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A gene regulatory network for Müllerian duct regression

机译:缪勒氏管退化的基因调控网络

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摘要

Mammalian embryos initially develop progenitor tissues for both male and female reproductive tract organs, known as the Wolffian ducts and the Müllerian ducts, respectively. Ultimately, each individual develops a single set of male or female reproductive tract organs. Therefore, an essential step for sex differentiation is the regression of one duct and growth and differentiation of the other duct. In males, this requires Müllerian duct regression and Wolffian duct growth and differentiation. Müllerian duct regression is induced by the expression of Amh, encoding anti-Müllerian hormone, from the fetal testes. Subsequently, receptor-mediated signal transduction in mesenchymal cells surrounding the Müllerian duct epithelium leads to duct elimination. The genes that induce Amh transcription and the downstream signaling that results from Amh activity form a pathway. However, the molecular details of this pathway are currently unknown. A set of essential genes for AMH pathway function has been identified. More recently, transcriptome analysis of male and female Müllerian duct mesenchyme at an initial stage of regression has identified new genes that may mediate elimination of the Müllerian system. The evidence taken together can be used to generate an initial gene regulatory network describing the Amh pathway for Müllerian duct regression. An Amh gene regulatory network will be a useful tool to study Müllerian duct regression, sex differentiation, and its relationship to environmental influences.
机译:哺乳动物的胚胎最初会发育成雄性和雌性生殖道器官的祖先组织,分别被称为沃尔夫管和穆勒管。最终,每个人​​都会发展出一套男性或女性生殖道器官。因此,性别分化的重要步骤是一根导管的退化以及另一根导管的生长和分化。在男性中,这需要穆勒氏管退化以及沃尔夫氏管生长和分化。胎儿睾丸中编码抗苗勒管激素的Amh的表达诱导苗勒管退化。随后,Müllerian导管上皮周围的间充质细胞中受体介导的信号转导导致导管消除。诱导Amh转录的基因和由Amh活性产生的下游信号传导形成一条途径。但是,目前尚不清楚该途径的分子细节。已经鉴定出一组用于AMH途径功能的必需基因。最近,在退化的初始阶段,对男性和女性穆勒氏管间质进行转录组分析,发现了可能介导消除穆勒氏系统的新基因。综合起来的证据可用于生成描述穆勒管道退化的Amh途径的初始基因调控网络。 Amh基因调控网络将是研究穆勒管道退化,性别分化及其与环境影响之间关系的有用工具。

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