Handee Witawas, Li Xiaobo, Hall Kevin W, Deng Xiexiong, Li Pan, Benning Christoph, Williams Barry L, Kuo Min-Hao
Department of Cell and Molecular Biology, Michigan State University. East Lansing, Michigan, United States of America.
DOE-Plant Research Laboratory, Michigan State University. East Lansing, Michigan, United States of America.
PLoS Genet. 2016 Feb 23;12(2):e1005878. doi: 10.1371/journal.pgen.1005878. eCollection 2016 Feb.
Intracellular triacylglycerol (TAG) is a ubiquitous energy storage lipid also involved in lipid homeostasis and signaling. Comparatively, little is known about TAG's role in other cellular functions. Here we show a pro-longevity function of TAG in the budding yeast Saccharomyces cerevisiae. In yeast strains derived from natural and laboratory environments a correlation between high levels of TAG and longer chronological lifespan was observed. Increased TAG abundance through the deletion of TAG lipases prolonged chronological lifespan of laboratory strains, while diminishing TAG biosynthesis shortened lifespan without apparently affecting vegetative growth. TAG-mediated lifespan extension was independent of several other known stress response factors involved in chronological aging. Because both lifespan regulation and TAG metabolism are conserved, this cellular pro-longevity function of TAG may extend to other organisms.
细胞内三酰甘油(TAG)是一种普遍存在的能量储存脂质,也参与脂质稳态和信号传导。相比之下,人们对TAG在其他细胞功能中的作用了解较少。在这里,我们展示了TAG在芽殖酵母酿酒酵母中的促长寿功能。在源自自然和实验室环境的酵母菌株中,观察到高水平的TAG与更长的时序寿命之间存在相关性。通过删除TAG脂肪酶增加TAG丰度可延长实验室菌株的时序寿命,而减少TAG生物合成则会缩短寿命,且未明显影响营养生长。TAG介导的寿命延长独立于其他几个参与时序衰老的已知应激反应因子。由于寿命调节和TAG代谢都是保守的,TAG的这种细胞促长寿功能可能会扩展到其他生物体。