Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee, 247667, Uttarakhand, India.
Markey Center for Structural Biology and Purdue Institute for Inflammation, Immunology and Infectious Disease, Purdue University, West Lafayette, IN 47907, USA.
Int J Biol Macromol. 2018 Sep;116:451-462. doi: 10.1016/j.ijbiomac.2018.05.007. Epub 2018 May 4.
Chikungunya virus (CHIKV), a mosquito-borne pathogenic alphavirus is a growing public health threat. No vaccines or antiviral drug is currently available in the market for chikungunya treatment. nsP2pro, the viral cysteine protease, carries out an essential function of nonstructural polyprotein processing and forms four nonstructural proteins (nsPs) that makes the replication complex, hence constitute a promising drug target. In this study, crystal structure of nsP2pro has been determined at 2.59 Å, which reveals that the protein consists of two subdomains: an N-terminal protease subdomain and a C-terminal methyltransferase subdomain. Structural comparison of CHIKV nsP2pro with structures of other alphavirus nsP2 advances that the substrate binding cleft is present at the interface of two subdomains. Additionally, structure insights revealed that access to the active site and substrate binding cleft is blocked by a flexible interdomain loop in CHIKV nsP2pro. This loop contains His548, the catalytic residue, and Trp549 and Asn547, the residues predicted to bind substrate. Interestingly, mutation of Asn547 leads to three-fold increase in K confirming that Asn547 plays important role in substrate binding and recognition. This study presents the detailed molecular analysis and signifies the substrate specificity residues of CHIKV nsP2pro, which will be beneficial for structure-based drug design and optimization of CHIKV protease inhibitors.
基孔肯雅病毒(CHIKV)是一种通过蚊子传播的致病性甲病毒,是日益严重的公共卫生威胁。目前市场上尚无针对基孔肯雅热的疫苗或抗病毒药物。nsP2pro 是病毒半胱氨酸蛋白酶,执行非结构多蛋白加工的基本功能,并形成四个非结构蛋白(nsPs),构成复制复合物,因此构成有前途的药物靶标。在这项研究中,nsP2pro 的晶体结构已在 2.59 Å处确定,结果表明该蛋白由两个亚结构域组成:N 端蛋白酶亚结构域和 C 端甲基转移酶亚结构域。CHIKV nsP2pro 与其他甲病毒 nsP2 的结构比较表明,底物结合裂缝位于两个亚结构域的界面上。此外,结构分析表明,在 CHIKV nsP2pro 中,柔性的结构域间环阻止了活性位点和底物结合裂缝的进入。该环包含催化残基 His548 和预测结合底物的残基 Trp549 和 Asn547。有趣的是,Asn547 的突变导致 K 值增加了三倍,这证实了 Asn547 在底物结合和识别中起重要作用。这项研究提供了 CHIKV nsP2pro 的详细分子分析和底物特异性残基的信息,这将有助于基于结构的药物设计和优化 CHIKV 蛋白酶抑制剂。