Copy number variation of two separate regulatory regions upstream of SOX9 causes isolated 46, XY or 46, XX disorder of sex development. Issue 4 (20th January 2015)
- Record Type:
- Journal Article
- Title:
- Copy number variation of two separate regulatory regions upstream of SOX9 causes isolated 46, XY or 46, XX disorder of sex development. Issue 4 (20th January 2015)
- Main Title:
- Copy number variation of two separate regulatory regions upstream of SOX9 causes isolated 46, XY or 46, XX disorder of sex development
- Authors:
- Kim, Gwang-Jin
Sock, Elisabeth
Buchberger, Astrid
Just, Walter
Denzer, Friederike
Hoepffner, Wolfgang
German, James
Cole, Trevor
Mann, Jillian
Seguin, John H
Zipf, William
Costigan, Colm
Schmiady, Hardi
Rostásy, Moritz
Kramer, Mildred
Kaltenbach, Simon
Rösler, Bernd
Georg, Ina
Troppmann, Elke
Teichmann, Anne-Christin
Salfelder, Anika
Widholz, Sebastian A
Wieacker, Peter
Hiort, Olaf
Camerino, Giovanna
Radi, Orietta
Wegner, Michael
Arnold, Hans-Henning
Scherer, Gerd - Abstract:
- 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. 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. Conclusions: Our results indicate that isolated 46, XY and 46, XX DSD can be assigned to two separateAbstract : 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. 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. 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. … (more)
- Is Part Of:
- Journal of medical genetics. Volume 52:Issue 4(2015)
- Journal:
- Journal of medical genetics
- Issue:
- Volume 52:Issue 4(2015)
- Issue Display:
- Volume 52, Issue 4 (2015)
- Year:
- 2015
- Volume:
- 52
- Issue:
- 4
- Issue Sort Value:
- 2015-0052-0004-0000
- Page Start:
- 240
- Page End:
- 247
- Publication Date:
- 2015-01-20
- Subjects:
- SRY -- SOX9 -- disorder of sex development -- enhancer -- long-range control
Medical genetics -- Periodicals
616.042 - Journal URLs:
- http://jmg.bmjjournals.com/ ↗
http://www.bmj.com/archive ↗ - DOI:
- 10.1136/jmedgenet-2014-102864 ↗
- Languages:
- English
- ISSNs:
- 1468-6244
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
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- 18105.xml