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干扰素调节宿主因子 hnRNPA0 通过干扰 LTR 活性、mRNA 转运和程序性核糖体移码来调节 HIV-1 的产生。

The interferon-regulated host factor hnRNPA0 modulates HIV-1 production by interference with LTR activity, mRNA trafficking, and programmed ribosomal frameshifting.

机构信息

Goethe University Frankfurt, University Hospital, Institute for Medical Virology, Frankfurt, Germany.

Institute for Virology, University Hospital Essen, University Duisburg-Essen, Essen, Germany.

出版信息

J Virol. 2024 Jul 23;98(7):e0053424. doi: 10.1128/jvi.00534-24. Epub 2024 Jun 20.

Abstract

The interplay between host factors and viral components impacts viral replication efficiency profoundly. Members of the cellular heterogeneous nuclear ribonucleoprotein family (hnRNPs) have been extensively studied as HIV-1 host dependency factors, but whether they play a role in innate immunity is currently unknown. This study aimed to identify hnRNPA0 as a type I interferon (IFN)-repressed host factor in HIV-1-infected cells. Knockdown of hnRNPA0, a situation that mirrors conditions under IFN stimulation, increased LTR activity, export of unspliced HIV-1 mRNA, viral particle production, and thus, increased infectivity. Conversely, hnRNPA0 overexpression primarily reduced plasmid-driven and integrated HIV-1 long terminal repeat (LTR) activity, significantly decreasing total viral mRNA and protein levels. In addition, high levels of hnRNPA0 significantly reduced the HIV-1 programmed ribosomal frameshifting efficiency, resulting in a shift in the HIV-1 p55/p15 ratio. The HIV-1 alternative splice site usage remained largely unaffected by altered hnRNPA0 levels suggesting that the synergistic inhibition of the LTR activity and viral mRNA transcription, as well as impaired ribosomal frameshifting efficiency, are critical factors for efficient HIV-1 replication regulated by hnRNPA0. The pleiotropic dose-dependent effects under high or low hnRNPA0 levels were further confirmed in HIV-1-infected Jurkat cells. Finally, our study revealed that hnRNPA0 levels in PBMCs were lower in therapy-naive HIV-1-infected individuals compared to healthy controls. Our findings highlight a significant role for hnRNPA0 in HIV-1 replication and suggest that its IFN-I-regulated expression levels are critical for viral fitness allowing replication in an antiviral environment.IMPORTANCERNA-binding proteins, in particular, heterogeneous nuclear ribonucleoproteins (hnRNPs), have been extensively studied. Some act as host dependency factors for HIV-1 since they are involved in multiple cellular gene expression processes. Our study revealed hnRNPA0 as an IFN-regulated host factor, that is differently expressed after IFN-I treatment in HIV-1 target cells and lower expressed in therapy-naïve HIV-1-infected individuals. Our findings demonstrate the significant pleiotropic role of hnRNPA0 in viral replication: In high concentrations, hnRNPA0 limits viral replication by negatively regulating Tat-LTR transcription, retaining unspliced mRNA in the nucleus, and significantly impairing programmed ribosomal frameshifting. Low hnRNPA0 levels as observed in IFN-treated THP-1 cells, particularly facilitate HIV LTR activity and unspliced mRNA export, suggesting a role in innate immunity in favor of HIV replication. Understanding the mode of action between hnRNPA0 and HIV-1 gene expression might help to identify novel therapeutically strategies against HIV-1 and other viruses.

摘要

宿主因素和病毒成分之间的相互作用对病毒复制效率有深远的影响。细胞不均一核糖核蛋白家族(hnRNPs)的成员已被广泛研究为 HIV-1 的宿主依赖性因子,但它们是否在先天免疫中发挥作用目前尚不清楚。本研究旨在鉴定 hnRNPA0 为 HIV-1 感染细胞中受 I 型干扰素(IFN)抑制的宿主因子。hnRNPA0 的敲低,模拟 IFN 刺激条件下的情况,增加了 LTR 活性、未剪接 HIV-1 mRNA 的输出、病毒粒子的产生,从而增加了感染性。相反,hnRNPA0 的过表达主要降低了质粒驱动和整合的 HIV-1 长末端重复(LTR)活性,显著降低了总病毒 mRNA 和蛋白水平。此外,高水平的 hnRNPA0 显著降低了 HIV-1 程序性核糖体移码效率,导致 HIV-1 p55/p15 比率发生变化。改变 hnRNPA0 水平对 HIV-1 剪接位点的使用影响不大,这表明 LTR 活性和病毒 mRNA 转录的协同抑制以及核糖体移码效率的受损是 hnRNPA0 调节的 HIV-1 复制的关键因素。在 HIV-1 感染的 Jurkat 细胞中,高或低 hnRNPA0 水平下的多效剂量依赖性效应进一步得到证实。最后,我们的研究表明,与健康对照组相比,未经治疗的 HIV-1 感染个体的 PBMCs 中 hnRNPA0 水平较低。我们的发现强调了 hnRNPA0 在 HIV-1 复制中的重要作用,并表明其 IFN-I 调节的表达水平对于病毒适应性至关重要,允许在抗病毒环境中复制。

重要的是,RNA 结合蛋白,特别是异质核核糖核蛋白(hnRNPs),已经被广泛研究。其中一些作为 HIV-1 的宿主依赖性因子,因为它们参与了多个细胞基因表达过程。我们的研究揭示了 hnRNPA0 作为一种 IFN 调节的宿主因子,在 HIV-1 靶细胞中经 IFN-I 处理后表达不同,在未经治疗的 HIV-1 感染个体中表达水平较低。我们的研究结果表明 hnRNPA0 在病毒复制中具有显著的多效性作用:在高浓度下,hnRNPA0 通过负调控 Tat-LTR 转录、将未剪接的 mRNA 保留在核内以及显著损害程序性核糖体移码来限制病毒复制。在 IFN 处理的 THP-1 细胞中观察到的低 hnRNPA0 水平,特别是促进了 HIV LTR 活性和未剪接 mRNA 的输出,提示其在先天免疫中有利于 HIV 复制。了解 hnRNPA0 和 HIV-1 基因表达之间的作用模式可能有助于确定针对 HIV-1 和其他病毒的新型治疗策略。

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