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Literature record

Genomic analysis of multiplex consanguineous families reveals causes of neurodevelopmental disorders with epilepsy.

PMID 37393059 | DOI 10.1016/j.gene.2023.147599 · Gene · 2023

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INTRODUCTION: Neurodevelopmental disorders (NDD) are a diverse group of disorders that affect the development of the nervous system. Epilepsy is a common phenotypic aspect of NDD. METHODS: We recruited eight consanguineous families from Pakistan which segregated recessively inherited NDD with epilepsy. Magnetic Resonance imaging (MRI) and Electroencephalogram (EEG) were completed. Exome sequencing was carried out for selected participants from each family. The exome data were analyzed for exonic and splice-site variants that had allele frequencies of less than 0.01 in public databases. RESULTS: Clinical investigations determined that developmental delay, intellectual disability and seizures were manifested by most patients in early childhood. EEG findings were abnormal in the participants of four families. MRI revealed demyelination orcerebral atrophic changes in multiple participants. We identified four novel homozygous variants including nonsense andmissense variants in OCLN, ALDH7A1, IQSEC2 and COL3A1, segregating with the phenotypes in the participants of four families. Previously reported homozygous variants of CNTNAP2, TRIT1 and NARS1 were found in individuals from three families. Clinical utility was observed in directing treatment in case of patients with an ALDH7A1 variant which included pyridoxine administration and enabling accurate counseling about the natural history and recurrence risk. CONCLUSION: Our results add to the clinical and molecular delineation of very rare NDD with epilepsy. The high success rate of exome sequencing is likely attributable to the expectation of homozygous variants in patients of consanguineous families, and in one case, the availability of positional mapping data that greatly aided the variant prioritization.

Validated evidence

TypeEntitySource evidenceConfidenceExtractor
geneOCLN“We identified four novel homozygous variants including nonsense andmissense variants in OCLN, ALDH7A1, IQSEC2 and COL3A1, segregating with the phenotypes in the participants of four families.”0.98hgnc_dict_v1
geneALDH7A1“We identified four novel homozygous variants including nonsense andmissense variants in OCLN, ALDH7A1, IQSEC2 and COL3A1, segregating with the phenotypes in the participants of four families.”0.98hgnc_dict_v1
geneIQSEC2“We identified four novel homozygous variants including nonsense andmissense variants in OCLN, ALDH7A1, IQSEC2 and COL3A1, segregating with the phenotypes in the participants of four families.”0.98hgnc_dict_v1
geneCOL3A1“We identified four novel homozygous variants including nonsense andmissense variants in OCLN, ALDH7A1, IQSEC2 and COL3A1, segregating with the phenotypes in the participants of four families.”0.98hgnc_dict_v1
geneCNTNAP2“Previously reported homozygous variants of CNTNAP2, TRIT1 and NARS1 were found in individuals from three families.”0.98hgnc_dict_v1
geneTRIT1“Previously reported homozygous variants of CNTNAP2, TRIT1 and NARS1 were found in individuals from three families.”0.98hgnc_dict_v1
geneNARS1“Previously reported homozygous variants of CNTNAP2, TRIT1 and NARS1 were found in individuals from three families.”0.98hgnc_dict_v1
phenotypeepilepsy“Genomic analysis of multiplex consanguineous families reveals causes of neurodevelopmental disorders with epilepsy.”0.98phenotype_alias_lexicon_v2
phenotypeintellectual disability“RESULTS: Clinical investigations determined that developmental delay, intellectual disability and seizures were manifested by most patients in early childhood.”0.98phenotype_alias_lexicon_v2
phenotypedevelopmental delay“RESULTS: Clinical investigations determined that developmental delay, intellectual disability and seizures were manifested by most patients in early childhood.”0.98phenotype_alias_lexicon_v2
phenotypeneurodevelopmental disorder“Genomic analysis of multiplex consanguineous families reveals causes of neurodevelopmental disorders with epilepsy.”0.93phenotype_alias_lexicon_v2
populationPopulation“Genomic analysis of multiplex consanguineous families reveals causes of neurodevelopmental disorders with epilepsy. METHODS: We recruited eight consanguineous families from Pakistan which segregated recessively inherited NDD with epilepsy. The high success rate of exome sequencing is likely attributable to the expectation of homozygous variants in patients of consanguineous families, and in one case, the availability of positional mapping data that greatly aided the variant prioritization.”0.80saudi_context_rules_v1