Novel candidate genes and variants underlying autosomal recessive neurodevelopmental disorders with intellectual disability

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作者
Regie Lyn P. Santos-Cortez
Valeed Khan
Falak Sher Khan
Zaib-un-Nisa Mughal
Imen Chakchouk
Kwanghyuk Lee
Memoona Rasheed
Rifat Hamza
Anushree Acharya
Ehsan Ullah
Muhammad Arif Nadeem Saqib
Izoduwa Abbe
Ghazanfar Ali
Muhammad Jawad Hassan
Saadullah Khan
Zahid Azeem
Irfan Ullah
Michael J. Bamshad
Deborah A. Nickerson
Isabelle Schrauwen
Wasim Ahmad
Muhammad Ansar
Suzanne M. Leal
机构
[1] Center for Statistical Genetics,Department of Molecular and Human Genetics
[2] Baylor College of Medicine,Department of Otolaryngology
[3] University of Colorado School of Medicine,Department of Biochemistry, Faculty of Biological Sciences
[4] Quaid-i-Azam University,Department of Biotechnology
[5] Pakistan Health Research Council,Department of Healthcare Biotechnology
[6] University of Azad Jammu and Kashmir,Department of Biotechnology and Genetic Engineering
[7] Atta-ur-Rahman School of Applied Biosciences,Department of Biochemistry
[8] National University of Sciences and Technology,Department of Genome Sciences
[9] Kohat University of Science and Technology,Department of Pediatrics
[10] Azad Jammu and Kashmir Medical College,undefined
[11] University of Washington,undefined
[12] University of Washington,undefined
来源
Human Genetics | 2018年 / 137卷
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摘要
Identification of Mendelian genes for neurodevelopmental disorders using exome sequencing to study autosomal recessive (AR) consanguineous pedigrees has been highly successful. To identify causal variants for syndromic and non-syndromic intellectual disability (ID), exome sequencing was performed using DNA samples from 22 consanguineous Pakistani families with ARID, of which 21 have additional phenotypes including microcephaly. To aid in variant identification, homozygosity mapping and linkage analysis were performed. DNA samples from affected family member(s) from every pedigree underwent exome sequencing. Identified rare damaging exome variants were tested for co-segregation with ID using Sanger sequencing. For seven ARID families, variants were identified in genes not previously associated with ID, including: EI24, FXR1 and TET3 for which knockout mouse models have brain defects; and CACNG7 and TRAPPC10 where cell studies suggest roles in important neural pathways. For two families, the novel ARID genes CARNMT1 and GARNL3 lie within previously reported ID microdeletion regions. We also observed homozygous variants in two ID candidate genes, GRAMD1B and TBRG1, for which each has been previously reported in a single family. An additional 14 families have homozygous variants in established ID genes, of which 11 variants are novel. All ARID genes have increased expression in specific structures of the developing and adult human brain and 91% of the genes are differentially expressed in utero or during early childhood. The identification of novel ARID candidate genes and variants adds to the knowledge base that is required to further understand human brain function and development.
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页码:735 / 752
页数:17
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