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Type I interferons suppress viral replication but contribute to T cell depletion and dysfunction during chronic HIV-1 infection
Liang Cheng, Haisheng Yu, Guangming Li, Feng Li, Jianping Ma, Jingyun Li, Liqun Chi, Liguo Zhang, Lishan Su
Liang Cheng, Haisheng Yu, Guangming Li, Feng Li, Jianping Ma, Jingyun Li, Liqun Chi, Liguo Zhang, Lishan Su
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Research Article AIDS/HIV

Type I interferons suppress viral replication but contribute to T cell depletion and dysfunction during chronic HIV-1 infection

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Abstract

The direct link between sustained type I interferon (IFN-I) signaling and HIV-1–induced immunopathogenesis during chronic infection remains unclear. Here we report studies using a monoclonal antibody to block IFN-α/β receptor 1 (IFNAR1) signaling during persistent HIV-1 infection in humanized mice (hu-mice). We discovered that, during chronic HIV-1 infection, IFNAR blockade increased viral replication, which was correlated with elevated T cell activation. Thus, IFN-Is suppress HIV-1 replication during the chronic phase but are not essential for HIV-1–induced aberrant immune activation. Surprisingly, IFNAR blockade rescued both total human T cell and HIV-specific T cell numbers despite elevated HIV-1 replication and immune activation. We showed that IFNAR blockade reduced HIV-1–induced apoptosis of CD4+ T cells. Importantly, IFNAR blockade also rescued the function of human T cells, including HIV-1–specific CD8+ and CD4+ T cells. We conclude that during persistent HIV-1 infection, IFN-Is suppress HIV-1 replication, but contribute to depletion and dysfunction of T cells.

Authors

Liang Cheng, Haisheng Yu, Guangming Li, Feng Li, Jianping Ma, Jingyun Li, Liqun Chi, Liguo Zhang, Lishan Su

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Figure 5

IFNAR1 blockade during persistent HIV-1 infection rescues human T cells and total human leukocytes in humanized mice.

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IFNAR1 blockade during persistent HIV-1 infection rescues human T cells ...
Humanized mice infected with HIV-1 were treated with a mAb against IFN-α/β receptor 1 (IFNAR1) or isotype control (mouse IgG2a) twice per week from 6 to 10 weeks postinjection (wpi). Mice were sacrificed at 10 wpi. (A and B) Numbers of CD4+ T cells (CD3+CD8–), CD8+ T cells (CD3+CD8+) and total human leukocytes in spleens (A) (mock, n = 13; HIV-1 + mIgG2a, n = 18; HIV-1 + anti-IFNAR1, n = 17, combined data from 5 independent experiments) and mesenteric lymph nodes (mLNs) (B) (mock, n = 8; HIV-1 + mIgG2a, n = 12; HIV-1 + anti-IFNAR1, n = 11, combined data from 3 independent experiments with mean values ± SEM). (C and D) Humanized NSG-A2 mice transplanted with hematopoietic stem cells from HLA-A2–matched donor were infected with HIV-1 and treated with anti-IFNAR1 mAb or isotype control (mouse IgG2a) twice per week from 6 to 10 wpi. Mice were sacrificed at 10 wpi. Representative dot plots (C) and summarized data (D) show the percentages of CD8+ T cells specific for the HLA-A2/SL-9 pentamer (an HLA-A2–restricted epitope consisting of amino acids 77–85 of HIV-1 p17 protein) among CD8+ T cells from lymph nodes (mock, n = 3; HIV-1 + mIgG2a, n = 3; HIV-1 + anti-IFNAR1, n = 3) and spleens (mock, n = 3; HIV-1 + mIgG2a, n = 4; HIV-1 + anti-IFNAR1, n = 4). *P < 0.05, **P < 0.01, ***P < 0.001 by 1-way ANOVA with Bonferroni’s post hoc test.

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