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Structural and Mutagenic Analysis of Foot-and-Mouth Disease Virus 3C Protease Reveals the Role of the β-Ribbon in Proteolysis

机译:口蹄疫病毒3C蛋白酶的结构和诱变分析揭示了β-碳带在蛋白水解中的作用

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摘要

The 3C protease (3Cpro) from foot-and-mouth disease virus (FMDV), the causative agent of a widespread and economically devastating disease of domestic livestock, is a potential target for antiviral drug design. We have determined the structure of a new crystal form of FMDV 3Cpro, a chymotrypsin-like cysteine protease, which reveals features that are important for catalytic activity. In particular, we show that a surface loop which was disordered in previous structures adopts a β-ribbon structure that is conformationally similar to equivalent regions on other picornaviral 3C proteases and some serine proteases. This β-ribbon folds over the peptide binding cleft and clearly contributes to substrate recognition. Replacement of Cys142 at the tip of the β-ribbon with different amino acids has a significant impact on enzyme activity and shows that higher activity is obtained with more hydrophobic side chains. Comparison of the structure of FMDV 3Cpro with homologous enzyme-peptide complexes suggests that this correlation arises because the side chain of Cys142 contacts the hydrophobic portions of the P2 and P4 residues in the peptide substrate. Collectively, these findings provide compelling evidence for the role of the β-ribbon in catalytic activity and provide valuable insights for the design of FMDV 3Cpro inhibitors.
机译:来自口蹄疫病毒(FMDV)的3C蛋白酶(3C pro )是一种广泛传播且在经济上具有破坏性的家畜疾病的病原体,是抗病毒药物设计的潜在目标。我们确定了一种新的FMDV 3C pro 晶体形式的结构,这是一种胰凝乳蛋白酶样半胱氨酸蛋白酶,它揭示了对催化活性重要的特征。特别地,我们显示出在先前结构中无序的表面环采用β-带状结构,该结构在构象上类似于其他picornaviral 3C蛋白酶和某些丝氨酸蛋白酶上的等效区域。此β色带在肽结合裂隙上折叠,并明显有助于底物识别。用不同的氨基酸替换β-碳带末端的Cys142对酶的活性有重要影响,并显示通过更多的疏水性侧链可获得更高的活性。 FMDV 3C pro 与同源酶-肽复合物的结构比较表明,这种相关性是由于Cys142的侧链接触肽底物中P2和P4残基的疏水部分而引起的。这些发现为β-碳带在催化活性中的作用提供了令人信服的证据,并为FMDV 3C pro 抑制剂的设计提供了有价值的见解。

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