bioRxiv Science⌕ Search

Biology subjects

Stager, S.

Publications and source records attributed to Stager, S..

2 recordsLinked to original sources

Nef and Vpu protect infected cells from ADCP mediated by plasma from people with HIV-1

The HIV-1 envelope glycoprotein (Env) represents the only viral antigen at the surface of infected cells, making it an ideal target for antibody-based therapies. Most antibodies elicited in people with HIV (PWH) do not recognize Env in its native "closed" conformation but readily bind to Env when it samples the CD4-bound "open" conformation. Downregulation of CD4 at the surface of infected cells by the viral accessory proteins Nef and Vpu prevents the premature opening of Env and has been shown to protect infected cells from antibody-dependent cellular cytotoxicity (ADCC) mediated by PWH plasma. Here, we report that deletion of Nef and Vpu from primary infectious molecular clones renders infected cells vulnerable to antibody-dependent cellular phagocytosis (ADCP) mediated by PWH plasma. This is in part linked to the premature engagement of Env with CD4. In agreement with an "open" Env being vulnerable to ADCP, small CD4 mimetic compounds (CD4mc) sensitize in vitro-infected cells and ex vivo-expanded CD4 T cells to ADCP mediated by autologous monocytes in presence of PWH plasma. This effect was further improved by increasing cell surface Env through IFN-induced BST-2 upregulation. IMPORTANCEDeveloping new therapies to eliminate HIV-1-infected cells is essential to decrease the size of the HIV-1 reservoir. Fc-effector functions such as antibody dependent cellular cytotoxicity (ADCC) have shown potential in eliminating in vitro-infected cells and ex vivo-expanded infected cells from people with HIV, decreasing the size of the reservoir and delaying viral rebound in humanized mice. Here, we report that antibody dependent cellular phagocytosis (ADCP) can also be harnessed to eliminate HIV-1-infected cells. We show that infected cells harboring "open" Env conformations are susceptible to ADCP-mediated killing in the presence of plasma from people with HIV. A better understanding of the contribution of different Fc-effector functions in the elimination of infected cells could help guide the development of new therapeutic approaches toward an HIV-1 cure.

microbiology↗

The transcription factor IRF-5 is essential for the metabolic rewiring of CD8 T cells during chronic infection

Numerous transcription factors are involved in promoting an intricate gene expression program that leads to CD8 T cell exhaustion. Here, we found that the transcription factor IRF-5 is involved in limiting functional exhaustion of CD8 T cells by regulating the cell cycle and contributing to sustaining the mitochondrial functions and oxidative phosphorylation during the chronic stage of LCMV Cl13 infection. CD8 T cells lacking IRF-5 display reduced survival capacity and show increased signs of functional exhaustion during the chronic stage of infection. IRF-5-deficiency also resulted in a severely defective lipid metabolism, in a faulty mitochondrial envelope, and in the reduced capacity to produce ATP. Additionally, we observed increased lipid peroxidation in CD8 T cells lacking IRF-5, when compared with WT cells. These findings identify IRF-5 as a pivotal regulator of the metabolic rewiring that occurs in CD8 T cells during the chronic stages of infection and highlight its role in protecting cells from cell death, possibly by lipid peroxidation. SummaryIRF-5 is critical for regulating mitochondrial functions and oxidative phosphorylation in CD8 T cells during chronic stages of LCMV Cl13 infection.

immunology↗