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Integration of Transcriptome and Exome Genotyping Identifies Significant Variants with Autism Spectrum Disorder

Autism is a complex disease with genetic predisposition factors. Real factors for treatment and early diagnosis are yet to be defined. This study integrated transcriptome and exome genotyping for identifying functional variants associated with autism spectrum disorder and their impact on gene expres...

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Autores principales: Almandil, Noor B., AlSulaiman, Abdulla, Aldakeel, Sumayh A., Alkuroud, Deem N., Aljofi, Halah Egal, Alzahrani, Safah, Al-mana, Aishah, Alfuraih, Asma A., Alabdali, Majed, Alkhamis, Fahd A., AbdulAzeez, Sayed, Borgio, J. Francis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8880056/
https://www.ncbi.nlm.nih.gov/pubmed/35215271
http://dx.doi.org/10.3390/ph15020158
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author Almandil, Noor B.
AlSulaiman, Abdulla
Aldakeel, Sumayh A.
Alkuroud, Deem N.
Aljofi, Halah Egal
Alzahrani, Safah
Al-mana, Aishah
Alfuraih, Asma A.
Alabdali, Majed
Alkhamis, Fahd A.
AbdulAzeez, Sayed
Borgio, J. Francis
author_facet Almandil, Noor B.
AlSulaiman, Abdulla
Aldakeel, Sumayh A.
Alkuroud, Deem N.
Aljofi, Halah Egal
Alzahrani, Safah
Al-mana, Aishah
Alfuraih, Asma A.
Alabdali, Majed
Alkhamis, Fahd A.
AbdulAzeez, Sayed
Borgio, J. Francis
author_sort Almandil, Noor B.
collection PubMed
description Autism is a complex disease with genetic predisposition factors. Real factors for treatment and early diagnosis are yet to be defined. This study integrated transcriptome and exome genotyping for identifying functional variants associated with autism spectrum disorder and their impact on gene expression to find significant variations. More than 1800 patients were screened, and 70 (47 male/23 female) with an average age of 7.56 ± 3.68 years fulfilled the DSM-5 criteria for autism. Analysis revealed 682 SNPs of 589 genes significantly (p < 0.001) associated with autism among the putative functional exonic variants (n = 243,345) studied. Olfactory receptor genes on chromosome 6 were significant after Bonferroni correction (α = 0.05/243345 = 2.05 × 10(−7)) with a high degree of linkage disequilibrium on 6p22.1 (p = 6.71 × 10(−9)). The differentially expressed gene analysis of autistic patients compared to controls in whole RNA sequencing identified significantly upregulated (foldchange ≥0.8 and p-value ≤ 0.05; n = 125) and downregulated (foldchange ≤−0.8 and p-value ≤ 0.05; n = 117) genes. The integration of significantly up- and downregulated genes and genes of significant SNPs identified regulatory variants (rs6657480, rs3130780, and rs1940475) associated with the up- (ITGB3BP) and downregulation (DDR1 and MMP8) of genes in autism spectrum disorder in people of Arab ancestries. The significant variants could be a biomarker of interest for identifying early autism among Arabs and helping to characterize the genes involved in the susceptibility mechanisms for autistic subjects.
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spelling pubmed-88800562022-02-26 Integration of Transcriptome and Exome Genotyping Identifies Significant Variants with Autism Spectrum Disorder Almandil, Noor B. AlSulaiman, Abdulla Aldakeel, Sumayh A. Alkuroud, Deem N. Aljofi, Halah Egal Alzahrani, Safah Al-mana, Aishah Alfuraih, Asma A. Alabdali, Majed Alkhamis, Fahd A. AbdulAzeez, Sayed Borgio, J. Francis Pharmaceuticals (Basel) Article Autism is a complex disease with genetic predisposition factors. Real factors for treatment and early diagnosis are yet to be defined. This study integrated transcriptome and exome genotyping for identifying functional variants associated with autism spectrum disorder and their impact on gene expression to find significant variations. More than 1800 patients were screened, and 70 (47 male/23 female) with an average age of 7.56 ± 3.68 years fulfilled the DSM-5 criteria for autism. Analysis revealed 682 SNPs of 589 genes significantly (p < 0.001) associated with autism among the putative functional exonic variants (n = 243,345) studied. Olfactory receptor genes on chromosome 6 were significant after Bonferroni correction (α = 0.05/243345 = 2.05 × 10(−7)) with a high degree of linkage disequilibrium on 6p22.1 (p = 6.71 × 10(−9)). The differentially expressed gene analysis of autistic patients compared to controls in whole RNA sequencing identified significantly upregulated (foldchange ≥0.8 and p-value ≤ 0.05; n = 125) and downregulated (foldchange ≤−0.8 and p-value ≤ 0.05; n = 117) genes. The integration of significantly up- and downregulated genes and genes of significant SNPs identified regulatory variants (rs6657480, rs3130780, and rs1940475) associated with the up- (ITGB3BP) and downregulation (DDR1 and MMP8) of genes in autism spectrum disorder in people of Arab ancestries. The significant variants could be a biomarker of interest for identifying early autism among Arabs and helping to characterize the genes involved in the susceptibility mechanisms for autistic subjects. MDPI 2022-01-27 /pmc/articles/PMC8880056/ /pubmed/35215271 http://dx.doi.org/10.3390/ph15020158 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Almandil, Noor B.
AlSulaiman, Abdulla
Aldakeel, Sumayh A.
Alkuroud, Deem N.
Aljofi, Halah Egal
Alzahrani, Safah
Al-mana, Aishah
Alfuraih, Asma A.
Alabdali, Majed
Alkhamis, Fahd A.
AbdulAzeez, Sayed
Borgio, J. Francis
Integration of Transcriptome and Exome Genotyping Identifies Significant Variants with Autism Spectrum Disorder
title Integration of Transcriptome and Exome Genotyping Identifies Significant Variants with Autism Spectrum Disorder
title_full Integration of Transcriptome and Exome Genotyping Identifies Significant Variants with Autism Spectrum Disorder
title_fullStr Integration of Transcriptome and Exome Genotyping Identifies Significant Variants with Autism Spectrum Disorder
title_full_unstemmed Integration of Transcriptome and Exome Genotyping Identifies Significant Variants with Autism Spectrum Disorder
title_short Integration of Transcriptome and Exome Genotyping Identifies Significant Variants with Autism Spectrum Disorder
title_sort integration of transcriptome and exome genotyping identifies significant variants with autism spectrum disorder
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8880056/
https://www.ncbi.nlm.nih.gov/pubmed/35215271
http://dx.doi.org/10.3390/ph15020158
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