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睾丸决定因子SRY和SOX9的分子作用。

The molecular action of testis-determining factors SRY and SOX9.

作者信息

Harley Vincent R

机构信息

Prince Henry's Institute of Medical Research, Monash Medical Centre, Melbourne, VIC, Australia.

出版信息

Novartis Found Symp. 2002;244:57-66; discussion 66-7, 79-85, 253-7.

Abstract

Despite 10 years of work since the discovery of SRY, little is known about its biochemical function. The HMG domain, a DNA-binding and DNA-bending motif, plays a central role, being the only region conserved between species and the site of almost all clinical mutations causing XY gonadal dysgenesis. By contrast, SOX9 harbours a number of highly conserved regions, including two domains required for maximal transactivation. The beat shock protein HSP70 recognizes a specific region of SOX9 hitherto of unknown function which may facilitate the assembly of multi-protein complexes at promoter enhancer regions. The SRY and SOX9 HMG domains carry two nuclear localization signals (NLSs), one at each end which function independently and by distinct mechanisms. The N-terminal NLS is bound by calmodulin while the C-terminal NLS is bound by importin beta. Four XY gonadal dysgenesis patients with mutations in SRY NLS regions showed reduced nuclear import accompanied in some cases by reduced importin beta recognition. A campomelic dysplasia patient with SOX9 mutation outside the NLS regions also showed defective SOX9 nuclear import implying that nuclear import defects could be a common explanation for SRY and SOX9 HMG domain mutations.

摘要

尽管自SRY发现以来已开展了10年的研究工作,但对其生化功能仍知之甚少。HMG结构域是一种DNA结合和DNA弯曲基序,发挥着核心作用,它是物种间唯一保守的区域,也是几乎所有导致XY性发育不全的临床突变位点。相比之下,SOX9含有多个高度保守的区域,包括实现最大反式激活所需的两个结构域。热休克蛋白HSP70识别SOX9的一个功能未知的特定区域,该区域可能有助于在启动子增强子区域组装多蛋白复合物。SRY和SOX9的HMG结构域带有两个核定位信号(NLS),分别位于两端,它们通过不同机制独立发挥作用。N端NLS由钙调蛋白结合,而C端NLS由输入蛋白β结合。4名SRY NLS区域发生突变的XY性发育不全患者显示核输入减少,在某些情况下还伴有输入蛋白β识别减少。一名NLS区域外发生SOX9突变的弯肢侏儒症患者也显示SOX9核输入缺陷,这意味着核输入缺陷可能是SRY和SOX9 HMG结构域突变的一个常见解释。

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