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逃逸突变特异性 T 细胞在抑制 HIV-1 复制中的作用及与 HIV-1 的共同进化。

Role of Escape Mutant-Specific T Cells in Suppression of HIV-1 Replication and Coevolution with HIV-1.

机构信息

Division of International Collaboration Research, Joint Research Center for Human Retrovirus Infection, Kumamoto University, Kumamoto, Japan.

Center for AIDS Research, Kumamoto University, Kumamoto, Japan.

出版信息

J Virol. 2020 Sep 15;94(19). doi: 10.1128/JVI.01151-20.

Abstract

The accumulation of HIV-1 escape mutations affects HIV-1 control by HIV-1-specific T cells. Some of these mutations can elicit escape mutant-specific T cells, but it still remains unclear whether they can suppress the replication of HIV-1 mutants. It is known that HLA-B52:01-restricted RI8 (Gag 275 to 282; RMYSPTSI) is a protective T cell epitope in HIV-1 subtype B-infected Japanese individuals, though 3 Gag280A/S/V mutations are found in 26% of them. Gag280S and Gag280A were HLA-B52:01-associated mutations, whereas Gag280V was not, implying a different mechanism for the accumulation of Gag280 mutations. In this study, we investigated the coevolution of HIV-1 with RI8-specific T cells and suppression of HIV-1 replication by its escape mutant-specific T cells both and HLA-B52:01 individuals infected with Gag280A/S mutant viruses failed to elicit these mutant epitope-specific T cells, whereas those with the Gag280V mutant one effectively elicited RI8-6V mutant-specific T cells. These RI8-6V-specific T cells suppressed the replication of Gag280V virus and selected wild-type virus, suggesting a mechanism affording no accumulation of the Gag280V mutation in the HLA-B52:01 individuals. The responders to wild-type (RI8-6T) and RI8-6V mutant peptides had significantly higher CD4 counts than nonresponders, indicating that the existence of not only RI8-6T-specific T cells but also RI8-6V-specific ones was associated with a good clinical outcome. The present study clarified the role of escape mutant-specific T cells in HIV-1 evolution and in the control of HIV-1. Escape mutant-specific CD8 T cells were elicited in some individuals infected with escape mutants, but it is still unknown whether these CD8 T cells can suppress HIV-1 replication. We clarified that Gag280V mutation were selected by HLA-B52:01-restricted CD8 T cells specific for the GagRI8 protective epitope, whereas the Gag280V virus could frequently elicit GagRI8-6V mutant-specific CD8 T cells. GagRI8-6V mutant-specific T cells had a strong ability to suppress the replication of the Gag280V mutant virus both and In addition, these T cells contributed to the selection of wild-type virus in HLA-B52:01 Japanese individuals. We for the first time demonstrated that escape mutant-specific CD8 T cells can suppress HIV-1 replication and play an important role in the coevolution with HIV-1. Thus, the present study highlighted an important role of escape mutant-specific T cells in the control of HIV-1 and coevolution with HIV-1.

摘要

HIV-1 逃逸突变的积累会影响 HIV-1 特异性 T 细胞对 HIV-1 的控制。其中一些突变可以引发逃逸突变特异性 T 细胞,但仍不清楚它们是否能抑制 HIV-1 突变体的复制。已知 HLA-B52:01 限制的 RI8(Gag 275 至 282;RMYSPTSI)是 HIV-1 亚型 B 感染的日本个体中的保护性 T 细胞表位,尽管其中 26%存在 3 个 Gag280A/S/V 突变。Gag280S 和 Gag280A 是与 HLA-B52:01 相关的突变,而 Gag280V 则不是,这意味着 Gag280 突变积累的机制不同。在这项研究中,我们调查了 RI8 特异性 T 细胞与 HIV-1 的共同进化以及其逃逸突变特异性 T 细胞对 HIV-1 复制的抑制作用。在感染 Gag280A/S 突变病毒的 和 个体中,未能诱导这些突变表位特异性 T 细胞,而携带 Gag280V 突变的个体则有效地诱导了 RI8-6V 突变特异性 T 细胞。这些 RI8-6V 特异性 T 细胞抑制了 Gag280V 病毒的复制,并选择了野生型病毒,这表明在 HLA-B52:01 个体中没有积累 Gag280V 突变的机制。对野生型(RI8-6T)和 RI8-6V 突变肽有反应的应答者的 CD4 计数明显高于无反应者,这表明不仅存在 RI8-6T 特异性 T 细胞,而且存在 RI8-6V 特异性 T 细胞与良好的临床结果相关。本研究阐明了逃逸突变特异性 T 细胞在 HIV-1 进化和 HIV-1 控制中的作用。在感染逃逸突变的个体中诱导了逃逸突变特异性 CD8 T 细胞,但仍不清楚这些 CD8 T 细胞是否能抑制 HIV-1 复制。我们阐明了 Gag280V 突变是由 GagRI8 保护性表位的 HLA-B52:01 限制性 CD8 T 细胞选择的,而 Gag280V 病毒可以频繁诱导 GagRI8-6V 突变特异性 CD8 T 细胞。GagRI8-6V 突变特异性 T 细胞具有强烈抑制 Gag280V 突变病毒复制的能力, 在 和 此外,这些 T 细胞有助于在 HLA-B*52:01 日本个体中选择野生型病毒。我们首次证明,逃逸突变特异性 CD8 T 细胞可以抑制 HIV-1 复制,并在与 HIV-1 的共同进化中发挥重要作用。因此,本研究强调了逃逸突变特异性 T 细胞在 HIV-1 控制和与 HIV-1 共同进化中的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e597/7495385/af2199f796c6/JVI.01151-20-f0001.jpg

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