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Granulocytic myeloid–derived suppressor cells sustain HIV reservoirs by inhibiting viral reactivation via arginase 1–mediated mechanisms
Ana Gallego-Cortés, Judith Grau-Expósito, Irene Mota-Gómez, Aleix Benitez-Martinez, Josep Castellvi, Jordi Navarro, Adrian Curran, Joaquin Burgos, Paula Suanzes, Vicenç Falcó, Meritxell Genescà, Maria J. Buzon
Ana Gallego-Cortés, Judith Grau-Expósito, Irene Mota-Gómez, Aleix Benitez-Martinez, Josep Castellvi, Jordi Navarro, Adrian Curran, Joaquin Burgos, Paula Suanzes, Vicenç Falcó, Meritxell Genescà, Maria J. Buzon
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Research Article AIDS/HIV Immunology

Granulocytic myeloid–derived suppressor cells sustain HIV reservoirs by inhibiting viral reactivation via arginase 1–mediated mechanisms

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Abstract

Myeloid-derived suppressor cells (MDSCs) represent a heterogeneous population of immature myeloid cells with potent immunosuppressive capabilities that contribute to viral persistence in chronic infections. However, their direct effect on the latent HIV reservoir remains poorly understood. Here, we report that people with HIV (PWH) exhibit elevated levels of MDSCs with notable immunosuppressive activity. Both granulocytic (G-MDSCs) and monocytic (M-MDSCs) subsets expressing arginase 1 (ARG1) or indoleamine 2,3-dioxygenase (IDO) are increased during treated infection, with low-level viral transcription preferentially associated with the expansion of highly suppressive G-MDSCs. Functional assays revealed that G-MDSCs robustly inhibit HIV reactivation from latent reservoirs. Mechanistically, G-MDSCs mediate this inhibition through a contact-independent mechanism, primarily involving ARG1 activity. Our findings demonstrate the capacity of G-MDSCs to sustain HIV reservoirs, suggesting that targeting these cells could potentiate therapeutic strategies aimed at eliminating HIV reservoirs through viral reactivation.

Authors

Ana Gallego-Cortés, Judith Grau-Expósito, Irene Mota-Gómez, Aleix Benitez-Martinez, Josep Castellvi, Jordi Navarro, Adrian Curran, Joaquin Burgos, Paula Suanzes, Vicenç Falcó, Meritxell Genescà, Maria J. Buzon

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Figure 5

MDSCs expand during acute HIV infection and are maintained during ART associated with low-level viral transcription.

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MDSCs expand during acute HIV infection and are maintained during ART as...
Spearman correlation analysis displaying relationships in the VIR cohort between: (A) G-MDSCs and M-MDSCs, as well as their ARG1+ and IDO+ subsets; HIV RNA (n = 12) and HIV DNA (n = 13) within CD4+ T cells; the HIV RNA/DNA ratio (n = 12); Viral Load (VL) (n = 13); CD4+ T cell count (n = 13); VL zenith (n = 13); and nadir CD4+ T cell count (n = 13). (B) M-MDSCs and HIV DNA in CD4+ T cells (n = 13). (C) M-MDSCs ARG1+ and VL (n = 13). (D) All G-MDSC subsets and M-MDSCs ARG1+ and VL zenith (n = 13). (E) G-MDSCs, M-MDSCs and their ARG1+ subsets, and nadir CD4+ T cell count (n = 13). Spearman correlation analysis displaying relationships in the ART cohort between: (F) all MDSC subsets and HIV RNA (n = 16) and HIV DNA (n = 14) within CD4+ T cells, the HIV RNA/DNA ratio (n = 14), intact HIV DNA in CD4+ T cells (n = 13), CD4+ T cell count (n = 26), and months on suppressive ART (MAS) (n = 26). (G) G-MDSCs, G-MDSCs ARG1+, G-MDSCs IDO+ and M-MDSCs ARG1+, and HIV RNA within CD4+ T cells (n = 16). (H) G-MDSCs ARG1+, G-MDSCs IDO+, and M-MDSCs ARG1+ and the HIV RNA:DNA ratio (n = 14). (I) M-MDSCs ARG1+ and intact HIV DNA in CD4+ T cells (n = 13). Source data are provided as a Source Data file.

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