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人诺如病毒 ProPol 前体聚合酶结构域的活性和冷冻电镜结构。

Activity and cryo-EM structure of the polymerase domain of the human norovirus ProPol precursor.

机构信息

Department of Microbiology and Immunology, School of Biomedical Sciences, University of Otago, Dunedin, New Zealand.

Department of Biochemistry, School of Biomedical Sciences, University of Otago, Dunedin, New Zealand.

出版信息

J Virol. 2024 Nov 19;98(11):e0119324. doi: 10.1128/jvi.01193-24. Epub 2024 Oct 30.

Abstract

Human norovirus (HuNV) is a leading cause of acute gastroenteritis worldwide with most infections caused by genogroup I and genogroup II (GII) viruses. Replication of HuNV generates both precursor and mature proteins during processing of the viral polyprotein that are essential to the viral lifecycle. One such precursor is protease-polymerase (ProPol), a multi-functional enzyme comprised of the norovirus protease and polymerase proteins. This work investigated HuNV ProPol by determining the polymerase activity, protein structure, and antiviral inhibition profile. The GII ProPol enzymatic efficiencies (/) for RNA templates and ribonucleotides were equal or superior to those of mature GII Pol on all templates measured. Furthermore, GII ProPol was the only enzyme form active on a poly(A) template. The first structure of the polymerase domain of HuNV ProPol in the unliganded state was determined by cryo-electron microscopy at a resolution of 2.6 Å. The active site and overall architecture of ProPol are similar to those of mature Pol. In addition, both galidesivir triphosphate and PPNDS inhibited polymerase activity of GII ProPol, with respective half-maximal inhibitory concentration (IC) values of 247.5 µM and 3.8 µM. In both instances, the IC obtained with ProPol was greater than that of mature Pol, indicating that ProPol can exhibit different responses to antivirals. This study provides evidence that HuNV ProPol possesses overlapping and unique enzyme properties compared with mature Pol and will aid our understanding of the replication cycle of the virus.IMPORTANCEDespite human norovirus (HuNV) being a leading cause of acute gastroenteritis, the molecular mechanisms surrounding replication are not well understood. Reports have shown that HuNV replication generates precursor proteins from the viral polyprotein, one of which is the protease-polymerase (ProPol). This precursor is important for viral replication; however, the polymerase activity and structural differences between the precursor and mature forms of the polymerase remain to be determined. We show that substrate specificity and polymerase activity of ProPol overlap with, but is distinct from, the mature polymerase. We employ cryo-electron microscopy to resolve the first structure of the polymerase domain of ProPol. This shows a polymerase architecture similar to mature Pol, indicating that the interaction of the precursor with substrates likely defines its activity. We also show that ProPol responds differently to antivirals than mature polymerase. Altogether, these findings enhance our understanding of the function of the important norovirus ProPol precursor.

摘要

人类诺如病毒(HuNV)是全球急性肠胃炎的主要病因,大多数感染是由基因 I 组和基因 II 组(GII)病毒引起的。HuNV 的复制在病毒多蛋白加工过程中产生前体和成熟蛋白,这些蛋白对病毒的生命周期至关重要。其中一种前体是蛋白酶-聚合酶(ProPol),它是一种由诺如病毒蛋白酶和聚合酶蛋白组成的多功能酶。本研究通过确定聚合酶活性、蛋白结构和抗病毒抑制谱来研究 HuNV ProPol。在所测量的所有模板上,GII ProPol 的酶效率(/)对于 RNA 模板和核糖核苷酸与成熟 GII Pol 相等或更高。此外,GII ProPol 是唯一在 poly(A)模板上具有活性的酶形式。通过 cryo-EM 在 2.6 Å 的分辨率下首次确定了 HuNV ProPol 的聚合酶结构域的无配体状态。ProPol 的活性位点和整体结构与成熟 Pol 相似。此外,Galidesivir 三磷酸和 PPNDS 均抑制 GII ProPol 的聚合酶活性,其半最大抑制浓度(IC)值分别为 247.5 µM 和 3.8 µM。在这两种情况下,ProPol 的 IC 值均大于成熟 Pol 的 IC 值,表明 ProPol 对抗病毒药物可能有不同的反应。这项研究提供了证据,表明 HuNV ProPol 与成熟 Pol 相比具有重叠和独特的酶特性,并将有助于我们理解病毒的复制周期。

尽管人类诺如病毒(HuNV)是急性肠胃炎的主要病因,但围绕其复制的分子机制仍不清楚。有报道称,HuNV 的复制会从病毒多蛋白中产生前体蛋白,其中之一是蛋白酶-聚合酶(ProPol)。这种前体对病毒的复制很重要,但是前体和聚合酶成熟形式之间的聚合酶活性和结构差异仍有待确定。我们表明,ProPol 的底物特异性和聚合酶活性与成熟聚合酶重叠,但又有所不同。我们采用 cryo-EM 解析 ProPol 的聚合酶结构域的首个结构。这表明聚合酶的结构与成熟 Pol 相似,表明前体与底物的相互作用可能决定了其活性。我们还表明,ProPol 对抗病毒药物的反应与成熟聚合酶不同。总的来说,这些发现增强了我们对重要的诺如病毒 ProPol 前体功能的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f94/11575396/5cb00e768bfa/jvi.01193-24.f001.jpg

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