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西尼罗河病毒NS3解旋酶中基序V-VI偶联对RNA亲和力的变构调节

Allosteric Regulation of RNA Affinity by Motif V-VI Coupling in West Nile Virus NS3 Helicase.

作者信息

Roy Priti, McCullagh Martin

机构信息

Department of Chemistry, Oklahoma State University, Stillwater, OK, 74074, USA.

出版信息

bioRxiv. 2025 Jul 4:2025.07.04.663198. doi: 10.1101/2025.07.04.663198.

Abstract

The rise of flaviviral diseases, including West Nile virus (WNV), presents a growing threat to global public health and underscores the urgent need for new therapeutic strategies. The non-structural protein 3 helicase (NS3h) of the genus, including WNV, is essential for viral replication and a promising antiviral target. Previously [Roy ., , 52, 13, 2024, 7447-7464], we showed that the motif VI loop (VIL) in WNV NS3h functions as a nucleotide valve, regulating ADP affinity during hydrolysis. In this study, we uncover an ATP-dependent coupling between nucleotide affinity at motif VIL and RNA affinity at motifs IVa and V, suggesting a coordinated mechanism of ssRNA translocation. Using microsecond-scale all-atom molecular dynamics simulations of hydrolysis-cycle intermediates, we find that key VIL residues (R461, R464) correlate strongly with RNA phosphate affinity of motif V. Structural analyses reveal an ATP-sensitive interaction between E413 (motif V) and R461 (motif VIL) that modulates the conformation of the motif V 3-helix, thereby influencing RNA binding. This dynamic interaction is lost in catalytically deficient VIL mutants, which have been experimentally shown to impair hydrolysis and attenuate viral replication. These findings provide mechanistic insights into NS3h function and identify new opportunities for structure-based antiviral design.

摘要

包括西尼罗河病毒(WNV)在内的黄病毒疾病的增加,对全球公共卫生构成了日益严重的威胁,并凸显了对新治疗策略的迫切需求。包括WNV在内的该属非结构蛋白3解旋酶(NS3h)对于病毒复制至关重要,是一个很有前景的抗病毒靶点。此前[罗伊……,52,13,2024,7447 - 7464],我们表明WNV NS3h中的基序VI环(VIL)起着核苷酸阀的作用,在水解过程中调节ADP亲和力。在本研究中,我们发现VIL基序处的核苷酸亲和力与IVa和V基序处的RNA亲和力之间存在ATP依赖性偶联,这表明存在单链RNA易位的协同机制。通过对水解循环中间体进行微秒级全原子分子动力学模拟,我们发现关键的VIL残基(R461、R464)与基序V的RNA磷酸亲和力密切相关。结构分析揭示了E413(基序V)和R461(基序VIL)之间的ATP敏感相互作用,该相互作用调节基序V 3 - 螺旋的构象,从而影响RNA结合。这种动态相互作用在催化缺陷的VIL突变体中丧失,实验表明这些突变体会损害水解并减弱病毒复制。这些发现为NS3h功能提供了机制性见解,并确定了基于结构的抗病毒设计的新机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5d9/12236514/8467f5371e5a/nihpp-2025.07.04.663198v1-f0001.jpg

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