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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Probing the Role of Catalytic Triad on the Cleavage between Intramolecular Chaperone and NK Mature Peptide
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Probing the Role of Catalytic Triad on the Cleavage between Intramolecular Chaperone and NK Mature Peptide

机译:催化三合会对分子内伴侣和NK成熟肽切割的作用

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摘要

Many proteases require the assistance of an intramolecular chaperone (IMC) that is essential for protein folding. Subtilisin is produced as a precursor that requires its N-terminal propeptide to act as an IMC to chaperone the folding of its subtilisin domain. During the precursor folding, the cleavage of the peptide bond between the IMC and the subtilisin domain is the most important and rate-limiting step, which leads to the structural reorganization of the subtilisin domain and IMC’s degradation. It is speculated that the cleavage is fulfilled by the nucleophilic attack of Ser221, with the assistance of Asp32 positioning the correct tautomer of His64 and His64 accepting a proton from Ser221. In this study, our results suggested that there was a different mechanism of cleavage of the peptide bond between the IMC and the subtilisin domain in nattokinase (NK), and the role of the NK catalytic triad on the cleavage was not consistent with the classical theory. This finding suggested that members of the subtilisin family had evolved different mechanisms to acquire their own active subtilisin efficiently.
机译:许多蛋白酶需要分子内伴侣(IMC)的协助,这对蛋白质折叠至关重要。枯草杆菌素是一种前体产物,需要其N-末端前肽作为IMC参与枯草杆菌素结构域的折叠。在前体折叠过程中,IMC与枯草杆菌素结构域之间的肽键断裂是最重要的限速步骤,它导致枯草杆菌素结构域的结构重组和IMC的降解。据推测,在Asp32定位His64的正确互变异构体和His64接受来自Ser221的质子的帮助下,切割是通过Ser221的亲核攻击实现的。在这项研究中,我们的结果表明纳豆激酶(NK)中IMC和枯草杆菌素结构域之间的肽键断裂机制不同,NK催化三联体在断裂中的作用与经典理论不一致。这一发现表明,枯草杆菌素家族的成员进化出了不同的机制来有效地获取自己的活性枯草杆菌素。

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