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X-ray Structure and Enzymatic Activity Profile of a Core Papain-like Protease of MERS Coronavirus with utility for structure-based drug design

机译:MERS冠状病毒的核心木蛋白酶样核心蛋白酶的X射线结构和酶活性剖面,具有基于结构的药物设计

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Ubiquitin-like domain 2 (Ubl2) is immediately adjacent to the N-terminus of the papain-like protease (PLpro) domain in coronavirus polyproteins, and it may play a critical role in protease regulation and stability as well as in viral infection. However, our recent cellular studies reveal that removing the Ubl2 domain from MERS PLpro has no effect on its ability to process the viral polyprotein or act as an interferon antagonist, which involves deubiquitinating and deISGylating cellular proteins. Here, we test the hypothesis that the Ubl2 domain is not required for the catalytic function of MERS PLpro in vitro. The X-ray structure of MERS PLpro-?Ubl2 was determined to 1.9?? and compared to PLpro containing the N-terminal Ubl2 domain. While the structures were nearly identical, the PLpro-?Ubl2 enzyme revealed the intact structure of the substrate-binding loop. Moreover, PLpro-?Ubl2 catalysis against different substrates and a purported inhibitor revealed no differences in catalytic efficiency, substrate specificity, and inhibition. Further, no changes in thermal stability were observed between enzymes. We conclude that the catalytic core of MERS PLpro, i.e. without the Ubl2 domain, is sufficient for catalysis and stability in vitro with utility to evaluate potential inhibitors as a platform for structure-based drug design.
机译:泛素样结构域2(UBL2)立即与冠状病毒聚丙烯的木蛋白酶样蛋白酶(PLPRO)结构域的N-末端相邻,并且它可能在蛋白酶调节和稳定性以及病毒感染中起重要作用。然而,我们最近的细胞研究表明,从MERSPLPRO中去除UBL2结构域对其处理病毒多蛋白或作为干扰素拮抗剂的能力没有影响,这涉及脱硫和解说的细胞蛋白。在这里,我们测试MERSPLPRO在体外催化功能不需要UBL2结构域的假设。 MERS PLPRO-αUBL2的X射线结构确定为1.9 ??并与含有N-末端UBL2结构域的PLPRO相比。虽然结构几乎相同,但是PLPRO-αUBL2酶揭示了基材结合环的完整结构。此外,PLPRO-α催化催化抑制剂的催化效率,底物特异性和抑制作用的催化催化。此外,在酶之间观察到热稳定性的变化。我们得出结论,MERSPLPRO的催化核,即没有UBL2结构域,足以在体外用实用性进行催化和稳定性,以评估潜在的抑制剂作为基于结构的药物设计的平台。

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