Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 60
Filter
1.
Pediatr Neurol ; 158: 100-112, 2024 Jun 24.
Article in English | MEDLINE | ID: mdl-39032379

ABSTRACT

BACKGROUND: ZC4H2-associated rare disorder (ZARD) is caused by pathogenic variations in the ZC4H2 gene on the X chromosome. This gene codes for a zinc finger protein involved in neural development. ZARD is characterized by highly variable symptoms, potentially influenced by the sex of the individual. METHODS: The ZC4H2-Associated Rare Disorder Natural History Study is a prospective natural history study conducted among individuals with ZARD that consists of standardized interviews, developmental assessments, and neurological examinations conducted every six months for two years. In this article, we present data from baseline visits with 40 participants, the largest ZARD cohort studied thus far, focusing on genotype-phenotype correlations and sex differences. Fisher exact, maximum likelihood χ2, and Mann-Whitney tests were utilized. RESULTS: Males tended to have maternally inherited ZC4H2 pathogenic variations, whereas females tended to have de novo variations (P < 0.001). Female participants were more likely to have contractures at birth (P < 0.01), arthrogryposis multiplex congenita (P < 0.001), spasticity on examination (P < 0.1), and lower limb muscle atrophy (P < 0.05). Male participants were more likely to have seizures (P < 0.1), intermittent pain (P < 0.01), severe vision impairment (P < 0.05), dysphagia for solids (P < 0.01), and generalized muscle atrophy (P < 0.05). CONCLUSIONS: Our study suggests there is significant overlap in severity and range of symptoms between males and females, although several symptoms are more common in one sex than the other. Further analysis is needed to better understand how pathogenic variation type affects phenotype.

2.
Cell Mol Life Sci ; 80(11): 345, 2023 Nov 03.
Article in English | MEDLINE | ID: mdl-37921875

ABSTRACT

AMPA receptors are members of the glutamate receptor family and mediate a fast component of excitatory synaptic transmission at virtually all central synapses. Thus, their functional characteristics are a critical determinant of brain function. We evaluate intolerance of each GRIA gene to genetic variation using 3DMTR and report here the functional consequences of 52 missense variants in GRIA1-4 identified in patients with various neurological disorders. These variants produce changes in agonist EC50, response time course, desensitization, and/or receptor surface expression. We predict that these functional and localization changes will have important consequences for circuit function, and therefore likely contribute to the patients' clinical phenotype. We evaluated the sensitivity of variant receptors to AMPAR-selective modulators including FDA-approved drugs to explore potential targeted therapeutic options.


Subject(s)
Nervous System Diseases , Humans , Nervous System Diseases/genetics , Synaptic Transmission/physiology , Receptors, AMPA/genetics , Receptors, AMPA/metabolism , Synapses/metabolism
3.
Ann Clin Transl Neurol ; 9(2): 193-205, 2022 02.
Article in English | MEDLINE | ID: mdl-35076175

ABSTRACT

OBJECTIVES: Cerebral palsy (CP) is the most common childhood motor disability, yet its link to single-gene disorders is under-characterized. To explore the genetic landscape of CP, we conducted whole exome sequencing (WES) in a cohort of patients with CP. METHODS: We performed comprehensive phenotyping and WES on a prospective cohort of individuals with cryptogenic CP (who meet criteria for CP; have no risk factors), non-cryptogenic CP (who meet criteria for CP; have at least one risk factor), and CP masqueraders (who could be diagnosed with CP, but have regression/progressive symptoms). We characterized motor phenotypes, ascertained medical comorbidities, and classified brain MRIs. We analyzed WES data using an institutional pipeline. RESULTS: We included 50 probands in this analysis (20 females, 30 males). Twenty-four had cryptogenic CP, 20 had non-cryptogenic CP, five had CP masquerader classification, and one had unknown classification. Hypotonic-ataxic subtype showed a difference in prevalence across the classification groups (p = 0.01). Twenty-six percent of participants (13/50) had a pathogenic/likely pathogenic variant in 13 unique genes (ECHS1, SATB2, ZMYM2, ADAT3, COL4A1, THOC2, SLC16A2, SPAST, POLR2A, GNAO1, PDHX, ACADM, ATL1), including one patient with two genetic disorders (ACADM, PDHX) and two patients with a SPAST-related disorder. The CP masquerader category had the highest diagnostic yield (n = 3/5, 60%), followed by the cryptogenic CP category (n = 7/24, 29%). Fifteen percent of patients with non-cryptogenic CP (n = 3/20) had a Mendelian disorder on WES. INTERPRETATION: WES demonstrated a significant prevalence of Mendelian disorders in individuals clinically diagnosed with CP, including in individuals with known CP risk factors.


Subject(s)
Cerebral Palsy/genetics , Exome Sequencing , Genetic Predisposition to Disease/genetics , Adolescent , Cerebral Palsy/diagnosis , Child , Child, Preschool , Cohort Studies , Female , Humans , Male
4.
J Acquir Immune Defic Syndr ; 89(1): 56-63, 2022 01 01.
Article in English | MEDLINE | ID: mdl-34878435

ABSTRACT

BACKGROUND: Multiple previous studies have identified a detrimental effect of pediatric HIV on cognitive function. Socioeconomic status (SES) is one of the strongest predictors of cognitive performance and may affect the relationship between HIV and cognition. METHODS: As part of the ongoing HIV-Associated Neurocognitive Disorders in Zambia (HANDZ) study, a prospective cohort study, we recruited 208 participants with HIV and 208 HIV-exposed uninfected controls, all aged 8-17 years. A standardized questionnaire was administered to assess SES, and all participants had comprehensive neuropsychological testing. An NPZ8 score was derived as a summary measure of cognitive function. Logistic regression and linear regression were used to model the relationship between SES and cognitive function, and mediation analysis was used to identify specific pathways by which SES may affect cognition. RESULTS: Children with HIV performed significantly worse on a composite measure of cognitive function (NPZ8 score -0.19 vs. 0.22, P < 0.001) and were more likely to have cognitive impairment (33% vs. 19%, P = 0.001). Higher SES was associated with reduced risk of cognitive impairment (odds ratio 0.8, 95% confidence interval: 0.75-0.92, P < 0.001) in both groups, with similar effects in children with HIV and HIV-exposed uninfected groups. SES was more strongly correlated with NPZ8 score in children with HIV than in uninfected controls (Pearson's R 0.39 vs. 0.28), but predicted NPZ8 in both groups. Mediation analysis suggested that the effect of SES on cognition was most strongly mediated through malnutrition. CONCLUSIONS: Cognitive function is strongly correlated with SES in children with HIV, suggesting a synergistic effect of HIV and poverty on cognitive function.


Subject(s)
HIV Infections , Adolescent , Child , Cognition , HIV Infections/psychology , Humans , Neurocognitive Disorders/complications , Neurocognitive Disorders/epidemiology , Prospective Studies , Social Class , Zambia/epidemiology
5.
J Inherit Metab Dis ; 44(6): 1453-1462, 2021 11.
Article in English | MEDLINE | ID: mdl-34453334

ABSTRACT

Over the past 20 years, diagnostic testing for genetic diseases has evolved, leading to variable diagnostic certainty for individuals included in long-term natural history studies. Using genotype and phenotype data from an ongoing natural history study of CLN3 disease, we developed a hierarchical diagnostic confidence scheme with three major classes: Definite, Probable, or Possible CLN3 disease. An additional level, CLN3 Disease PLUS, includes individuals with CLN3 disease plus an additional disorder with a separate etiology that substantially affects the phenotype. Within the Definite and Probable CLN3 disease classes, we further divided individuals into subclasses based on phenotype. After assigning participants to classes, we performed a blinded reclassification to assess the reliability of this scheme. A total of 134 individuals with suspected CLN3 disease were classified: 100 as Definite, 21 as Probable, and 7 as Possible. Six individuals were classified as CLN3-PLUS. Phenotypes included the classical juvenile-onset syndromic phenotype, a "vision loss only" phenotype, and an atypical syndromic phenotype. Some individuals were too young to fully classify phenotype. Test-retest reliability showed 96% agreement. We created a reliable diagnostic confidence scheme for CLN3 disease that has excellent face validity. This scheme has implications for clinical research in CLN3 and other rare genetic neurodegenerative disorders.


Subject(s)
Neuronal Ceroid-Lipofuscinoses/diagnosis , Phenotype , Adolescent , Adult , Child , Child, Preschool , Female , Genotype , Humans , Infant , Male , Membrane Glycoproteins/genetics , Molecular Chaperones/genetics , Neuronal Ceroid-Lipofuscinoses/genetics , Prospective Studies , Young Adult
7.
Brain Dev ; 42(10): 720-729, 2020 Nov.
Article in English | MEDLINE | ID: mdl-32682638

ABSTRACT

BACKGROUND: Congenital Zika Virus Syndrome (CZVS) denotes the neurologic and developmental sequelae of congenital infection of the Zika virus. While prior studies have detailed the associated clinical phenotypes, new findings continue to be identified. Abnormal postures and movements have been previously described in children with CZVS, but not in detail. OBJECTIVE: To examine a cohort of infants with CZVS and characterize the spectrum of motor abnormalities, especially movement disorders. DESIGN: Cross-sectional prospective study of 21 infants with confirmed CZVS. SETTING: Single-center cohort of 32 patients with serologically confirmed CZVS cared for in a referral center in Brazil. PARTICIPANTS: 21 children (67% female), evaluated by two child neurologists and one movement disorders specialist, with clinical and laboratory diagnosis of CZVS aged between 16 and 30 months, with a mean age of 16 months at the time of the last examination. MAIN OUTCOME(S) AND MEASURE(S): Prospective neurologic examination by a team of three neurologists, including one movement disorders specialist. Sixteen (76.2%) children had a longitudinal evaluation with a six-month interval. The same team of experts analyzed recorded videos of all patients to characterize motor abnormalities and movement disorders. Neuroimaging findings were also analyzed to correlate with clinical findings. RESULTS: Twenty (95.2%) patients presented with dystonic postures, including "125" posture of the fingers in 17 (80.1%), "swan neck" posture of the fingers in three (18.8%), oromandibular dystonia in nine (42.9%), extensor axial hypertonia in eight (38.1%) and internal rotation of the shoulder posture in two (9.5%). Four (19%) patients had tremor. All children had malformations of cortical development, and in 13 (61.9%), the pattern was consistent with a severe and diffuse gyral simplification. Seventeen children (81%) had calcification in the transition of grey and white matter, whereas 11 (52.4%) patients had basal ganglia calcifications. CONCLUSION AND RELEVANCE: In our series, dystonic postures and other extrapyramidal signs were frequent and potentially disabling. Although children with CZVS are assessed and treated for spasticity, dystonia and other movement disorders remain neglected. This study emphasizes that extrapyramidal findings may potentially influence optimal strategies for rehabilitation and management.


Subject(s)
Movement Disorders/physiopathology , Zika Virus Infection/physiopathology , Brain/abnormalities , Brain Diseases/complications , Brazil/epidemiology , Calcinosis/complications , Child, Preschool , Cohort Studies , Cross-Sectional Studies , Female , Humans , Infant , Male , Microcephaly/complications , Movement Disorders/complications , Movement Disorders/virology , Neuroimaging/methods , Pregnancy , Pregnancy Complications, Infectious , Prospective Studies , Tomography, X-Ray Computed/methods , Zika Virus/pathogenicity
8.
Am J Hum Genet ; 104(5): 948-956, 2019 05 02.
Article in English | MEDLINE | ID: mdl-30982612

ABSTRACT

The occurrence of non-epileptic hyperkinetic movements in the context of developmental epileptic encephalopathies is an increasingly recognized phenomenon. Identification of causative mutations provides an important insight into common pathogenic mechanisms that cause both seizures and abnormal motor control. We report bi-allelic loss-of-function CACNA1B variants in six children from three unrelated families whose affected members present with a complex and progressive neurological syndrome. All affected individuals presented with epileptic encephalopathy, severe neurodevelopmental delay (often with regression), and a hyperkinetic movement disorder. Additional neurological features included postnatal microcephaly and hypotonia. Five children died in childhood or adolescence (mean age of death: 9 years), mainly as a result of secondary respiratory complications. CACNA1B encodes the pore-forming subunit of the pre-synaptic neuronal voltage-gated calcium channel Cav2.2/N-type, crucial for SNARE-mediated neurotransmission, particularly in the early postnatal period. Bi-allelic loss-of-function variants in CACNA1B are predicted to cause disruption of Ca2+ influx, leading to impaired synaptic neurotransmission. The resultant effect on neuronal function is likely to be important in the development of involuntary movements and epilepsy. Overall, our findings provide further evidence for the key role of Cav2.2 in normal human neurodevelopment.


Subject(s)
Calcium Channels, N-Type/genetics , Calcium/metabolism , Dyskinesias/genetics , Epilepsy/genetics , Mutation , Synaptic Transmission , Adolescent , Child , Child, Preschool , Dyskinesias/pathology , Epilepsy/pathology , Female , Humans , Infant , Loss of Heterozygosity , Male , Pedigree
9.
BMC Bioinformatics ; 20(1): 78, 2019 Feb 15.
Article in English | MEDLINE | ID: mdl-30767777

ABSTRACT

BACKGROUND: Functional characterization of single nucleotide variants (SNVs) involves two steps, the first step is to convert DNA to protein and the second step is to visualize protein sequences with their structures. As massively parallel sequencing has emerged as a leading technology in genomics, resulting in a significant increase in data volume, direct visualization of SNVs together with associated protein sequences/structures in a new user interface (UI) would be a more effective way to assess their potential effects on protein function. RESULTS: We have developed BioVR, an easy-to-use interactive, virtual reality (VR)-assisted platform for integrated visual analysis of DNA/RNA/protein sequences and protein structures using Unity3D and the C# programming language. It utilizes the cutting-edge Oculus Rift, and Leap Motion hand detection, resulting in intuitive navigation and exploration of various types of biological data. Using Gria2 and its associated gene product as an example, we present this proof-of-concept software to integrate protein and nucleic acid data. For any amino acid or nucleotide of interest in the Gria2 sequence, it can be quickly linked to its corresponding location on Gria2 protein structure and visualized within VR. CONCLUSIONS: Using innovative 3D techniques, we provide a VR-based platform for visualization of DNA/RNA sequences and protein structures in aggregate, which can be extended to view omics data.


Subject(s)
DNA/analysis , Models, Biological , Proteins/analysis , RNA/analysis , Software , Virtual Reality , Computer Graphics , Humans , Protein Conformation , Proteins/chemistry , User-Computer Interface
10.
JAMA Neurol ; 76(2): 203-210, 2019 02 01.
Article in English | MEDLINE | ID: mdl-30452526

ABSTRACT

Importance: Hydrocephalus is a treatable but potentially fatal complication that has not been previously described in congenital Zika syndrome (CZS). Objective: To describe the clinical features and imaging findings in 24 patients with congenital Zika syndrome (CZS) who developed hydrocephalus. Design, Setting, and Participants: This case series included patients with hydrocephalus who were born in October and November 2015 and followed up until mid-2017 in the 2 largest national referral centers for CZS in Brazil. The participants included consecutively enrolled children with a clinical and laboratorial diagnosis of CZS who developed clinical and/or image findings suggestive of hydrocephalus and who were confirmed to experience increased intracranial hypertension during ventriculoperitoneal shunt procedures. Main Outcomes and Measures: To retrospectively describe clinical and image findings in these 24 patients. Results: This multicenter cohort included 308 patients with CZS; 24 consecutive children were enrolled in this study. These children were aged between 3 to 18 months, and 13 of 24 (54%) were female. All patients presented with at least 1 positive test result for anti-Zika antibodies in cerebrospinal fluid or serum and had classic signs of CZS. At the time of hydrocephalus diagnosis, only 14 of 24 patients (58%) had symptoms and signs suggestive of hydrocephalus (mainly worsening seizures, vomiting, irritability, and/or sudden increase of head circumference percentile). Two of 24 patients (8%) had no symptoms suggestive of hydrocephalus but were found to have reduced brain volume on repeated imaging. Cerebellar or brainstem hypoplasia on baseline imaging were found in 18 of 23 patients (78%). At the second computed tomographic scan, all patients showed a marked increase of ventricular volume, compatible with communicating hydrocephalus, and reduction of brain tissue that was visibly worse than on baseline imaging for the 23 patients with repeated scans. Conclusions and Relevance: We present evidence that hydrocephalus is a complication of CZS in at least a proportion of patients. The clinical spectrum of this condition continues to evolve, but given that presenting signs and symptoms of hydrocephalus can be challenging to recognize in CZS, we provisionally recommend that high suspicion and appropriate monitoring for hydrocephalus should be part of the standard care of patients with CZS.


Subject(s)
Hydrocephalus/diagnosis , Hydrocephalus/etiology , Zika Virus Infection/congenital , Zika Virus Infection/complications , Brazil , Female , Follow-Up Studies , Humans , Hydrocephalus/pathology , Hydrocephalus/physiopathology , Infant , Male , Retrospective Studies
11.
Eur J Neurosci ; 48(9): 3043-3051, 2018 11.
Article in English | MEDLINE | ID: mdl-30239049

ABSTRACT

Transglutaminase 2 (TG2) is a protein that modulates neuronal survival processes. Although TG2 is primarily cytosolic, data have suggested the nuclear localization of TG2 is strongly associated with neuronal viability. Depletion of TG2 in neurons results in neurite retraction and loss of viability, which is likely due to a dysregulation in gene expression. To begin to understand how TG2 regulates neuronal gene expression, chromatin immunoprecipitation was performed in neurons with TG2 overexpression. The resulting genomic DNA was recovered and sequenced. Bioinformatics analyses revealed that a signature DNA motif was enriched in the TG2 immunoprecipitated genomic DNA. In particular, this motif strongly mapped to a region proximate to the gene Ctss (cathepsin S). Knockdown of TG2 resulted in a significant increase in cathepsin S expression, which preceded the loss of neuronal viability. This is the first demonstration that TG2 directly associates with genomic DNA and regulates gene expression in neurons. Given that expression of cathepsin S is increased in neurological disease states, our data suggest that TG2 may play a role in promoting neuron health in part by repressing the expression of cathepsin S. Overall these data provide new insights into the function of nuclear TG2 in neurons.


Subject(s)
Cathepsins/biosynthesis , Cerebral Cortex/metabolism , Neurons/metabolism , Transglutaminases/physiology , Animals , Cathepsins/genetics , Cell Survival/physiology , Cells, Cultured , Cerebral Cortex/cytology , Female , Gene Expression , Humans , Pregnancy , Protein Glutamine gamma Glutamyltransferase 2 , Rats
12.
Neurol Clin Pract ; 8(1): 4-5, 2018 Feb.
Article in English | MEDLINE | ID: mdl-29517051
13.
Dev Med Child Neurol ; 60(6): 559-565, 2018 06.
Article in English | MEDLINE | ID: mdl-29600549

ABSTRACT

As a consequence of the genomic revolution, a large number of publications describing paroxysmal movement disorders have been published in the last few years, shedding light on their molecular pathology. Routine gene testing is not necessary to guide treatment for typical forms of paroxysmal kinesigenic dyskinesia (PKD), paroxysmal nonkinesigenic dyskinesia (PNKD), and episodic ataxia type 1 or 2. It can, however, be helpful in the management of atypical or complex cases, especially for genetic counselling, treatment strategies, and the offer of preimplantation genetic diagnosis. Antiepileptic drugs remain the treatment of choice for PKD and episodic ataxia type 1, benzodiazepines are often useful for PNKD, and episodic ataxia type 2 benefits from acetazolamide regardless of the genetic etiology. WHAT THE PAPER ADDS: A growing number of genes have been associated with classic and newly described paroxysmal movement disorders. Paroxysmal movement disorders share common mechanisms and clinical features with other neurological paroxysmal phenomena including epilepsy and migraine.


Subject(s)
Disease Management , Genotype , Movement Disorders , Phenotype , Anticonvulsants/therapeutic use , Genetic Predisposition to Disease/genetics , Humans , Membrane Proteins/genetics , Membrane Proteins/metabolism , Movement Disorders/genetics , Movement Disorders/physiopathology , Movement Disorders/therapy , Nerve Tissue Proteins/genetics , Nerve Tissue Proteins/metabolism
14.
Continuum (Minneap Minn) ; 24(1, Child Neurology): 18-36, 2018 02.
Article in English | MEDLINE | ID: mdl-29432235

ABSTRACT

PURPOSE OF REVIEW: This article puts advances in the field of neurogenetics into context and provides a quick review of the broad concepts necessary for current practice in neurology. RECENT FINDINGS: The exponential growth of genetic testing is due to its increased speed and decreasing cost, and it is now a routine part of the clinical care for a number of neurologic patients. In addition, phenotypic pleiotropy (mutations in the same gene causing very disparate phenotypes) and genetic heterogeneity (the same clinical phenotype resulting from mutations in different genes) are now known to exist in a number of conditions, adding an additional layer of complexity for genetic testing in these disorders. SUMMARY: Although the growing complexity of technical knowledge in the ordering and interpretation of genetic tests makes it necessary for neurologists to consult medical geneticists, limitations in the availability of such professionals often means neurologists will be on the front line dealing with suspected or confirmed neurogenetic conditions. The growing availability of broad genetic testing through chromosomal microarray and next-generation sequencing and the expanded phenotypic spectrum of many conditions has implications for genetic counseling and medical management. This article discusses the various forms of genetic variability and how to test for each of them. It also provides an update on the most common forms of neurologic presentations of genetic disease and a review of testing strategies.


Subject(s)
Genetic Testing/methods , Nervous System Diseases/diagnosis , Nervous System Diseases/genetics , Neurology/methods , Child , Child, Preschool , Female , Humans , Male , Neurologists
15.
Mol Cell Neurosci ; 86: 72-80, 2018 01.
Article in English | MEDLINE | ID: mdl-29197584

ABSTRACT

The protein transglutaminase 2 (TG2) has been implicated as a modulator of neuronal viability. TG2's role in mediating cell survival processes has been suggested to involve its ability to alter transcriptional events. The goal of this study was to examine the role of TG2 in neuronal survival and to begin to delineate the pathways it regulates. We show that depletion of TG2 significantly compromises the viability of neurons in the absence of any stressors. RNA sequencing revealed that depletion of TG2 dysregulated the expression of 86 genes with 59 of these being upregulated. The genes that were upregulated by TG2 knockdown were primarily involved in extracellular matrix function, cell signaling and cytoskeleton integrity pathways. Finally, depletion of TG2 significantly reduced neurite length. These findings suggest for the first time that TG2 plays a crucial role in mediating neuronal survival through its regulation of genes involved in neurite length and maintenance.


Subject(s)
Extracellular Matrix/genetics , Extracellular Matrix/metabolism , GTP-Binding Proteins/deficiency , GTP-Binding Proteins/genetics , Neurons/physiology , Signal Transduction/physiology , Transglutaminases/deficiency , Transglutaminases/genetics , Animals , Cell Survival/physiology , Cells, Cultured , Female , Gene Expression , HEK293 Cells , Humans , Neurites/physiology , Pregnancy , Protein Glutamine gamma Glutamyltransferase 2 , Rats , Rats, Sprague-Dawley
16.
Am J Med Genet A ; 176(1): 56-67, 2018 01.
Article in English | MEDLINE | ID: mdl-29150892

ABSTRACT

PURA syndrome is a recently described developmental encephalopathy presenting with neonatal hypotonia, feeding difficulties, global developmental delay, severe intellectual disability, and frequent apnea and epilepsy. We describe 18 new individuals with heterozygous sequence variations in PURA. A neuromotor disorder starting with neonatal hyptonia, but ultimately allowing delayed progression to walking, was present in nearly all individuals. Congenital apnea was present in 56% during infancy, but all cases in this cohort resolved during the first year of life. Feeding difficulties were frequently reported, with gastrostomy tube placement required in 28%. Epilepsy was present in 50% of the subjects, including infantile spasms and Lennox-Gastaut syndrome. Skeletal complications were found in 39%. Disorders of gastrointestinal motility and nystagmus were also recurrent features. Autism was diagnosed in one individual, potentially expanding the neurodevelopmental phenotype associated with this syndrome. However, we did not find additional PURA sequence variations in a cohort of 120 subjects with autism. We also present the first neuropathologic studies of PURA syndrome, and describe chronic inflammatory changes around the arterioles within the deep white matter. We did not find significant correlations between mutational class and severity, nor between location of the sequence variation in PUR repeat domains. Further studies are required in larger cohorts of subjects with PURA syndrome to clarify these genotype-phenotype associations.


Subject(s)
Brain Diseases/diagnosis , Brain Diseases/genetics , DNA-Binding Proteins/genetics , Genetic Association Studies , Intellectual Disability/diagnosis , Intellectual Disability/genetics , Phenotype , Transcription Factors/genetics , Adolescent , Adult , Child , Child, Preschool , Chromosome Deletion , Chromosomes, Human, Pair 5 , DNA Mutational Analysis , Disease Management , Epilepsy , Facies , Female , Humans , Infant , Magnetic Resonance Imaging/methods , Male , Syndrome , White Matter/pathology , Exome Sequencing , Young Adult
17.
Child Neurol Open ; 4: 2329048X17733214, 2017.
Article in English | MEDLINE | ID: mdl-29051910

ABSTRACT

Synaptosomal-associated protein 29 (SNAP29) is a t-SNARE protein that is implicated in intracellular vesicle fusion. Mutations in the SNAP29 gene have been associated with cerebral dysgenesis, neuropathy, ichthyosis, and keratoderma syndrome (CEDNIK). In patients with 22q11.2 deletion syndrome, mutations in SNAP29 on the nondeleted chromosome are linked to similar ichthyotic and neurological phenotypes. Here, the authors report a patient with cerebral dysgenesis, neuropathy, ichthyosis, and keratoderma syndrome who presented with global developmental delay, polymicrogyria, dysgenesis of the corpus callosum, optic nerve dysplasia, gaze apraxia, and dysmorphic features. He has developed ichthyosis and palmoplantar keratoderma as he has grown. Exome sequencing identified a homozygous nonsense mutation in SNAP29 gene designated as c.85C>T (p.Arg29X). The authors compare the findings in the proband with previously reported cases. The previously unreported mutation in this patient and his phenotype add to the characterization of cerebral dysgenesis, neuropathy, ichthyosis, and keratoderma syndrome and the accumulating scientific evidence that implicates synaptic protein dysfunction in various neuroectodermal conditions.

19.
BMC Res Notes ; 10(1): 233, 2017 Jun 27.
Article in English | MEDLINE | ID: mdl-28655339

ABSTRACT

OBJECTIVE: We built India Allele Finder, an online searchable database and command line tool, that gives researchers access to variant frequencies of Indian Telugu individuals, using publicly available fastq data from the 1000 Genomes Project. Access to appropriate population-based genomic variant annotation can accelerate the interpretation of genomic sequencing data. In particular, exome analysis of individuals of Indian descent will identify population variants not reflected in European exomes, complicating genomic analysis for such individuals. RESULTS: India Allele Finder offers improved ease-of-use to investigators seeking to identify and annotate sequencing data from Indian populations. We describe the use of India Allele Finder to identify common population variants in a disease quartet whole exome dataset, reducing the number of candidate single nucleotide variants from 84 to 7. India Allele Finder is freely available to investigators to annotate genomic sequencing data from Indian populations. Use of India Allele Finder allows efficient identification of population variants in genomic sequencing data, and is an example of a population-specific annotation tool that simplifies analysis and encourages international collaboration in genomics research.


Subject(s)
Alleles , Genome, Human , High-Throughput Nucleotide Sequencing , Molecular Sequence Annotation/methods , Software , Databases, Genetic , Genetic Variation , Genetics, Population , Genomics , Humans , India
20.
Am J Med Genet A ; 173(7): 1951-1954, 2017 Jul.
Article in English | MEDLINE | ID: mdl-28464511

ABSTRACT

Developmental encephalopathies constitute a broad and genetically heterogeneous spectrum of disorders associated with global developmental delay, intellectual disability, frequent epilepsy, and other neurofunctional abnormalities. Here, we report a male presenting with infantile onset epilepsy and syndromic features resembling Dubowitz syndrome identified to have a de novo PLXNA1 variant by whole exome sequencing. This constitutes the second report of PLXNA1 sequence variation associated with early onset epilepsy, and the first to expand on the clinical features of this emerging disorder. This reports suggests that nonsynonymous de novo sequence variations in PLXNA1 are associated with a novel human phenotype characterized by intractable early onset epilepsy, intellectual disability, and syndromic features.

SELECTION OF CITATIONS
SEARCH DETAIL