Literature DB >> 31230720

The Genomics of Arthrogryposis, a Complex Trait: Candidate Genes and Further Evidence for Oligogenic Inheritance.

Davut Pehlivan1, Yavuz Bayram2, Nilay Gunes3, Zeynep Coban Akdemir4, Anju Shukla5, Tatjana Bierhals6, Burcu Tabakci7, Yavuz Sahin8, Alper Gezdirici9, Jawid M Fatih4, Elif Yilmaz Gulec9, Gozde Yesil10, Jaya Punetha4, Zeynep Ocak9, Christopher M Grochowski4, Ender Karaca4, Hatice Mutlu Albayrak11, Periyasamy Radhakrishnan5, Haktan Bagis Erdem12, Ibrahim Sahin13, Timur Yildirim14, Ilhan A Bayhan14, Aysegul Bursali14, Muhsin Elmas15, Zafer Yuksel16, Ozturk Ozdemir17, Fatma Silan17, Onur Yildiz17, Osman Yesilbas18, Sedat Isikay19, Burhan Balta20, Shen Gu4, Shalini N Jhangiani21, Harsha Doddapaneni21, Jianhong Hu21, Donna M Muzny21, Eric Boerwinkle22, Richard A Gibbs23, Konstantinos Tsiakas24, Maja Hempel6, Katta Mohan Girisha5, Davut Gul25, Jennifer E Posey4, Nursel H Elcioglu26, Beyhan Tuysuz3, James R Lupski27.   

Abstract

Arthrogryposis is a clinical finding that is present either as a feature of a neuromuscular condition or as part of a systemic disease in over 400 Mendelian conditions. The underlying molecular etiology remains largely unknown because of genetic and phenotypic heterogeneity. We applied exome sequencing (ES) in a cohort of 89 families with the clinical sign of arthrogryposis. Additional molecular techniques including array comparative genomic hybridization (aCGH) and Droplet Digital PCR (ddPCR) were performed on individuals who were found to have pathogenic copy number variants (CNVs) and mosaicism, respectively. A molecular diagnosis was established in 65.2% (58/89) of families. Eleven out of 58 families (19.0%) showed evidence for potential involvement of pathogenic variation at more than one locus, probably driven by absence of heterozygosity (AOH) burden due to identity-by-descent (IBD). RYR3, MYOM2, ERGIC1, SPTBN4, and ABCA7 represent genes, identified in two or more families, for which mutations are probably causative for arthrogryposis. We also provide evidence for the involvement of CNVs in the etiology of arthrogryposis and for the idea that both mono-allelic and bi-allelic variants in the same gene cause either similar or distinct syndromes. We were able to identify the molecular etiology in nine out of 20 families who underwent reanalysis. In summary, our data from family-based ES further delineate the molecular etiology of arthrogryposis, yielded several candidate disease-associated genes, and provide evidence for mutational burden in a biological pathway or network. Our study also highlights the importance of reanalysis of individuals with unsolved diagnoses in conjunction with sequencing extended family members.
Copyright © 2019 American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  ES reanalysis; absence of heterozygosity; arthrogryposis; identity-by-descent; joint contracture; multilocus pathogenic variation; neuromuscular disease; trio-exome

Year:  2019        PMID: 31230720      PMCID: PMC6612529          DOI: 10.1016/j.ajhg.2019.05.015

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


  70 in total

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Journal:  Proc Natl Acad Sci U S A       Date:  2009-05-13       Impact factor: 11.205

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