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Vincent Harley

Showing results (21-30 of 30) with videos related to

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Biology of Reproduction|February 13, 2009
The cerebellin 4 precursor gene is a direct target of SRY and SOX9 in miceStephen T Bradford, Ryuji Hiramatsu, Madhavi P Maddugoda, et al.
Nature Reviews. Disease Primers|July 31, 2025
Differences of sex developmentSyed Faisal Ahmed, Kate Armstrong, Earl Y Cheng, et al.
Biology of Sex Differences|January 31, 2018
Identification of novel candidate genes for 46,XY disorders of sex development (DSD) using a C57BL/6J-Y <sup>POS</sup> mouse modelHayk Barseghyan, Aleisha Symon, Mariam Zadikyan, et al.
Nature Communications|July 25, 2019
Author Correction: Human sex reversal is caused by duplication or deletion of core enhancers upstream of SOX9Brittany Croft, Thomas Ohnesorg, Jacqueline Hewitt, et al.
Nature Communications|December 16, 2018
Human sex reversal is caused by duplication or deletion of core enhancers upstream of SOX9Brittany Croft, Thomas Ohnesorg, Jacqueline Hewitt, et al.
The Journal of Clinical Investigation|December 25, 2010
Identification of SOX3 as an XX male sex reversal gene in mice and humansEdwina Sutton, James Hughes, Stefan White, et al.
Molecular Genetics & Genomic Medicine|January 22, 2020
Analysis of variants in GATA4 and FOG2/ZFPM2 demonstrates benign contribution to 46,XY disorders of sex developmentJocelyn A van den Bergen, Gorjana Robevska, Stefanie Eggers, et al.
Plos One|March 17, 2011
Copy number variation in patients with disorders of sex development due to 46,XY gonadal dysgenesisStefan White, Thomas Ohnesorg, Amanda Notini, et al.
Journal of Medical Genetics|November 5, 2011
Disruption of a long distance regulatory region upstream of SOX9 in isolated disorders of sex developmentSabina Benko, Christopher T Gordon, Delphine Mallet, et al.
Genome Biology|December 1, 2016
Disorders of sex development: insights from targeted gene sequencing of a large international patient cohortStefanie Eggers, Simon Sadedin, Jocelyn A van den Bergen, et al.
Pageof 3

Showing results (21-30 of 30) with videos related to

Sort By:
Pageof 3
You have reached the last page of results.This site can display upto 30 results.
Biology of Reproduction|February 13, 2009
The cerebellin 4 precursor gene is a direct target of SRY and SOX9 in miceStephen T Bradford, Ryuji Hiramatsu, Madhavi P Maddugoda, et al.
Nature Reviews. Disease Primers|July 31, 2025
Differences of sex developmentSyed Faisal Ahmed, Kate Armstrong, Earl Y Cheng, et al.
Biology of Sex Differences|January 31, 2018
Identification of novel candidate genes for 46,XY disorders of sex development (DSD) using a C57BL/6J-Y <sup>POS</sup> mouse modelHayk Barseghyan, Aleisha Symon, Mariam Zadikyan, et al.
Nature Communications|July 25, 2019
Author Correction: Human sex reversal is caused by duplication or deletion of core enhancers upstream of SOX9Brittany Croft, Thomas Ohnesorg, Jacqueline Hewitt, et al.
Nature Communications|December 16, 2018
Human sex reversal is caused by duplication or deletion of core enhancers upstream of SOX9Brittany Croft, Thomas Ohnesorg, Jacqueline Hewitt, et al.
The Journal of Clinical Investigation|December 25, 2010
Identification of SOX3 as an XX male sex reversal gene in mice and humansEdwina Sutton, James Hughes, Stefan White, et al.
Molecular Genetics & Genomic Medicine|January 22, 2020
Analysis of variants in GATA4 and FOG2/ZFPM2 demonstrates benign contribution to 46,XY disorders of sex developmentJocelyn A van den Bergen, Gorjana Robevska, Stefanie Eggers, et al.
Plos One|March 17, 2011
Copy number variation in patients with disorders of sex development due to 46,XY gonadal dysgenesisStefan White, Thomas Ohnesorg, Amanda Notini, et al.
Journal of Medical Genetics|November 5, 2011
Disruption of a long distance regulatory region upstream of SOX9 in isolated disorders of sex developmentSabina Benko, Christopher T Gordon, Delphine Mallet, et al.
Genome Biology|December 1, 2016
Disorders of sex development: insights from targeted gene sequencing of a large international patient cohortStefanie Eggers, Simon Sadedin, Jocelyn A van den Bergen, et al.
Pageof 3