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Biology subjects

TUAILLON, E.

Publications and source records attributed to TUAILLON, E..

2 recordsLinked to original sources

A new HIV-1 latency reversing agent activating HIV-Tat

Despite its efficiency to prevent viral multiplication, antiretroviral therapy does not affect HIV-1 latently-infected cells. These cells do not produce significant amounts of viruses and constitute HIV-1 reservoir. To purge this long-lived viral reservoir, the "shock and kill" strategy relies on the use of latency reversing agents (LRAs) to induce activation of latent cells. All LRAs developed until now target cellular proteins and are therefore not specific for HIV-infected cells. Here we present a new LRA that binds and activates HIV-1 Tat which is the key regulator for viral transcription and latency reversal. This molecule termed D10 was designed to bind to the major groove of the Tat protein, and found to activate Tat transcriptional activity by stabilizing the HIV transcription complex. This LRA induces strong HIV production by latent cell lines and latent cells from people living with HIV-1. On latent cells from PBMCs, D10 is active at [~]50 nM, the concentration required to stabilize HIV transcription complex. D10 is the first Tat activator available and the first LRA that targets an HIV protein.

microbiology↗

Neutrophils in People Living With HIV-1 on antiretroviral treatment conserve their cytokine and chemokine secretion capacity and display enhanced expression of Fc receptors

Neutrophils are innate immune cells with key immunomodulatory functions. In a murine retroviral model, we previously showed their essential role in promoting protective immunity during antiviral antibody therapy via Fc-Fc{gamma} receptor (Fc{gamma}R) interactions. Here, we investigated the immunomodulatory properties of neutrophils in the context of HIV-1 infection and therapy through a comprehensive analysis of their functional activation and the regulation of Fc{gamma}R expression. Neutrophils from healthy donors (HD) and people living with HIV-1 (PLWH) were stimulated with TLR ligands, free HIV-1, immune complexes (ICs) formed with broadly neutralizing antibodies (bNAbs), or pro-inflammatory cytokines (TNF, IFN{gamma}). In response, they secreted various cytokines and chemokines that can recruit and activate immune cells in a stimulus-dependent manner. Compared to TLR agonist and cytokine activation, HD neutrophils showed limited cytokine production in response to free HIV-1 or ICs alone as well as a minimal Fc{gamma}R modulation. However, PLWH neutrophils showed heightened responsiveness to microbial stimuli linked to HIV-1 pathogenesis, secreting higher levels of IFN{gamma}, CXCL1, CCL2, CCL3, and CCL4. They also expressed higher levels of two activating Fc{gamma}Rs (Fc{gamma}RI and Fc{gamma}RIIIb), as well as CD11b, CD63, CXCR4, and PD-L1, indicating an altered activation state. These findings highlight the influence of the inflammatory milieu on neutrophil function and Fc{gamma}R regulation in HIV-1 infection and mAb-based therapies.

immunology↗