Identification of two novel autism genes, TRPC4 and SCFD2, in Qatar simplex families through exome sequencing

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dc.contributor.authorV Gupta-
dc.contributor.authorA Ben-Mahmoud-
dc.contributor.authorBonsu Ku-
dc.contributor.authorD Velayutham-
dc.contributor.authorZ Jan-
dc.contributor.authorA Y Aden-
dc.contributor.authorA Kubbar-
dc.contributor.authorF Alshaban-
dc.contributor.authorL W Stanton-
dc.contributor.authorP V Jithesh-
dc.contributor.authorL C Layman-
dc.contributor.authorH G Kim-
dc.date.accessioned2023-11-13T16:33:07Z-
dc.date.available2023-11-13T16:33:07Z-
dc.date.issued2023-
dc.identifier.issn1664-0640-
dc.identifier.urihttps://oak.kribb.re.kr/handle/201005/32974-
dc.description.abstractThis study investigated the genetic underpinnings of autism spectrum disorder (ASD) in a Middle Eastern cohort in Qatar using exome sequencing. The study identified six candidate autism genes in independent simplex families, including both four known and two novel autosomal dominant and autosomal recessive genes associated with ASD. The variants consisted primarily of de novo and homozygous missense and splice variants. Multiple individuals displayed more than one candidate variant, suggesting the potential involvement of digenic or oligogenic models. These variants were absent in the Genome Aggregation Database (gnomAD) and exhibited extremely low frequencies in the local control population dataset. Two novel autism genes, TRPC4 and SCFD2, were discovered in two Qatari autism individuals. Furthermore, the D651A substitution in CLCN3 and the splice acceptor variant in DHX30 were identified as likely deleterious mutations. Protein modeling was utilized to evaluate the potential impact of three missense variants in DEAF1, CLCN3, and SCFD2 on their respective structures and functions, which strongly supported the pathogenic natures of these variants. The presence of multiple de novo mutations across trios underscored the significant contribution of de novo mutations to the genetic etiology of ASD. Functional assays and further investigations are necessary to confirm the pathogenicity of the identified genes and determine their significance in ASD. Overall, this study sheds light on the genetic factors underlying ASD in Qatar and highlights the importance of considering diverse populations in ASD research.-
dc.publisherFrontiers Media Sa-
dc.titleIdentification of two novel autism genes, TRPC4 and SCFD2, in Qatar simplex families through exome sequencing-
dc.title.alternativeIdentification of two novel autism genes, TRPC4 and SCFD2, in Qatar simplex families through exome sequencing-
dc.typeArticle-
dc.citation.titleFrontiers in Psychiatry-
dc.citation.number0-
dc.citation.endPage1251884-
dc.citation.startPage1251884-
dc.citation.volume14-
dc.contributor.affiliatedAuthorBonsu Ku-
dc.contributor.alternativeNameGupta-
dc.contributor.alternativeNameBen-Mahmoud-
dc.contributor.alternativeName구본수-
dc.contributor.alternativeNameVelayutham-
dc.contributor.alternativeNameJan-
dc.contributor.alternativeNameAden-
dc.contributor.alternativeNameKubbar-
dc.contributor.alternativeNameAlshaban-
dc.contributor.alternativeNameStanton-
dc.contributor.alternativeNameJithesh-
dc.contributor.alternativeNameLayman-
dc.contributor.alternativeName김형구-
dc.identifier.bibliographicCitationFrontiers in Psychiatry, vol. 14, pp. 1251884-1251884-
dc.identifier.doi10.3389/fpsyt.2023.1251884-
dc.subject.keywordExome sequencing-
dc.subject.keywordAutism-
dc.subject.keywordIntellectual disability-
dc.subject.keywordDigenic-
dc.subject.keywordTRPC4-
dc.subject.keywordSCFD2-
dc.subject.localExome sequencing-
dc.subject.localexome sequencing-
dc.subject.localAutism-
dc.subject.localIntellectual disability-
dc.subject.localintellectual disability-
dc.subject.localDigenic-
dc.subject.localTRPC4-
dc.subject.localSCFD2-
dc.description.journalClassY-
Appears in Collections:
Division of A.I. & Biomedical Research > Orphan Disease Therapeutic Target Research Center > 1. Journal Articles
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