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Structure-based design and functional studies of novel noroviral 3C protease chimaeras offer insights into substrate specificity

机译:新型诺如病毒3C蛋白酶嵌合体的基于结构的设计和功能研究为底物特异性提供了见识

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摘要

The norovirus NS6 protease is a key target for anti-viral drug development. Noroviruses encode a 2200 amino acid polyprotein which is cleaved by this critical protease at five defined boundary substrates into six mature non-structural (NS) proteins. Studies of the human norovirus (HNV) NS6 protease, in the context of a full ORF1 polyprotein, have been severely hampered because HNVs are not culturable. Thus, investigations into the HNV NS6 protease have been largely restricted to in vitro assays using Escherichia coli-expressed, purified enzyme. The NS6 protease is formed of two distinct domains joined by a linking loop. Structural data suggest that domain 2 of the protease possesses substantial substrate binding pockets which form the bulk of the interactions with the NS boundaries and largely dictate boundary specificity and cleavage. We have constructed chimaeric murine norovirus (MNV) genomes carrying individual domains from the HNV protease and demonstrated by cell transfection that chimaeric HNV proteases have functional activity in the context of the full-length ORF1 polyprotein. Although domain 2 primarily confers boundary specificity, our data suggest that an inter-domain interaction exists within HNV NS6 protease which influences cleavage of specific substrates. The present study also shows that chimaeric MNVs provide improved models for studying HNV protein function in the context of a full ORF1 polyprotein.
机译:诺如病毒NS6蛋白酶是抗病毒药物开发的关键目标。诺如病毒编码2200个氨基酸的多蛋白,该蛋白被该关键蛋白酶在五个定义的边界底物处切割为六个成熟的非结构(NS)蛋白。由于无法培养HNV,在完整的ORF1多蛋白的情况下,人类诺如病毒(HNV)NS6蛋白酶的研究受到严重阻碍。因此,对HNV NS6蛋白酶的研究主要限于使用大肠杆菌表达的纯化酶进行的体外测定。 NS6蛋白酶由通过连接环连接的两个不同的结构域形成。结构数据表明,蛋白酶的结构域2具有大量的底物结合袋,形成了与NS边界的大部分相互作用,并在很大程度上决定了边界的特异性和裂解。我们已经构建了携带HNV蛋白酶单个结构域的嵌合鼠诺如病毒(MNV)基因组,并通过细胞转染证明了嵌合HNV蛋白酶在全长ORF1多蛋白的背景下具有功能活性。尽管结构域2主要赋予边界特异性,但我们的数据表明HNV NS6蛋白酶内部存在域间相互作用,这会影响特定底物的裂解。本研究还表明,嵌合的MNV在完整的ORF1多蛋白的背景下为研究HNV蛋白功能提供了改进的模型。

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