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NS5 泛素化介导的核反应允许寨卡病毒持续感染人脑血管内皮细胞。

NS5 Sumoylation Directs Nuclear Responses That Permit Zika Virus To Persistently Infect Human Brain Microvascular Endothelial Cells.

机构信息

Department of Microbiology and Immunology, Stony Brook University, Stony Brook, New York, USA.

Molecular and Cellular Biology Program, Stony Brook University, Stony Brook, New York, USA.

出版信息

J Virol. 2020 Sep 15;94(19). doi: 10.1128/JVI.01086-20.

Abstract

Zika virus (ZIKV) is cytopathic to neurons and persistently infects brain microvascular endothelial cells (hBMECs), which normally restrict viral access to neurons. Despite replicating in the cytoplasm, ZIKV and Dengue virus (DENV) polymerases, NS5 proteins, are predominantly trafficked to the nucleus. We found that a SUMO interaction motif in ZIKV and DENV NS5 proteins directs nuclear localization. However, ZIKV NS5 formed discrete punctate nuclear bodies (NBs), while DENV NS5 was uniformly dispersed in the nucleoplasm. Yet, mutating one DENV NS5 SUMO site (K546R) localized the NS5 mutant to discrete NBs, and NBs formed by the ZIKV NS5 SUMO mutant (K252R) were restructured into discrete protein complexes. In hBMECs, NBs formed by STAT2 and promyelocytic leukemia (PML) protein are present constitutively and enhance innate immunity. During ZIKV infection or NS5 expression, we found that ZIKV NS5 evicts PML from STAT2 NBs, forming NS5/STAT2 NBs that dramatically reduce PML expression in hBMECs and inhibit the transcription of interferon-stimulated genes (ISG). Expressing the ZIKV NS5 SUMO site mutant (K252R) resulted in NS5/STAT2/PML NBs that failed to degrade PML, reduce STAT2 expression, or inhibit ISG induction. Additionally, the K252 SUMOylation site and NS5 nuclear localization were required for ZIKV NS5 to regulate hBMEC cell cycle transcriptional responses. Our data reveal NS5 SUMO motifs as novel NB coordinating factors that distinguish flavivirus NS5 proteins. These findings establish SUMOylation of ZIKV NS5 as critical in the regulation of antiviral ISG and cell cycle responses that permit ZIKV to persistently infect hBMECs. ZIKV is a unique neurovirulent flavivirus that persistently infects human brain microvascular endothelial cells (hBMECs), the primary barrier that restricts viral access to neuronal compartments. Here, we demonstrate that flavivirus-specific SIM and SUMO sites determine the assembly of NS5 proteins into discrete nuclear bodies (NBs). We found that NS5 SIM sites are required for NS5 nuclear localization and that SUMO sites regulate NS5 NB complex constituents, assembly, and function. We reveal that ZIKV NS5 SUMO sites direct NS5 binding to STAT2, disrupt the formation of antiviral PML-STAT2 NBs, and direct PML degradation. ZIKV NS5 SUMO sites also transcriptionally regulate cell cycle and ISG responses that permit ZIKV to persistently infect hBMECs. Our findings demonstrate the function of SUMO sites in ZIKV NS5 NB formation and their importance in regulating nuclear responses that permit ZIKV to persistently infect hBMECs and thereby gain access to neurons.

摘要

寨卡病毒(ZIKV)对神经元具有细胞病变作用,并持续感染脑微血管内皮细胞(hBMECs),而后者通常限制病毒进入神经元。尽管 ZIKV 和登革热病毒(DENV)聚合酶、NS5 蛋白在细胞质中复制,但它们主要被运输到细胞核。我们发现 ZIKV 和 DENV NS5 蛋白中的 SUMO 相互作用基序指导核定位。然而,ZIKV NS5 形成离散的点状核体(NBs),而 DENV NS5 在核质中均匀分散。然而,突变 DENV NS5 的一个 SUMO 位点(K546R)将 NS5 突变体定位到离散的 NBs,而 ZIKV NS5 SUMO 突变体(K252R)形成的 NBs 被重组为离散的蛋白复合物。在 hBMECs 中,由 STAT2 和早幼粒细胞白血病(PML)蛋白形成的 NBs 是组成性存在的,并增强先天免疫。在 ZIKV 感染或 NS5 表达期间,我们发现 ZIKV NS5 将 PML 从 STAT2 NBs 中逐出,形成 NS5/STAT2 NBs,这大大降低了 hBMECs 中 PML 的表达,并抑制了干扰素刺激基因(ISG)的转录。表达 ZIKV NS5 SUMO 位点突变体(K252R)导致 NS5/STAT2/PML NBs 无法降解 PML、降低 STAT2 表达或抑制 ISG 诱导。此外,ZIKV NS5 的 K252 SUMOylation 位点和核定位对于 ZIKV NS5 调节 hBMEC 细胞周期转录反应是必需的。我们的数据揭示了 NS5 SUMO 基序作为区分黄病毒 NS5 蛋白的新型 NB 协调因子。这些发现确立了 ZIKV NS5 的 SUMOylation 作为调节抗病毒 ISG 和细胞周期反应的关键,这些反应允许 ZIKV 持续感染 hBMECs。ZIKV 是一种独特的神经毒力黄病毒,持续感染人脑微血管内皮细胞(hBMECs),这是限制病毒进入神经元区室的主要屏障。在这里,我们证明了黄病毒特异性 SIM 和 SUMO 位点决定了 NS5 蛋白组装成离散的核体(NBs)。我们发现 NS5 SIM 位点是 NS5 核定位所必需的,而 SUMO 位点调节 NS5 NB 复合物成分、组装和功能。我们揭示 ZIKV NS5 SUMO 位点指导 NS5 与 STAT2 结合,破坏抗病毒 PML-STAT2 NBs 的形成,并指导 PML 降解。ZIKV NS5 SUMO 位点还转录调节细胞周期和 ISG 反应,使 ZIKV 能够持续感染 hBMECs。我们的研究结果表明 SUMO 位点在 ZIKV NS5 NB 形成中的功能及其在调节允许 ZIKV 持续感染 hBMECs 并由此进入神经元的核反应中的重要性。

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