bioRxiv · 10.1101/2023.12.27.573435
Genetically encoded tool for manipulation of Δ{Psi}m identifies the latter as the driver of integrative stress response induced by ATP Synthase dysfunction
Abstract
Mitochondrial membrane potential ({Delta}{Psi}m) is one of the key parameters controlling cellular bioenergetics. Investigation of the role of {Delta}{Psi}m in live cells is complicated by a lack of tools for its direct manipulation without off-target effects. Here, we adopted the uncoupling protein UCP1 from brown adipocytes as a genetically encoded tool for direct manipulation of {Delta}{Psi}m. We validated the ability of exogenously expressed UCP1 to induce uncoupled respiration and lower {Delta}{Psi}m in mammalian cells. UCP1 expression lowered {Delta}{Psi}m to the same extent as chemical uncouplers but did not inhibit cell proliferation, suggesting that it manipulates {Delta}{Psi}m without the off-target effects of chemical uncouplers. Using UCP1, we revealed that elevated {Delta}{Psi}m is the driver of the Integrated Stress Response induced by ATP synthase inhibition in mammalian cells.
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Choe, M., Titov, D. V.. 2023-12-27. Genetically encoded tool for manipulation of Δ{Psi}m identifies the latter as the driver of integrative stress response induced by ATP Synthase dysfunction. https://doi.org/10.1101/2023.12.27.573435
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