Human Molecular Genetics · 2009 · 176 citations · 53 references
SpermatogenesisTestis DifferentiationGeneticsGenomic MechanismMolecular GeneticsReproductive BiologySexual DisordersMale DevelopmentEpigeneticsSex DifferencesHuman 22Q-linked DisordersDisorders Of Sex DevelopmentSex DevelopmentKnockout MouseGerm Cell FateSex DifferenceSexual Development (Clinical Endocrinology)Developmental BiologyGerm CellXx DsdSystems BiologyMedicineSexual Development (Developmental Psychology)
Male development in mammals is driven by an Sry‑initiated Sox9 cascade, yet the genetic causes of 46,XX disorders of sex development remain largely unidentified. Transgenic overexpression of Sox10 in XX mouse gonads induces testis formation and male physiology, activates SOX9 target genes, and recapitulates 46,XX DSD phenotypes associated with 22q13 duplication, implicating SOX10 in human sex‑development disorders.
Male development in mammals is normally initiated by the Y-linked gene Sry, which activates expression of Sox9, leading to a cascade of gene activity required for testis formation. Although defects in this genetic cascade lead to human disorders of sex development (DSD), only a dozen DSD genes have been identified, and causes of 46,XX DSD (XX maleness) other than SRY translocation are almost completely unknown. Here, we show that transgenic expression of Sox10, a close relative of Sox9, in gonads of XX mice resulted in development of testes and male physiology. The degree of sex reversal correlated with levels of Sox10 expression in different transgenic lines. Sox10 was expressed at low levels in primordial gonads of both sexes during normal mouse development, becoming male-specific during testis differentiation. SOX10 protein was able to activate transcriptional targets of SOX9, explaining at a mechanistic level its ability to direct male development. Because over-expression of SOX10 alone is able to mimic the XX DSD phenotypes associated with duplication of human chromosome 22q13, and given that human SOX10 maps to 22q13.1, our results functionally implicate SOX10 in the etiology of these DSDs.
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Consensus Statement on Management of Intersex Disorders
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Spermatogenesis, Developmental Biology, Transgenic Mouse Models +6
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