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札幌病毒类胰凝乳蛋白酶样蛋白酶切割特异性的功能表征

Functional characterization of the cleavage specificity of the sapovirus chymotrypsin-like protease.

作者信息

Robel Ivonne, Gebhardt Julia, Mesters Jeroen R, Gorbalenya Alexander, Coutard Bruno, Canard Bruno, Hilgenfeld Rolf, Rohayem Jacques

机构信息

The Calicilab, Institute of Virology, Dresden University of Technology, Dresden, Germany.

出版信息

J Virol. 2008 Aug;82(16):8085-93. doi: 10.1128/JVI.00693-08. Epub 2008 Jun 11.

Abstract

Sapovirus is a positive-stranded RNA virus with a translational strategy based on processing of a polyprotein precursor by a chymotrypsin-like protease. So far, the molecular mechanisms regulating cleavage specificity of the viral protease are poorly understood. In this study, the catalytic activities and substrate specificities of the predicted forms of the viral protease, the 3C-like protease (NS6) and the 3CD-like protease-polymerase (NS6-7), were examined in vitro. The purified NS6 and NS6-7 were able to cleave synthetic peptides (15 to 17 residues) displaying the cleavage sites of the sapovirus polyprotein, both NS6 and NS6-7 proteins being active forms of the viral protease. High-performance liquid chromatography and subsequent mass spectrometry analysis of digested products showed a specific trans cleavage of peptides bearing Gln-Gly, Gln-Ala, Glu-Gly, Glu-Pro, or Glu-Lys at the scissile bond. In contrast, peptides bearing Glu-Ala or Gln-Asp at the scissile bond (NS4-NS5 and NS5-NS6, or NS6-NS7 junctions, respectively) were resistant to trans cleavage by NS6 or NS6-7 proteins, whereas cis cleavage of the Glu-Ala scissile bond of the NS5-NS6 junction was evidenced. Interestingly, the presence of a Phe at position P4 overruled the resistance to trans cleavage of the Glu-Ala junction (NS5-NS6), whereas substitutions at the P1 and P2' positions altered the cleavage efficiency. The differential cleavage observed is supported by a model of the substrate-binding site of the sapovirus protease, indicating that the P4, P1, and P2' positions in the substrate modulate the cleavage specificity and efficiency of the sapovirus chymotrypsin-like protease.

摘要

札幌病毒是一种正链RNA病毒,其翻译策略基于通过类胰凝乳蛋白酶样蛋白酶加工多蛋白前体。到目前为止,调节病毒蛋白酶切割特异性的分子机制仍知之甚少。在本研究中,对病毒蛋白酶预测形式3C样蛋白酶(NS6)和3CD样蛋白酶-聚合酶(NS6-7)的催化活性和底物特异性进行了体外检测。纯化的NS6和NS6-7能够切割展示札幌病毒多蛋白切割位点的合成肽(15至17个残基),NS6和NS6-7蛋白均为病毒蛋白酶的活性形式。对消化产物的高效液相色谱及后续质谱分析显示,在切割键处带有Gln-Gly、Gln-Ala、Glu-Gly、Glu-Pro或Glu-Lys的肽发生特异性反式切割。相反,在切割键处带有Glu-Ala或Gln-Asp的肽(分别为NS4-NS5和NS5-NS6或NS6-NS7连接处)对NS6或NS6-7蛋白的反式切割具有抗性,而NS5-NS6连接处Glu-Ala切割键的顺式切割得到了证实。有趣的是,P4位存在苯丙氨酸可消除Glu-Ala连接处(NS5-NS6)对反式切割的抗性,而P1和P2'位的取代则改变了切割效率。观察到的差异切割得到了札幌病毒蛋白酶底物结合位点模型的支持,表明底物中的P4、P1和P2'位调节札幌病毒类胰凝乳蛋白酶样蛋白酶的切割特异性和效率。

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