maze and novel object recognition tests. Furthermore, the action potential changes caused by CR deficiency were examined in neurons within the PFC in naive mouse. The results show that the mRNA and protein levels of PFC CR of VPA-induced mouse ASD model were reduced. Concomitantly, mice with CR knockdown displayed ASD-like behavioral aberrations, such as social impairments, elevated stereotypes, anxiety and memory defects. Intriguingly, patch-clamp recordings revealed that CR knockdown provoked decreased neuronal excitability by increasing action potential discharge frequencies together with decreased action potential threshold and rheobase. Our findings support a notion that CR knockdown might contribute to ASD-like phenotypes, with the pathogenesis most likely stemming from increased neuronal excitability.
Patients with cirrhosis face a heightened risk of complications, underscoring the importance of identification. We have developed a Connectome strategy that combines metabolites with peptide spectral matching (PSM) in proteomics to integrate metabolomics and proteomics, identifying specific metabolites bound to blood proteins in cirrhosis using open search proteomics methods. Analysis methods including Partial Least Squares Discriminant Analysis (PLS-DA), Uniform Manifold Approximation and Projection (UMAP), and hierarchical clustering were used to distinguish significant differences among the Cirrhosis group, Chronic Hepatitis B (CHB) group, and Healthy group. In this study, we identified 81 cirrhosis-associated connectomes and established an effective model distinctly distinguishing cirrhosis from chronic hepatitis B and healthy samples, confirmed by PLS-DA, hierarchical clustering analysis, and UMAP analysis, and further validated using six new cirrhosis samples. We established a Unified Indicator for Identifying cirrhosis, including tyrosine, Unnamed_189.2, thiazolidine, etc., which not only enables accurate identification of cirrhosis groups but was also further validated using six new cirrhosis samples and extensively supported by other cirrhosis research data (PXD035024). Our study reveals that characteristic cirrhosis connectomes can reliably distinguish cirrhosis from CHB and healthy groups. The established unified cirrhotic indicator facilitates the identification of cirrhosis cases in both this study and additional research data.
Objective:To summarize the clinical phenotype and genetic characteristics of biallelic variation in HPDL leading to neurodevelopmental disorders with progressive spasticity and cerebral white matter abnormalities. Methods:The clinical and genetic data of 3 cases with neurodevelopmental disorders confirmed in the Department of Neurology of the Affiliated Children′s Hospital of Zhengzhou University from February 2018 to June 2022 were analyzed. The second-generation sequencing method was used to sequence the HPDL gene and the first-generation Sanger sequencing was used to verify the family members, and the characteristics of gene variants were summarized, and the 3 cases were treateds and followed-up. Results:Among the 3 children with neurodevelopmental disorders, 2 were females and 1 was male, and the age of onset was 25 days to 11 years of birth. In the clinical phenotypes, cases 1 and 2 were children with Leigh-like syndrome with infancy onset, with recurrent seizures, intelligent backwardness, language and motor delay, lactic acid increase, acidosis. Cranial magnetic resonance plain scan suggested deepening of the sulcus in the bilateral cerebral hemisphere, abnormal symmetrical signals in the basal ganglia, dorsal thalamus, cerebral peduncles and brainstem, expansion of the supratentorial ventricle, and thinning of the corpus callosum. And cranial magnetic resonance spectroscopy suggested visible lactate peaks in the measurement area of bilateral putamen lesions. Case 3 presented with spastic paraplegia, early motor retardation, and late spastic gait. The plain skull magnetic resonance imaging scan showed no abnormalities. In the 3 cases, the whole exon genome sequencing showed the heterozygous variant c.26_.28delGCC(p.Cys9_His10delinsTyr) and the parent missense heterozygous variant c.788C>T(p.Thr263Met), the paternal truncated variant c.1051C>T(p.Gln351 *) and the parent frameshift variant c.995de1C(p.Thr332Mfs * 9), the parent missense variant c.781C>G (p.Leu261Val) and the parent truncated variant c.721C>T (p.Gln241 *). The c.26_28delGCC(p.Cys9_His10delinsTyr) was an unreported site mutation. No abnormalities were found in chromosomal copy number variation and mitochondria-related genes. Cases 1 and 2 were treated with anti-seizure drugs and cocktail, and the seizure was under effective control; case 3 was treated with comprehensive treatment and rehabilitation function training, and exercise and intelligence were improved. Conclusions:The clinical phenotype of the biallelic variant in HPDL was Leigh-like syndrome and hereditary spastic paraplegia, characterized by compound heterozygous variant, including whole code, missense, frameshift, and truncated variants. Biallelic variation in HPDL was found to be the genetic etiology of the 3 probands.
OBJECTIVETo analyze the clinical phenotype and genetic variant of a child with Snijders Blok-Campeau syndrome (SBCS).METHODSA child who was diagnosed with SBCS in June 2017 at Henan Children's Hospital was selected as the study subject. Clinical data of the child was collected. Peripheral blood samples of the child and his parents were collected and the extraction of genomic DNA, which was subjected to trio-whole exome sequencing (trio-WES) and genome copy number variation (CNV) analysis. Candidate variant was verified by Sanger sequencing of his pedigree members.RESULTSThe main clinical manifestations of the child have included language delay, intellectual impairment and motor development delay, which were accompanied with facial dysmorphisms (broad forehead, inverted triangular face, sparse eyebrows, widely spaced eyes, narrow palpebral fissures, broad nose bridge, midface hypoplasia, thin upper lip, pointed jaw, low-set ears and posteriorly rotated ears). Trio-WES and Sanger sequencing revealed that the child has harbored a heterozygous splicing variant of the CHD3 gene, namely c.4073-2A>G, for which both of his parents were of wild-type. No pathogenic variant was identified by CNV testing.CONCLUSIONThe c.4073-2A>G splicing variant of the CHD3 gene probably underlay the SBCS in this patient.
a neurological condition, is widely prevalent among individuals with intellectual disability (ID). It is well established that N-methyl-D-aspartate (NMDA) receptors play an important role in both epilepsy and ID. Autosomal dominant mutations in the GRIN2B gene, which encodes the GluN2B subunit of the NMDA receptor, have been reported to be associated with epilepsy and ID. However, the underlying mechanism of this association is not well-understood. In this study, we identified a novel GRIN2B mutation (c.3272A > C, p.K1091T) in a patient with epilepsy and ID. The proband was a one year and ten months old girl. GRIN2B variant was inherited from her mother. We further investigated the functional consequences of this mutation. Our findings revealed that the p.K1091T mutation created a Casein kinase 2 phosphorylation site. Using recombinant NMDA receptors containing the GluN2B-K1091T along with GluN1 in HEK 293T cells, we observed significant defects in its interactions with postsynaptic density 95. It is accompanied by reduced delivery of the receptors to the cell membrane and a decrease in glutamate affinity. Moreover, primary neurons expressing GluN2B-K1091T also exhibited impaired surface expression of NMDA receptors, a reduction in dendritic spine number and excitatory synaptic transmission. In summary, our study reports a novel GRIN2B mutation and provides functional characteristics of this mutation in vitro, thereby contributing to the understanding of GRIN2B variants in epilepsy and ID.& COPY; 2023 IBRO. Published by Elsevier Ltd. All rights reserved.
Objective:To summarize the clinical phenotype and genetic characteristics of Poirier-Bienvenu neurodevelopmental syndrome associated with CSNK2B gene variation. Methods:The clinical and genetic data of a child with Poirier-Bienvenu neurodevelopmental syndrome caused by shear variant of CSNK2B gene who was diagnosed in the Department of Neurology, Children′s Hospital Affiliated to Zhengzhou University in March 2022 were collected. Previous relevant literature at home and abroad was reviewed to summarize the clinical characteristics of the disease. Results:The child was a girl aged 13 months, mainly due to "intermittent convulsions for 2 months" for consultation. The clinical manifestations of the girl were normal face, generalized tonic-clonic seizures, low intelligence, language and motor retardation, and there was no abnormality in the long-range video electroencephalography and the head magnetic resonance imaging. No abnormality was found in chromosome karyotype analysis and chromosome coefficient of copy variation analysis. The whole exon gene sequencing test indicated that the child carried de novo heterozygous shear variant of CSNK2B gene c.291+5G>C, which had not been reported in the literature. According to the clinical manifestations and genetic examination results of the child, the diagnosis of Poirier-Bienvenu neurodevelopmental syndrome was clear. The CSNK2B gene of the proband′s parents and the twin sister was wild-type. The application of sodium valproate anti-seizure medication could effectively control the seizures of the child, and by giving rehabilitation function training, the child′s language and gross motor function was improved. Conclusions:The Poirier-Bienvenu neurodevelopmental syndrome is a rare autosomal dominant disorder caused by variants in the CSNK2B gene. The clinical manifestations are infancy-onset seizures, intellectual development disorders, language and motor development disorders, etc, and the video electroencephalogram and skull magnetic resonance are mostly normal. The CSNK2B gene shear variant is the genetic etiology of the proband.
OBJECTIVE:The objective of this study was to investigate the pathogenesis and inheritance pattern of a Chinese Han family with hereditary spastic paraplegia and to retrospectively analyze the characteristics of KIF1A gene variants and related clinical manifestations.METHODS:High-throughput whole-exome sequencing was performed on members of a Chinese Han family with a clinical diagnosis of hereditary spastic paraplegia, and the sequencing results were validated by Sanger sequencing. Deep high-throughput sequencing was performed on subjects with suspected mosaic variants. The previously reported pathogenic variant loci of the KIF1A gene with complete data were collected, and the clinical manifestations and characteristics of the pathogenic KIF1A gene variant were analyzed.RESULTS:A pathogenic heterozygous variant located in the neck coil of the KIF1A gene (c.1139G>C, p.Arg380Pro) was identified in the proband and four additional members of the family. It was derived from the de novo low-frequency somatic-gonadal mosaicism of the proband's grandmother and had a rate of 10.95%.INTERPRETATION:This study helps us to better understand the pathogenic mode and characteristics of mosaic variants, and to understand the location and clinical characteristics of pathogenic variants in KIF1A.
早发性癫痫性脑病(EOEE)是新生儿期或婴儿早期出现的的一种癫痫综合征,具有遗传异质性,表现为早发性、难治性和多种发作类型及全面发育迟滞或倒退等特征.文章回顾分析1例确诊GRIN 2 B基因变异致EOEE 27型患儿的临床资料.患儿为12月龄女童,生后第2天起病,表现为难治性癫痫、精神运动发育迟缓、肌张力低下.头颅磁共振示双侧额部蛛网膜下腔增宽;长程视频脑电图示醒-睡各期均有多灶性尖波、棘波发放,有与临床发作同期的脑部异常放电,提示睡眠期右侧额叶、中央区尖波、棘慢波发放.全外显子基因测序发现患儿GRIN 2 B基因存在新生杂合错义变异c.2635 G>A(p.Glu 879 Lys)(NM_000834),父母及哥哥基因型为野生型,关联EOEE 27型,未见本位点变异相关文献报道.根据2015年美国医学遗传学与基因组学学会指南,判定为可能致病.患儿应用托吡酯、奥卡西平及康复功能训练治疗.随访患儿发育较正常同龄儿落后,无癫痫发作,脑电图未见异常放电.GRIN 2 B基因错义变异(NM_000834):c.2635 G>A(p.Glu 879 Lys)是患儿的可能病因.
Objective The underlying etiologies of pregnancy loss are heterogeneous and in many cases unexplained. This study was to explore the genetic causes of early and late pregnancy loss using chromosomal microarray analysis (CMA). Methods A cohort of 222 specimens of conceptions underwent genetic analysis using Affymetrix CytoScan 750 K arrays, which includes both SNP markers and copy number markers. Results Of the 222-products of conception (POC), the overall detection rate for clinical significantly chromosomal anomalies was 40.54%, including 53 autosomal aneuploidy (23.87%), 16 sex chromosome aneuploidy (7.21%), 5 mutiple aneuploidy (2.25%), 4 triploidy (1.80%), and 12 pathogenic copy number variants (pCNVs) (5.41%). In addition, variants of uncertain significance and loss of heterozygosity were detected in 9 samples and 2 samples, respectively. The detection rates for total chromosomal abnormalities, autosomal aneuploidy, sex chromosome aneuploidy, multiple aneuploidy, and triploidy in specimens of early pregnancy loss was higher than that of late pregnancy loss, while had lower detection rate of pCNVs. Moreover, the detection rate in POC of mothers younger than 35 years was lower than that of advanced maternal age. The detection rate was 40.57% in POC of mothers with adverse pregnancy histories, in which was comparable with that of mothers without adverse pregnancy histories. Conclusions CMA yielded a superior detection rate in early pregnancy loss than that of late pregnancy loss. Moreover, the incidence of chromosome abnormality in cases with advanced maternal age was higher than that of cases with younger maternal age, while adverse pregnancy history seemed not to be the factors affecting the detection rate for chromosomal abnormality in pregnancy loss.
Objective The aim of this article was to study the thyroid hormone levels in children with intellectual disabilities and determine the relationship between the thyroid hormone levels and intellectual disability. Methods Participants included 60 children with intellectual disabilities (the study group) and 56 without (the control group). Nuclear medicine in vitro analysis techniques were used in this study. All the controls and patients underwent in vitro analysis, and their serum levels of thyroid hormone, including thyroid-stimulating hormone, total thyroxine (T4), free T4 (FT4), total triiodothyronine (T3), and free T3 (FT3), were tested. Results The levels of FT4 were lower in the study group than in the control group ( p < 0.001). The levels of FT3 were higher in the study group than in the control group ( p = 0.003). The levels of TSH were higher in the study group than in the control group, but the difference was not statistically significant ( p = 0.363). The total T4 and total T3 levels were lower in the study group than in the control group, but the difference was not statistically significant ( p = 0.642, p = 0.124, respectively). Conclusions The levels of thyroid hormones in the study group differed from the control group. The differences may not be clinically significant beyond their statistical significance. Thyroid hormone levels may affect intellectual disability in children.
Objective:To analyze the clinical and imaging characteristics of acute necrotic encephalopathy (ANE) in a child with human herpesvirus-6 (HHV-6) infection.Methods:Retrospective analysis was performed on the clinical data and imaging features of a case of HHV-6 related ANE from Children′s Hospital Affiliated to Zhengzhou University in March 2019.Results:The one year and seven month-old child had acute encephalopathy, recurrent convulsions, consciousness disorders, elevated serum transaminase. The number of cerebrospinal fluid (CSF) cells was normal and the protein increased. High throughput gene testing of CSF showed HHV-6. Cranial magnetic resonance imaging showed multiple symmetry damage in the bilateral thalamus, brainstem, and cerebellum. The symptoms improved after the treatment of glucocorticoids, intravenous immunoglobulin, and plasmapheresis.Conclusions:ANE is a rare severe encephalopathy, the characteristic imaging change of which is symmetry multifocal cerebral damage, especially in the bilateral thalamus. ANE should be considered for patients with frequent convulsions and disturbance of consciousness after virus infection.
Autism spectrum disorder (ASD) is associated with a range of abnormalities pertaining to socialization, communication, repetitive behaviors, and restricted interests. Owing to its complexity, the etiology of ASD remains incompletely understood. The presynaptic G protein-coupled glutamate receptor metabotropic glutamate receptor 7 (mGluR7) is known to be essential for synaptic transmission and is also tightly linked with ASD incidence. Herein, we report that prefrontal cortex (PFC) mGluR7 protein levels were decreased in C57BL/6J mice exposed to valproic acid (VPA) and BTBR T+ Itpr3tf/J mice. The overexpression of mGluR7 in the PFC of these mice using a lentiviral vector was sufficient to reduce the severity of ASD-like behavioral patterns such that animals exhibited decreases in abnormal social interactions and communication, anxiety-like, and stereotyped/repetitive behaviors. Intriguingly, patch-clamp recordings revealed that the overexpression of mGluR7 suppressed neuronal excitability by inhibiting action potential discharge frequencies, together with enhanced action potential threshold and increased rheobase. These data offer a scientific basis for the additional study of mGluR7 as a promising therapeutic target in ASD and related neurodevelopmental disorders.
Objective:To investigate the clinical characteristics and gene mutation of seven cases of CDKL5 gene related early-onset epileptic encephalopathy diagnosed by next-generation sequencing.Methods:The clinical data of children with early-onset epileptic encephalopathy from February 2018 to December 2019 in the Department of Neurology, Children′s Hospital Affiliated to Zhengzhou University were retrospectively analyzed. The whole exome sequencing method was used to analyze the entire exome of the proband, and seven cases of CDKL5 gene mutation positive were screened out, and Sanger sequencing verification on family members was performed to identify the source and the characteristics of gene mutations were analyzed.Results:Among the seven children diagnosed with CDKL5 gene related early-onset epileptic encephalopathy, the ratio of male to female was 2∶5, and the age of onset was 15 days to five months of birth. The clinical phenotypes all included different degrees of developmental delay and repeated seizures, which were manifested as general seizures, myoclonic seizures, convulsive seizures or focal seizures; the outcome of use of antiepileptic drugs to control seizures was poor, and some applications of ketogenic diet had better effects. CDKL5 gene mutation sites were all denovo mutations, including NM_003159: c.772_776del (p.K258Efs *10) frameshift mutation, NM_003159.2 (exon: 9-15) heterozygous deletion, CDKL5 hemizygous deletion, NM_003159: c.268 (exon5) G>T (p.E90 *, 941) and NM_003159: c.2578C>T (p.Q860 *, 171) nonsense mutation, NM_003159: c.211A>G (p.Asn71Asp) and NM_001323289: c.545T>C (p.L182P) missense mutation. Among them, c.772_776del (p.K258Efs *10), c.268 (exon5)G>T and c.2578C>T (p.Q860 *, 171) have not been reported. Conclusions:CDKL5 gene related early-onset epileptic encephalopathy is an early onset epilepsy, which is more common in women, and has different forms of seizures. The early electroencephalogram is characterized as severe abnormal brain discharge, and the disease progresses in various forms. There are no specific changes in head magnetic resonance imaging. Different gene mutation sites may lead to different phenotypes and prognostic differences. Many anti-epileptic treatments are ineffective, and ketogenic diets are effective for some patients.
Objective:To investigate the clinical phenotype of a child with Jansen-de Vries syndrome, to clarify its genetic diagnosis and genetic characteristics, and to improve the understanding of this disease.Methods:Clinical data from a child with Jansen-de Vries syndrome diagnosed in the Children′s Affiliated Hospital of Zhengzhou University in October 2019 were collected, using core family-complete exon genomics detection (Trio-WES) and chromosome copy number variation (CNV) analysis techniques for genetic testing for the child and her parents, generation Sanger sequencing for family member verification for possible pathogenic mutations, and clinical and molecular genetic analysis. The relevant reports of PPM1D gene mutation in patients with mental retardation were reviewed.Results:The proband was a 11-month-old girl, presenting with mental retardation, lagging speech and motor development, autistic behavior, gastrointestinal dysfunction, and short stature, low flat nose bridge, low ear, short finger syndrome.Trio-WES results of the core family of the child suggested that PPM1D was a new transcoding heterozygous mutation, PPM1D (NM-003620): c.1216delA (p.Thr406Profs *3), and the karyotype and CNV analysis of the chromosome were normal. Literature retrieval showed currently a total of 18 cases were reported PPM1D gene mutation of mental disorders, described in the online human Mendel database for developmental disorder associated with gastrointestinal dysfunction and pain threshold increases, the age distribution in the seven months to 21 years of age, clinical manifestation of mental retardation, increased pain threshold, abnormal behavior, feeding difficulties, visual impairment, short finger syndrome, a group of syndromes associated with short stature, fever or vomiting, and congenital deformities. Conclusions:Jansen-de Vries syndrome clinically presents mainly with overall retardation (mental retardation/backward delayed motor development, language development, low muscle tone), abnormal behavior (lonely sample behavior, autism), craniofacial malformations (broad forehead, low ear nose bridge, thin upper lip), short finger syndrome (short feet, pinky stubby), gastrointestinal dysfunction (milk overflow, feeding difficulties, constipation). The child was diagnosed as a newly transcoding heterozygous mutation of the PPM1D gene. The current treatment is mainly rehabilitation training, and growth hormone replacement therapy can be given to part of the short height disease. The PPM1D gene [PPM1D(NM-003620): c.1216delA(p.Thr406Profs *3)] is the genetic cause of the child.
目的 通过生物信息学分析筛选出神经母细胞瘤外周血血浆外泌体中差异表达miRNA,并对其靶基因功能进行分析预测.方法 从高通量基因表达数据库下载数据集GSE128004,分析神经母细胞瘤血浆外泌体中miRNA的差异表达;通过miRTarBase数据库筛选差异表达miRNA的靶基因;进一步通过运用clusterProfiler进行靶基因的基因本体(GO)功能富集与京都基因与基因组百科全书数据库(KEGG)通路富集.结果 经筛选发现,数据集GSE128004包含41个表达差异在2倍以上的血浆外泌体miRNA.靶基因预测显示,hsa-miR-199a-3p,hsa-miR-196b-5p,hsa-miR-127-3p,hsa-miR-410-3p和hsa-miR-487b-3p为靶基因最多的前5个差异表达miRNA.GO功能分析发现,这些靶基因大都在细胞运动正调节、细胞迁移正调节、血管生成等生物过程富集;在膜侧、细胞-基底连接、细胞-基底黏附连接、焦点黏连等细胞组成富集;在蛋白丝氨酸/苏氨酸激酶活性、蛋白异二聚体化活性、转录因子活性和RNA聚合酶Ⅱ核心启动子近端区序列特异性结合等分子功能富集.KEGG分析显示:这些差异表达miRNA的靶基因主要参与磷脂酰肌醇3激酶-蛋白激酶B信号通路、癌症相关miRNA、丝裂原活化蛋白激酶信号通路等通路富集.结论 hsa-miR-199a-3p,hsa-miR-127-3p和hsa-miR-410-3p可能作为神经母细胞瘤的潜在生物标志物或治疗靶标,进一步为该病的发病机制提供研究思路.