A conserved NR5A1-responsive enhancer regulates SRY in testis-determination

被引:0
作者
Denis Houzelstein
Caroline Eozenou
Carlos F. Lagos
Maëva Elzaiat
Joelle Bignon-Topalovic
Inma Gonzalez
Vincent Laville
Laurène Schlick
Somboon Wankanit
Prochi Madon
Jyotsna Kirtane
Arundhati Athalye
Federica Buonocore
Stéphanie Bigou
Gerard S. Conway
Delphine Bohl
John C. Achermann
Anu Bashamboo
Ken McElreavey
机构
[1] Human Developmental Genetics Unit,Institut Pasteur, Université Paris Cité
[2] CNRS,Centre National de la Recherche Scientifique
[3] Campus Los Leones,Chemical Biology & Drug Discovery Lab, Escuela de Química y Farmacia, Facultad de Medicina y Ciencia, Universidad San Sebastián
[4] Fundación Ciencia & Vida,Centro Ciencia & Vida
[5] and the Identity of Cells Unit,Institut Pasteur, Université Paris Cité, Epigenomics, Proliferation
[6] Stem Cells and Development Unit,Institut Pasteur, Université Paris Cité
[7] Bioinformatics and Biostatistics Hub,Institut Pasteur, Université Paris Cité
[8] Mahidol University,Department of Pediatrics, Faculty of Medicine Ramathibodi Hospital
[9] Jaslok Hospital and Research Centre,Department of Assisted Reproduction and Genetics
[10] Jaslok Hospital and Research Centre,Department of Pediatric Surgery
[11] University College London,Genetics and Genomic Medicine Research & Teaching Department, UCL GOS Institute of Child Health
[12] Hôpital de la Pitié Salpêtrière,ICV
[13] University College London,iPS core facility, Sorbonne Université, Institut du Cerveau
[14] Hôpital de la Pitié Salpêtrière, Paris Brain Institute
[15] CNRS, ICM, Inserm, CNRS, APHP
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Nature Communications | / 15卷
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摘要
The Y-linked SRY gene initiates mammalian testis-determination. However, how the expression of SRY is regulated remains elusive. Here, we demonstrate that a conserved steroidogenic factor-1 (SF-1)/NR5A1 binding enhancer is required for appropriate SRY expression to initiate testis-determination in humans. Comparative sequence analysis of SRY 5’ regions in mammals identified an evolutionary conserved SF-1/NR5A1-binding motif within a 250 bp region of open chromatin located 5 kilobases upstream of the SRY transcription start site. Genomic analysis of 46,XY individuals with disrupted testis-determination, including a large multigenerational family, identified unique single-base substitutions of highly conserved residues within the SF-1/NR5A1-binding element. In silico modelling and in vitro assays demonstrate the enhancer properties of the NR5A1 motif. Deletion of this hemizygous element by genome-editing, in a novel in vitro cellular model recapitulating human Sertoli cell formation, resulted in a significant reduction in expression of SRY. Therefore, human NR5A1 acts as a regulatory switch between testis and ovary development by upregulating SRY expression, a role that may predate the eutherian radiation. We show that disruption of an enhancer can phenocopy variants in the coding regions of SRY that cause human testis dysgenesis. Since disease causing variants in enhancers are currently rare, the regulation of gene expression in testis-determination offers a paradigm to define enhancer activity in a key developmental process.
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