bioRxiv · 10.1101/2020.12.30.424810
Glycolysis downregulation is a hallmark of HIV-1 latency and sensitizes infected cells to oxidative stress
Abstract
HIV-1 infects lymphoid and myeloid cells, which can harbor a latent proviral reservoir responsible for maintaining lifelong infection. Glycolytic metabolism has been identified as a determinant of susceptibility to HIV-1 infection, but its role in the development and maintenance of HIV-1 latency has not been elucidated. By combining transcriptomic, proteomic and metabolomic analysis, we here show that transition to latent HIV-1 infection downregulates glycolysis, while viral reactivation by conventional stimuli reverts this effect. Decreased glycolytic output in latently infected cells is associated with downregulation of NAD+/NADH. Consequently, infected cells rely on the parallel pentose phosphate pathway and its main product, the antioxidant NADPH, fueling antioxidant pathways maintaining HIV-1 latency. Of note, blocking NADPH downstream effectors, thioredoxin and glutathione, favors HIV-1 reactivation from latency in lymphoid and myeloid cellular models. This provides a "shock and kill effect" decreasing proviral DNA in cells from people-living-with-HIV/AIDS. Overall, our data show that downmodulation of glycolysis is a metabolic signature of HIV-1 latency that can be exploited to target latently infected cells with eradication strategies.
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Shytaj, I. L., Procopio, F. A., Tarek, M., Carlon-Andres, I., Tang, H.-Y., Goldman, A. R., Munshi, M., Forcato, M., Leskov, K., Ye, F., Lucic, B., Cruz, N., Singh, A., Bicciato, S., Padilla-Parra, S., Lusic, M., Diaz, R. S., Alvarez-Carbonell, D., Savarino, A.. 2020-12-31. Glycolysis downregulation is a hallmark of HIV-1 latency and sensitizes infected cells to oxidative stress. https://doi.org/10.1101/2020.12.30.424810
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