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Identification of SOX3 as an XX male sex reversal gene in mice and humans

机译:在小鼠和人类中将SOX3鉴定为XX性别逆转基因

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摘要

Sex in mammals is genetically determined and is defined at the cellular level by sex chromosome complement (XY males and XX females). The Y chromosome–linked gene sex-determining region Y (SRY) is believed to be the master initiator of male sex determination in almost all eutherian and metatherian mammals, functioning to upregulate expression of its direct target gene Sry-related HMG box–containing gene 9 (SOX9). Data suggest that SRY evolved from SOX3, although there is no direct functional evidence to support this hypothesis. Indeed, loss-of-function mutations in SOX3 do not affect sex determination in mice or humans. To further investigate Sox3 function in vivo, we generated transgenic mice overexpressing Sox3. Here, we report that in one of these transgenic lines, Sox3 was ectopically expressed in the bipotential gonad and that this led to frequent complete XX male sex reversal. Further analysis indicated that Sox3 induced testis differentiation in this particular line of mice by upregulating expression of Sox9 via a similar mechanism to Sry. Importantly, we also identified genomic rearrangements within the SOX3 regulatory region in three patients with XX male sex reversal. Together, these data suggest that SOX3 and SRY are functionally interchangeable in sex determination and support the notion that SRY evolved from SOX3 via a regulatory mutation that led to its de novo expression in the early gonad.
机译:哺乳动物的性别是由遗传决定的,并在性别上由性别染色体的互补序列定义(男性为XY,女性为XX)。 Y染色体连锁的基因决定性别的区域Y(SRY)被认为是几乎所有以太坊和默瑟德哺乳动物的男性性别决定的主要发起者,其功能是上调其直接靶基因Sry相关的含HMG盒基因的表达9(SOX9)。数据表明,SRY是从SOX3进化而来的,尽管没有直接的功能证据支持这一假设。实际上,SOX3中的功能丧失突变不会影响小鼠或人类的性别决定。为了进一步研究Sox3在体内的功能,我们生成了过表达Sox3的转基因小鼠。在这里,我们报告说,在这些转基因品系之一中,Sox3在双能性腺中异位表达,并且这导致了频繁的完全XX男性逆转。进一步的分析表明,Sox3通过与Sry类似的机制上调Sox9的表达,从而在此特定小鼠系中诱导睾丸分化。重要的是,我们还确定了三名XX男性逆转患者的SOX3调节区内的基因组重排。总之,这些数据表明SOX3和SRY在性别确定方面在功能上是可互换的,并支持SRY通过调控突变从SOX3进化而来的观点,该突变导致其在性腺中从头表达。

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