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Studies of the molecular mechanism of caspase-8 activation by solution NMR.

机译:通过溶液NMR研究caspase-8活化的分子机理。

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Caspases are the key players of apoptosis and inflammation. They are present in the cells as latent precursors, procaspases, and are activated upon an apoptotic or inflammatory stimulus. The activation mechanism of caspases has been studied extensively by biochemical and biophysical methods. Additional structural information on active caspases with a variety of different inhibitors bound at the active site is available. In this study, we investigated the cleavage mechanism of caspase-8 from its zymogen to active caspase-8 by solution NMR and by biochemical methods. The intermolecular cleavage reaction using the catalytically inactive C285A procaspase-8 mutant is triggered by adding caspase-8 and followed by (15)N,(1)H-NMR spectroscopy. The spectrum that initially resembles the one of procaspase-8 gradually over time changes to that of caspase-8, and disappearing peaks display exponential decaying intensities. Removal of either one of the cleavage recognition motifs in the linker, or phosphorylation at Tyr380, is shown to reduce the rate of the cleavage reaction. The data suggest that dimerization repositions the linker to become suitable for intermolecular processing by the associated protomer. Furthermore, analysis of inhibitor binding to the active caspase-8 reveals an induced-fit mechanism for substrate binding.
机译:胱天蛋白酶是细胞凋亡和炎症的关键因素。它们以潜在的前体,蛋白酶和蛋白酶形式存在于细胞中,并在凋亡或炎性刺激后被激活。半胱天冬酶的激活机制已通过生化和生物物理方法进行了广泛研究。关于在活性位点结合有多种不同抑制剂的活性胱天蛋白酶的其他结构信息可供参考。在这项研究中,我们通过溶液NMR和生化方法研究了caspase-8从其酶原到活性caspase-8的裂解机理。通过添加caspase-8并随后进行(15)N,(1)H-NMR光谱触发使用催化失活的C285A procaspase-8突变体的分子间裂解反应。随着时间的流逝,最初类似于procaspase-8的光谱逐渐变为caspase-8的光谱,消失的峰显示出指数衰减强度。显示去除接头中的切割识别基序之一,或在Tyr380处的磷酸化降低了切割反应的速率。数据表明,二聚化使接头重新定位,以使其适合于由相关的前体进行的分子间加工。此外,对抑制剂与活性caspase-8结合的分析揭示了底物结合的诱导拟合机制。

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