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甲病毒衣壳蛋白酶活性形式的反式蛋白酶活性及结构见解

trans-Protease activity and structural insights into the active form of the alphavirus capsid protease.

作者信息

Aggarwal Megha, Dhindwal Sonali, Kumar Pravindra, Kuhn Richard J, Tomar Shailly

机构信息

Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee, India.

Department of Biological Sciences and Bindley Bioscience Center, Purdue University, West Lafayette, Indiana, USA.

出版信息

J Virol. 2014 Nov;88(21):12242-53. doi: 10.1128/JVI.01692-14. Epub 2014 Aug 6.

Abstract

The alphavirus capsid protein (CP) is a serine protease that possesses cis-proteolytic activity essential for its release from the nascent structural polyprotein. The released CP further participates in viral genome encapsidation and nucleocapsid core formation, followed by its attachment to glycoproteins and virus budding. Thus, protease activity of the alphavirus capsid is a potential antialphaviral target to arrest capsid release, maturation, and structural polyprotein processing. However, the discovery of capsid protease inhibitors has been hampered due to the lack of a suitable screening assay and of the crystal structure in its active form. Here, we report the development of a trans-proteolytic activity assay for Aura virus capsid protease (AVCP) based on fluorescence resonance energy transfer (FRET) for screening protease inhibitors. Kinetic parameters using fluorogenic peptide substrates were estimated, and the K(m) value was found to be 2.63 ± 0.62 μM while the k(cat)/K(m) value was 4.97 × 10(4) M(-1) min(-1). Also, the crystal structure of the trans-active form of AVCP has been determined to 1.81-Å resolution. Structural comparisons of the active form with the crystal structures of available substrate-bound mutant and inactive blocked forms of the capsid protease identify conformational changes in the active site, the oxyanion hole, and the substrate specificity pocket residues, which could be critical for rational drug design. IMPORTANCE The alphavirus capsid protease is an attractive antiviral therapeutic target. In this study, we have described the formerly unappreciated trans-proteolytic activity of the enzyme and for the first time have developed a FRET-based protease assay for screening capsid protease inhibitors. Our structural studies unveil the structural features of the trans-active protease, which has been previously proposed to exist in the natively unfolded form (M. Morillas, H. Eberl, F. H. Allain, R. Glockshuber, and E. Kuennemann, J. Mol. Biol. 376:721-735, 2008, doi:http://dx.doi.org/10.1016/j.jmb.2007.11.055). The different enzymatic forms have been structurally compared to reveal conformational variations in the active and substrate binding sites. The flexible active-site residue Ser218, the disordered C-terminal residues after His261, and the presence of a water molecule in the oxyanion hole of AVCPΔ2 (AVCP with a deletion of the last two residues at the C terminus) reveal the effect of the C-terminal Trp267 deletion on enzyme structure. New structural data reported in this study along with the fluorogenic assay will be useful in substrate specificity characterization, high-throughput protease inhibitor screening, and structure-based development of antiviral drugs.

摘要

甲病毒衣壳蛋白(CP)是一种丝氨酸蛋白酶,具有顺式蛋白水解活性,这对其从新生的结构多蛋白中释放至关重要。释放出的CP进一步参与病毒基因组的衣壳化和核衣壳核心的形成,随后附着于糖蛋白并促使病毒出芽。因此,甲病毒衣壳的蛋白酶活性是一个潜在的抗甲病毒靶点,可阻止衣壳释放、成熟以及结构多蛋白的加工。然而,由于缺乏合适的筛选试验以及其活性形式的晶体结构,衣壳蛋白酶抑制剂的发现受到了阻碍。在此,我们报告基于荧光共振能量转移(FRET)开发了一种用于奥罗病毒衣壳蛋白酶(AVCP)的反式蛋白水解活性测定法,用于筛选蛋白酶抑制剂。使用荧光肽底物估算了动力学参数,发现K(m)值为2.63±0.62μM,而k(cat)/K(m)值为4.97×10(4) M(-1) min(-1)。此外,已确定AVCP反式活性形式的晶体结构分辨率为1.81Å。将活性形式与衣壳蛋白酶的可用底物结合突变体和无活性封闭形式的晶体结构进行结构比较,可确定活性位点、氧阴离子洞和底物特异性口袋残基的构象变化,这可能对合理的药物设计至关重要。重要性甲病毒衣壳蛋白酶是一个有吸引力的抗病毒治疗靶点。在本研究中,我们描述了该酶以前未被认识的反式蛋白水解活性,并首次开发了一种基于FRET的蛋白酶测定法来筛选衣壳蛋白酶抑制剂。我们的结构研究揭示了反式活性蛋白酶的结构特征,此前曾提出该蛋白酶以天然未折叠形式存在(M. Morillas、H. Eberl、F. H. Allain、R. Glockshuber和E. Kuennemann,《分子生物学杂志》376:721 - 735,2008,doi:http://dx.doi.org/10.1016/j.jmb.2007.11.055)。已对不同的酶形式进行结构比较,以揭示活性和底物结合位点的构象变化。灵活的活性位点残基Ser218、His261之后无序的C末端残基以及AVCPΔ2(C末端最后两个残基缺失的AVCP)氧阴离子洞中的一个水分子揭示了C末端Trp267缺失对酶结构的影响。本研究报告的新结构数据以及荧光测定法将有助于底物特异性表征、高通量蛋白酶抑制剂筛选以及基于结构的抗病毒药物开发。

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