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A distinct concerted mechanism of structural dynamism defines activity of human serine protease HtrA3

机译:结构动力学的独特齐齐齐齐的机制定义了人丝氨酸蛋白酶HTRA3的活性

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Human HtrA3 (high-temperature requirement protease A3) is a trimeric multitasking pro-papoptotic serine protease associated with critical cellular functions and pathogenicity. Implicated in diseases including cancer and pre-eclampsia, its role as a tumor suppressor and potential therapeutic target cannot be ignored. Therefore, elucidating its mode of activation and regulatory switch becomes indispensable towards modulating its functions with desired effects for disease intervention. Using computational, biochemical and biophysical tools, we delineated the role of all domains, their combinations and the critical phenylalanine residues in regulating HtrA3 activity, oligomerization and specificity. Our findings underline the crucial roles of the N-terminus as well as the PDZ domain in oligomerization and formation of a catalytically competent enzyme, thus providing new insights into its structure-function coordination. Our study also reports an intricate ligand-induced allosteric switch, which redefines the existing hypothesis of HtrA3 activation besides opening up avenues for modulating protease activity favorably through suitable effector molecules.
机译:人HTRA3(高温需求蛋白酶A3)是与临界细胞功能和致病性相关的三聚多任务接受蛋白酶蛋白酶。涉及疾病,包括癌症和预痫,其作为肿瘤抑制剂和潜在治疗目标的作用不能忽视。因此,阐明其活化和调节开关的模式变得不可或缺于调节其具有所需疾病干预效果的功能。使用计算,生物化学和生物物理工具,我们描绘了所有结构域,它们的组合和临界苯丙氨酸残基在调节HTRA3活性,低聚和特异性方面的作用。我们的发现强调了N-末端的关键作用以及PDZ结构域在寡聚化和形成催化态酶的形成,从而为其结构功能协调提供了新的见解。我们的研究还报告了复杂的配体诱导的变构开关,除了通过合适的效应分子开放以调节蛋白酶活性,重新定义HTRA3活化的现有假设。

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