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具有双重抗 HIV-1 机制的精英控制者中天然存在的二肽。

Naturally occurring dipeptide from elite controllers with dual anti-HIV-1 mechanism.

机构信息

Division of Infectious Diseases, ANA Futura Laboratory, Department of Medicine Huddinge, Karolinska Institutet, Stockholm, Sweden.

Division of Infectious Diseases, ANA Futura Laboratory, Department of Medicine Huddinge, Karolinska Institutet, Stockholm, Sweden.

出版信息

Int J Antimicrob Agents. 2023 May;61(5):106792. doi: 10.1016/j.ijantimicag.2023.106792. Epub 2023 Mar 15.

Abstract

BACKGROUND

Enhanced levels of a dipeptide, WG-am, have been reported among elite controllers - patients who spontaneously control their HIV-1 infection. This study aimed to evaluate anti-HIV-1 activity and mechanism of action of WG-am.

METHODS

Drug sensitivity assays in TZM.bl cells, PBMCs and ACH-2 cells using WT and mutated HIV-1 strainswere performed to evaluate the antiviral mechanism of WG-am. Mass spectrometry-based proteomics and Real-time PCR analysis of reverse transcription steps were performed to unravel the second anti-HIV-1 mechanism of WG-am.

RESULTS

The data suggest that WG-am binds to the CD4 binding pocket of HIV-1 gp120 and blocks its binding to the host cell receptors. Additionally, the time course assay showed that WG-am also inhibited HIV-1 at 4-6 hours post-infection, suggesting a second antiviral mechanism. Drug sensitivity assays under acidic wash conditions confirmed the ability of WG-am to internalise into the host cell in an HIV independent manner. Proteomic studies showed a clustering of all samples treated with WG-am independent of the number of doses or presence or absence of HIV-1. Differentially expressed proteins due to the WG-am treatment indicated an effect on HIV-1 reverse transcription, which was confirmed by reverse transcriptase polymerase chain reaction (RT-PCR).

CONCLUSION

Naturally occurring in HIV-1 elite controllers, WG-am stands out as a new kind of antiviral compound with two independent inhibitory mechanisms of action on HIV-1 replication. WG-am halts HIV-1 entry to the host cell by binding to HIV-1 gp120, thereby blocking the binding of HIV-1 to the host cell. WG-am also exerts a post-entry but pre-integration antiviral effect related to RT-activity.

摘要

背景

在精英控制者(即能够自发控制 HIV-1 感染的患者)中,已报告二肽 WG-am 的水平增强。本研究旨在评估 WG-am 对 HIV-1 的抗病毒活性和作用机制。

方法

使用 WT 和突变的 HIV-1 株在 TZM.bl 细胞、PBMCs 和 ACH-2 细胞中进行药物敏感性测定,以评估 WG-am 的抗病毒机制。采用基于质谱的蛋白质组学和实时 PCR 分析逆转录步骤,揭示 WG-am 的第二种抗 HIV-1 机制。

结果

数据表明,WG-am 结合 HIV-1 gp120 的 CD4 结合口袋并阻止其与宿主细胞受体结合。此外,时间过程测定表明,WG-am 还在感染后 4-6 小时抑制 HIV-1,提示存在第二种抗病毒机制。在酸性洗涤条件下进行的药物敏感性测定证实了 WG-am 能够以 HIV 非依赖的方式内化到宿主细胞中。蛋白质组学研究表明,所有用 WG-am 处理的样品均聚集在一起,与剂量多少或是否存在 HIV-1 无关。由于 WG-am 处理而差异表达的蛋白质表明其对 HIV-1 逆转录有影响,这通过逆转录酶聚合酶链反应(RT-PCR)得到证实。

结论

WG-am 在 HIV-1 精英控制者中自然存在,它是一种新型的抗病毒化合物,具有两种独立的抑制 HIV-1 复制的作用机制。WG-am 通过与 HIV-1 gp120 结合阻止 HIV-1 与宿主细胞的结合,从而阻止 HIV-1 进入宿主细胞。WG-am 还发挥一种与 RT 活性相关的进入后但整合前的抗病毒作用。

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