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严重急性呼吸综合征(SARS)冠状病毒 3C 样蛋白酶的成熟机制。

Maturation mechanism of severe acute respiratory syndrome (SARS) coronavirus 3C-like proteinase.

机构信息

Beijing National Laboratory for Molecular Science, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, China.

出版信息

J Biol Chem. 2010 Sep 3;285(36):28134-40. doi: 10.1074/jbc.M109.095851. Epub 2010 May 20.

Abstract

The 3C-like proteinase (3CL(pro)) of the severe acute respiratory syndrome (SARS) coronavirus plays a vital role in virus maturation and is proposed to be a key target for drug design against SARS. Various in vitro studies revealed that only the dimer of the matured 3CL(pro) is active. However, as the internally encoded 3CL(pro) gets matured from the replicase polyprotein by autolytic cleavage at both the N-terminal and the C-terminal flanking sites, it is unclear whether the polyprotein also needs to dimerize first for its autocleavage reaction. We constructed a large protein containing the cyan fluorescent protein (C), the N-terminal flanking substrate peptide of SARS 3CL(pro) (XX), SARS 3CL(pro) (3CLP), and the yellow fluorescent protein (Y) to study the autoprocessing of 3CL(pro) using fluorescence resonance energy transfer. In contrast to the matured 3CL(pro), the polyprotein, as well as the one-step digested product, 3CLP-Y-His, were shown to be monomeric in gel filtration and analytic ultracentrifuge analysis. However, dimers can still be induced and detected when incubating these large proteins with a substrate analog compound in both chemical cross-linking experiments and analytic ultracentrifuge analysis. We also measured enzyme activity under different enzyme concentrations and found a clear tendency of substrate-induced dimer formation. Based on these discoveries, we conclude that substrate-induced dimerization is essential for the activity of SARS-3CL(pro) in the polyprotein, and a modified model for the 3CL(pro) maturation process was proposed. As many viral proteases undergo a similar maturation process, this model might be generally applicable.

摘要

严重急性呼吸综合征(SARS)冠状病毒的 3C 样蛋白酶(3CL(pro))在病毒成熟中起着至关重要的作用,被提议作为针对 SARS 的药物设计的关键靶标。各种体外研究表明,只有成熟的 3CL(pro)的二聚体是有活性的。然而,由于内部编码的 3CL(pro)通过在 N 端和 C 端侧翼位点的自裂解从复制酶多蛋白成熟,尚不清楚多蛋白是否也需要先二聚化才能进行自身裂解反应。我们构建了一个包含青色荧光蛋白(C)、SARS 3CL(pro)的 N 端侧翼底物肽(XX)、SARS 3CL(pro)(3CLP)和黄色荧光蛋白(Y)的大蛋白,使用荧光共振能量转移研究 3CL(pro)的自加工。与成熟的 3CL(pro)相比,多蛋白以及一步消化产物 3CLP-Y-His 在凝胶过滤和分析超速离心分析中均显示为单体。然而,当在用化学交联实验和分析超速离心分析中用底物类似物化合物孵育这些大蛋白时,仍然可以诱导和检测到二聚体。我们还在不同的酶浓度下测量了酶活性,并发现底物诱导二聚体形成的明显趋势。基于这些发现,我们得出结论,底物诱导的二聚化对于多蛋白中 SARS-3CL(pro)的活性是必不可少的,并且提出了一种 3CL(pro)成熟过程的改进模型。由于许多病毒蛋白酶经历类似的成熟过程,因此该模型可能具有普遍适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bced/2934678/7fb3969320dc/zbc0331025020001.jpg

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