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Article Dans Une Revue American Journal of Physiology. Renal Physiology Année : 2024

Energy depletion by cell proliferation sensitizes the kidney epithelial cells to injury

Résumé

Acute kidney injury activates both proliferative and anti-proliferative pathways, the consequences of which are not fully elucidated. If an initial proliferation of the renal epithelium is necessary for the successful repair, the persistence of proliferation markers is associated with the occurrence of chronic kidney disease. We hypothesized that proliferation in stress conditions impacts cell viability and renal outcomes. We found that proliferation is associated with cell death after various stresses in kidney cells. In vitro, the ATP/ADP ratio oscillates reproducibly throughout the cell cycle, and cell proliferation is associated with a decreased intracellular ATP/ADP ratio. In vivo, transcriptomic data from transplanted kidneys revealed that proliferation was strongly associated with a decrease in the expression of the mitochondria-encoded genes of the oxidative phosphorylation pathway, but not of the nuclear-encoded ones. These observations suggest that mitochondrial function is a limiting factor for energy production in proliferative kidney cells after injury. The association of increased proliferation and decreased mitochondrial function was indeed associated with poor renal outcomes. In summary, proliferation is an energy demanding process impairing the cellular ability to cope with an injury, highlighting proliferative repair and metabolic recovery as indispensable and interdependent features for successful kidney repair.
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lundi 15 juillet 2024
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Dates et versions

hal-04394815 , version 1 (15-01-2024)

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Pierre Galichon, Morgane Lannoy, Li Li, Justine Serre, Sophie Vandermeersch, et al.. Energy depletion by cell proliferation sensitizes the kidney epithelial cells to injury. American Journal of Physiology. Renal Physiology, 2024, ⟨10.1152/ajprenal.00023.2023⟩. ⟨hal-04394815⟩
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