Abstract
Yeast cells, like mammalian cells, enlarge steadily as they age. Unabated cell growth can promote cellular senescence; however, the significance of the relationship between size and cellular lifespan is not well understood. Herein, we report a genetic link between cell size, growth rate and lifespan. Mutations that increase cell size concomitantly increase growth rate and decrease lifespan. As a result, large cells grow, divide and age dramatically faster than small cells. Conversely, small cell mutants age slowly and are long-lived. Investigation of the mechanisms involved suggests that attainment of a maximal size modulates lifespan. Indeed, cumulative results revealed that life expectancy is size-dependent, and that the rate at which cells age is determined in large part by the amount of cell growth per generation. © 2011 Landes Bioscience.
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Yang, J., Dungrawala, H., Hua, H., Manukyan, A., Abraham, L., Lane, W., … Schneider, B. L. (2011). Cell size and growth rate are major determinants of replicative lifespan. Cell Cycle, 10(1), 144–155. https://doi.org/10.4161/cc.10.1.14455
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