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Opening the conformation is a master switch for the dual localization and phosphatase activity of PTEN

机译:打开构象是PTEN双重定位和磷酸酶活性的主开关

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Tumor suppressor PTEN mainly functions at two subcellular locations, the plasma membrane and the nucleus. At the plasma membrane, PTEN dephosphorylates the tumorigenic second messenger PIP3, which drives cell proliferation and migration. In the nucleus, PTEN controls DNA repair and genome stability independently of PIP3. Whereas the concept that a conformational change regulates protein function through post-translational modifications has been well established in biology, it is unknown whether a conformational change simultaneously controls dual subcellular localizations of proteins. Here, we discovered that opening the conformation of PTEN is the crucial upstream event that determines its key dual localizations of this crucial tumor suppressor. We identify a critical conformational switch that regulates PTEN’s localization. Most PTEN molecules are held in the cytosol in a closed conformation by intramolecular interactions between the C-terminal tail and core region. Dephosphorylation of the tail opens the conformation and exposes the membrane-binding regulatory interface in the core region, recruiting PTEN to the membrane. Moreover, a lysine at residue 13 is also exposed and when ubiquitinated, transports PTEN to the nucleus. Thus, opening the conformation of PTEN is a key mechanism that enhances its dual localization and enzymatic activity, providing a potential therapeutic strategy in cancer treatments.
机译:抑癌基因PTEN主要作用于两个亚细胞位置,质膜和细胞核。在质膜上,PTEN使致癌的第二信使PIP3去磷酸化,后者驱动细胞增殖和迁移。在细胞核中,PTEN独立于PIP3控制DNA修复和基因组稳定性。尽管构象改变通过翻译后修饰调节蛋白质功能的概念已经在生物学中得到了很好的确立,但是构象改变是否同时控制蛋白质的双重亚细胞定位尚不清楚。在这里,我们发现打开PTEN的构象是关键的上游事件,它决定了此关键肿瘤抑制因子的关键双重定位。我们确定了一个关键的构象转换,它可以调节PTEN的本地化。大多数PTEN分子通过C末端尾部和核心区域之间的分子内相互作用以闭合构象形式保持在胞质溶胶中。尾巴的去磷酸化打开构象并暴露核心区域的膜结合调节界面,从而将PTEN募集到膜上。此外,残基13上的赖氨酸也暴露在外,泛素化后将PTEN转运至细胞核。因此,打开PTEN的构象是增强其双重定位和酶活性的关键机制,为癌症治疗提供了潜在的治疗策略。

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