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Elastase-mediated Activation of the Severe Acute Respiratory Syndrome Coronavirus Spike Protein at Discrete Sites within the S2 Domain

机译:弹性蛋白酶介导的严重急性呼吸系统综合症冠状病毒穗蛋白在S2域内离散点的激活。

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摘要

Proteolytic priming is a common method of controlling the activation of membrane fusion mediated by viral glycoproteins. The severe acute respiratory syndrome coronavirus spike protein (SARS-CoV S) can be primed by a variety of host cell proteases, with proteolytic cleavage occurring both as the S1/S2 boundary and adjacent to a fusion peptide in the S2 domain. Here, we studied the priming of SARS-CoV S by elastase and show an important role for residue Thr795 in the S2 domain. A series of alanine mutants were generated in the vicinity of the S2 cleavage site, with the goal of examining elastase-mediated cleavage within S2. Both proteolytic cleavage and fusion activation were modulated by altering the cleavage site position. We propose a novel mechanism whereby SARS-CoV fusion protein function can be controlled by spatial regulation of the proteolytic priming site, with important implications for viral pathogenesis.
机译:蛋白水解引发是控制由病毒糖蛋白介导的膜融合的激活的常用方法。严重的急性呼吸系统综合症冠状病毒刺突蛋白(SARS-CoV S)可以由多种宿主细胞蛋白酶引发,蛋白水解切割既发生在S1 / S2边界,也发生在S2结构域中的融合肽附近。在这里,我们研究了由弹性蛋白酶引发的SARS-CoV S的启动,并显示了S2域中残基Thr 795 的重要作用。在S2裂解位点附近产生了一系列丙氨酸突变体,目的是检查弹性蛋白酶介导的S2内裂解。蛋白水解切割和融合激活都通过改变切割位点位置来调节。我们提出了一种新的机制,其中SARS-CoV融合蛋白的功能可以通过蛋白水解启动位点的空间调节来控制,这对病毒的发病机理具有重要意义。

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