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Mechanisms of disease: Transcription factors in sex determination--relevance to human disorders of sex development.

机译:疾病机制:性别决定中的转录因子-与人类性发育障碍有关。

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Sex determination is the series of molecular events that direct the undifferentiated bipotential gonad to become either a testis or an ovary. In humans, disruption of this process results in intersexuality, also referred to as disorders of sex development (DSD). Despite the discovery of the sex-determining gene SRY (sex-determining region Y) 15 years ago, the molecular mechanisms of sex determination remain poorly understood. Analysis of clinically relevant mutations of sex-determining genes in individuals with DSD has provided considerable insight into the function of these genes. The majority of disorders of sex determination with known causes are explained by mutations in one of three transcription factors at the core of the sex-determining pathway: SRY, SOX9 (SRY-box 9) and NR5A1 (nuclear receptor subfamily 5, group A, member 1). These mutations either affect the level of protein available at its nuclear site of action (via changes in regulatory sequences, deletions, non-sense mutations or mutations in nuclear localization sequences), or alter the structure of the protein (via modifications of binding or bending activity, or of interactions with other proteins). Deciphering the functional diversity of the mutations affecting the sex-determining pathway has immediate clinical impact on the diagnosis, outcome studies and classification of patients with DSD.
机译:性别决定是一系列分子事件,它们指示未分化的双能性腺成为睾丸或卵巢。在人类中,破坏此过程会导致两性,也称为性发育障碍(DSD)。尽管在15年前发现了性别决定基因SRY(性别决定区域Y),但对性别决定的分子机制仍知之甚少。对患有DSD的个体中决定性别的基因的临床相关突变的分析,为这些基因的功能提供了相当多的见识。大多数由已知原因引起的性别决定性疾病都可以通过性别决定途径核心的三个转录因子之一的突变来解释:SRY,SOX9(SRY-box 9)和NR5A1(核受体亚家族5,A组,成员1)。这些突变或者影响蛋白质在其核作用位点的水平(通过调节序列的变化,缺失,无义突变或核定位序列的突变),或者改变蛋白质的结构(通过结合或弯曲的改变)活性或与其他蛋白质的相互作用)。破译影响性别决定途径的突变的功能多样性对DSD患者的诊断,结果研究和分类具有直接的临床影响。

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