Re-examination of the families and the molecular genetic data by a neurologist and a geneticist who were not involved in the original study has revealed major differences from the published data in two of the three published pedigrees.
We report a familial Sotos syndrome in two children, boy and girl, aged 17 and 8 years, and in their 44 year old mother, who displayed normal intelligence at adult age, but suffered from insulin dependent diabetes mellitus, bronchial asthma, and severe lipedema. The underlying missense mutation, C2175S, occurred in a conserved segment of the NSD1 gene. Our findings confirm that familial cases of SS are more likely to carry missense mutations. This case report may prove useful to avoid underestimation of the recurrence rate of SS, and to demonstrate that the developmental delay may normalize, enabling an independent life and having an own family.
Objective Spinal muscular atrophy results from loss of the survival motor neuron 1 ( SMN1 ) gene and malfunction of the remaining SMN2 . We investigated whether valproic acid can elevate human SMN expression in vivo. Methods Blood was collected from 10 spinal muscular atrophy carriers and 20 spinal muscular atrophy patients treated with valproic acid. Results Seven of 10 carriers demonstrated increased SMN messenger RNA and protein levels. SMN2 messenger RNA levels were elevated in 7 patients and unchanged or decreased in 13 patients. Interpretation We provide first proof of the in vivo activation of a causative gene by valproic acid in an inherited disease and discuss strategies of monitoring drug response in patients.
This article describes the modeling and refinement process of an industrial application from the automotive domain starting from a C description down to a cycle accurate SystemC model. The work was done within a co-operation between Robert Bosch GmbH, OFFIS Research Laboratory, and the University of Tübingen. The application was given by an exposure control unit from a video sensor system of a Bosch driver assistance application. The objective was to study the design flow, starting from an algorithmic C description down to synthesizable SystemC, which is the starting point for further design activities, e.g. hardware synthesis. The case study includes a comparison of the C and SystemC implementation, an analysis and a discussion of the refinement and implementation process. The fixed-point to integer data type conversion was found to be a critical task within the design process, and an automated solution is provided.
CONTEXTMissense mutations in the GABRG2 gene, which encodes the gamma 2 subunit of central nervous gamma-aminobutyric acid (GABA)(A) receptors, have recently been described in 2 families with idiopathic epilepsy. In one of these families, the affected individuals predominantly exhibited childhood absence epilepsy and febrile convulsions.OBJECTIVETo assess the role of GABRG2 in the genetic predisposition to idiopathic absence epilepsies.DESIGNThe GABRG2 gene was screened by single-strand conformation analysis for mutations. Furthermore, a population-based association study assessing a common exon 5 polymorphism (C588T) was carried out.PATIENTSThe sample was composed of 135 patients with idiopathic absence epilepsy and 154 unrelated and ethnically matched controls.RESULTSA point mutation (IVS6 + 2T-->G) leading to a splice-donor site mutation in intron 6 was found. The mutation, which is predicted to lead to a nonfunctional protein, cosegregates with the disease status in a family with childhood absence epilepsy and febrile convulsions. The association study did not find any significant differences in the allele and genotype frequencies of the common exon 5 polymorphism (C588T) between patients with idiopathic absence epilepsy and controls (P>.35).CONCLUSIONSOur study identified a splice-donor-site mutation that was probably causing a nonfunctional GABRG2 subunit. This mutation occurred in heterozygosity in the affected members of a single nuclear family, exhibiting a phenotypic spectrum of childhood absence epilepsy and febrile convulsions. The GABRG2 gene seems to confer a rare rather than a frequent major susceptibility effect to common idiopathic absence epilepsy syndromes.
We have identified a novel heteroplasmic C6489A missense mutation in the mitochondrial DNA (mtDNA) CO I gene encoding the cytochrome c oxidase (COX) subunit I in a 17-year-old girl with epilepsia partialis continua. This point mutation leads to an exchange of the highly conserved Leu196 to Ileu196. Muscle biopsy showed in single fibers decreased COX activity and lowered binding of COX antibodies, indicating decreased stability of the mutated enzyme. The analysis of blood mtDNA revealed about 30% mutant mtDNA in the patients blood but about 90% mutant mtDNA in the blood of two non-affected family members. Quantitative analysis of the mutation gene dose effect on COX activity on single muscle fiber level revealed a very high threshold-a COX deficiency was observed only in fibers containing >95% mutant mtDNA. In apparent contrast to this high mutation gene dose threshold, in vivo investigations of mitochondrial function in saponin-permeabilized muscle fibers of the index patient containing approximately 90% mutated mtDNA showed decreased maximal rates of respiration and an increased sensitivity of fiber respiration to cyanide. This is due to a 2-fold increase of COX flux control on muscle fiber respiration and a 30% decrease of COX metabolic threshold, supporting the concept of tight COX control of oxidative phosphorylation in skeletal muscle.
We recently described mutations of the neuronal sodium-channel alpha-subunit gene, SCN1A, on chromosome 2q24 in two families with generalized epilepsy with febrile seizures plus (GEFS+) type 2. To assess the contribution that SCN1A makes to other types of epilepsy, 226 patients with either juvenile myoclonic epilepsy, absence epilepsy, or febrile convulsions were screened by conformation-sensitive gel electrophoresis and manual sequencing of variants; the sample included 165 probands from multiplex families and 61 sporadic cases. The novel mutation W1204R was identified in a family with GEFS+. Seven other coding changes were observed; three of these are potential disease-causing mutations. Two common haplotypes, with frequencies of .67 and .33, were defined by five single-nucleotide polymorphisms (SNPs) spanning a 14-kb region of linkage disequilibrium. An SNP located 18 bp upstream of the splice-acceptor site for exon 3 was observed in 7 of the 226 patients but was not present in 185 controls, suggesting possible association with a disease mutation. This work has confirmed the role of SCN1A in GEFS+, by identification of a novel mutation in a previously undescribed family. Although a few candidate disease alleles were identified, the patient survey suggests that SCN1A is not a major contributor to idiopathic generalized epilepsy. The SCN1A haplotypes and SNPs identified here will be useful in future association and linkage studies.
We describe three male sib fetuses with isolated myocardial calcifications resulting in intrauterine fetal death (IUFD) as early as the second trimester. No evidence for an underlying mitochondrial cytopathy, dystrophinopathy or myopathy was found. There were no signs of inflammation or a metabolic disorder, and the mother had no prenatal exposure of teratogenic drugs. Furthermore, no mutation in the Barth syndrome gene (G4.5) could be detected. Because isolated calcification of the heart and IUFD are not typical of any previously described inherited cardiomyopathy, it may represent a new familial fetal cardiomyopathy.
Idiopathic generalized epilepsy (IGE) comprises a heterogeneous group of disorders, in which a high genetic predisposition and a complex mode of inheritance have been suggested. Recent identification of ion channel gene mutations in Mendelian epileptic disorders suggests genetically driven neuronal hyperexcitability as one important factor in epileptogenesis. Mutations in two neuronal voltage-gated potassium channel genes (KCNQ2 and KCNQ3) have already been shown to cause epilepsy (BFNC), and we now tested the hypothesis that genetic variation in the KCNQ3 gene confers liability to common IGE subtypes. Length variation of two intragenic polymorphic markers (D8S558 and D8S1835) were therefore assessed in 71 nuclear families ascertained for an affected child. However, the transmission-disequilibrium-test did not show significant differences between the transmitted and non-transmitted parental alleles. Thus, our findings do not provide evidence that genetic variation in the KCNQ3 gene exerts a relevant effect in the etiology of common IGE subtypes.
We tested the hypothesis that genetic variation in the human sodium channel gene SCN2A confers liability to idiopathic generalized epilepsy (IGE). We performed a systematic search for mutations in 46 familial IGE cases and detected three novel polymorphisms, however, allele frequencies did not differ significantly between patients and controls. A rare mutation (R1918H) was identified in one patient but was absent in one further affected family member. Thus, our results do not suggest a major role of SCN2A in the etiology of IGE.
We present 2 sibs with manifestations of oral-facial-digital syndromes (OFD) and Joubert syndrome. The index patient was the 5th child of healthy nonconsanguineous Turkish parents. At birth this female patient had large hydrocephalus, hypertelorism, deep-set eyes, nystagmus, broad mouth, thick oral frenula, cleft palate, hamartomas of the tongue, postaxial polydactyly of fingers, normal toes, and hypotonia. Cranial MRI showed hydrocephalus and Dandy-Walker malformation. The child had no psychomotor development, was unable to swallow and had severe seizures. She died at 2 months of recurrent apneic episodes. At birth the brother of the index patient showed prominent forehead, broad, deep nasal bridge, cleft palate, multiple hamartomas of the tongue, irregular alveolar ridges, retrognathia, bilateral postaxial polydactyly of the hands and feet, and broad halluces. He had an abnormal breathing pattern with phases of tachypnea and apnea. Cranial MRI showed hydrocephalus, hypoplasia of the cerebellar vermis, Dandy-Walker malformation, and hypomyelination of the corpus callosum. Renal ultrasonography demonstrated multiple small cysts. Ocular fixation was absent and he had a mild nystagmus.
We describe monozygotic male twins with an interstitial deletion of Xp22.3 including the steroid sulphatase gene (STS). The twins had X linked ichthyosis, X linked mental retardation, and epilepsy. A locus for X linked mental retardation has been assigned to a region betweenSTS and DXS31 spanning approximately 3 Mb. Recently the locus was further refined to an approximately 1 Mb region between DXS1060 and GS1. By PCR analysis of flanking STS gene markers in our patients we succeeded in narrowing down the locus to between DXS6837 andGS1.
Idiopathic generalized epilepsy (IGE) comprises a heterogeneous group of disorders, in which a high genetic predisposition and a complex mode of inheritance have been suggested. However, genes, which confer liability to common IGE subtypes including juvenile myoclonic epilepsy (JME) and childhood absence epilepsy (CAE) have not been identified so far. Here, we tested the hypothesis that genetic variation in the human homolog of the ««activity-regulated cytoskeleton-associated gene»» (ARC) contributes to the etiology of common IGE disorders. The gene has recently been mapped to chromosome 8q24.3, a region which spans previously identified major IGE susceptibility loci. A systematic search for mutations was performed in 143 patients with a known family history of IGE. However, no evidence for functional variants was found in theARC coding sequence. Nevertheless, we detected a novel common C489T single nucleotide polymorphism, which provides a useful marker in genetic linkage and association studies. By performing a population- and family-based study we however failed to show significant association between this novel single nucleotide polymorphism and IGE, a finding, which most likely rules out that genetic variation in or close to the ARC gene confers liability to common IGE subtypes.
Monoaminergic neurotransmission plays an important role in the regulation of neuronal network excitability and seizure activity. Therapeutic inhibition of the mitochondrial enzyme monoamine oxidase A (MAO-A), which is involved in the degradation and inactivation of monoaminergic neurotransmitters, has been shown to confer a potent anticonvulsant effect. These and other findings suggest a possible role of the X-linked MAO-A gene in epileptogenesis. Therefore, our study was designed to test for an association between a novel MAO-A gene promoter polymorphism and common subtypes of idiopathic generalized epilepsy (IGE). The length of a 30-bp repetitive sequence ∼1.2 kb upstream of the ATG initiation codon was assessed in 126 patients with juvenile myoclonic epilepsy (JME), 122 patients with idiopathic absence epilepsy (IAE), and 248 healthy controls of German descent. Both sexes were analyzed separately. Although we observed a trend towards a lower number of heterozygotes carrying the 3 and 4 copy alleles in female IAE patients (χ2=3.813, df=1, P=0.053), allele frequencies did not deviate significantly between patients and controls. Thus, our results do not provide evidence for a contribution of the functional MAO-A gene promoter polymorphism to the pathogenesis of common IGE subtypes.