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Copy number variation of two separate regulatory regions upstream of SOX9 causes isolated 46,XY or 46,XX disorder of sex development.

Authors :
Kim GJ
Sock E
Buchberger A
Just W
Denzer F
Hoepffner W
German J
Cole T
Mann J
Seguin JH
Zipf W
Costigan C
Schmiady H
Rostásy M
Kramer M
Kaltenbach S
Rösler B
Georg I
Troppmann E
Teichmann AC
Salfelder A
Widholz SA
Wieacker P
Hiort O
Camerino G
Radi O
Wegner M
Arnold HH
Scherer G
Source :
Journal of medical genetics [J Med Genet] 2015 Apr; Vol. 52 (4), pp. 240-7. Date of Electronic Publication: 2015 Jan 20.
Publication Year :
2015

Abstract

Background: SOX9 mutations cause the skeletal malformation syndrome campomelic dysplasia in combination with XY sex reversal. Studies in mice indicate that SOX9 acts as a testis-inducing transcription factor downstream of SRY, triggering Sertoli cell and testis differentiation. An SRY-dependent testis-specific enhancer for Sox9 has been identified only in mice. A previous study has implicated copy number variations (CNVs) of a 78 kb region 517-595 kb upstream of SOX9 in the aetiology of both 46,XY and 46,XX disorders of sex development (DSD). We wanted to better define this region for both disorders.<br />Results: By CNV analysis, we identified SOX9 upstream duplications in three cases of SRY-negative 46,XX DSD, which together with previously reported duplications define a 68 kb region, 516-584 kb upstream of SOX9, designated XXSR (XX sex reversal region). More importantly, we identified heterozygous deletions in four families with SRY-positive 46,XY DSD without skeletal phenotype, which define a 32.5 kb interval 607.1-639.6 kb upstream of SOX9, designated XY sex reversal region (XYSR). To localise the suspected testis-specific enhancer, XYSR subfragments were tested in cell transfection and transgenic experiments. While transgenic experiments remained inconclusive, a 1.9 kb SRY-responsive subfragment drove expression specifically in Sertoli-like cells.<br />Conclusions: Our results indicate that isolated 46,XY and 46,XX DSD can be assigned to two separate regulatory regions, XYSR and XXSR, far upstream of SOX9. The 1.9 kb SRY-responsive subfragment from the XYSR might constitute the core of the Sertoli-cell enhancer of human SOX9, representing the so far missing link in the genetic cascade of male sex determination.<br /> (Published by the BMJ Publishing Group Limited. For permission to use (where not already granted under a licence) please go to http://group.bmj.com/group/rights-licensing/permissions.)

Details

Language :
English
ISSN :
1468-6244
Volume :
52
Issue :
4
Database :
MEDLINE
Journal :
Journal of medical genetics
Publication Type :
Academic Journal
Accession number :
25604083
Full Text :
https://doi.org/10.1136/jmedgenet-2014-102864