首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Early onset senescence occurs when fibroblasts lack the glutamate-cysteine ligase modifier subunit.
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Early onset senescence occurs when fibroblasts lack the glutamate-cysteine ligase modifier subunit.

机译:当成纤维细胞缺乏谷氨酸-半胱氨酸连接酶修饰子亚基时,发生早衰。

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摘要

Cellular senescence is the irreversible entry of cells into growth arrest. Senescence of primary cells in culture has long been used as an in vitro model for aging. Glutamate-cysteine ligase (GCL) controls the synthetic rate of the important cellular antioxidant glutathione (GSH). The catalytic subunit of GCL, GCLC, is catalytically active and essential for life. By contrast the modifier subunit of GCL, GCLM, is dispensable in mice. Although it is recognized that GCLM increases the rate of GSH synthesis, its physiological role is unclear. Herein, we show that loss of Gclm leads to premature senescence of primary murine fibroblasts as characterized by: (a) diminished growth rate, (b) cell morphology consistent with senescence, (c) increases in senescence-associated beta-galactosidase activity, and (d) cell cycle arrest at the G(1)/S and G(2)/M boundaries. These changes are accompanied by increased intracellular ROS, accumulation of DNA damage, and induction of p53 and p21 proteins. We also found that N-acetylcysteine increases intracellular GSH and prevents premature senescence in Gclm(-/-) cells. These results suggest that the control of GCLM, which in turn controls aspects of the cellular redox environment via GSH, is important in determining the replicative capacity of the cell.
机译:细胞衰老是细胞不可逆转的进入生长停滞状态。长期以来,培养物中原代细胞的衰老一直被用作衰老的体外模型。谷氨酸半胱氨酸连接酶(GCL)控制重要的细胞抗氧化剂谷胱甘肽(GSH)的合成速率。 GCL的催化亚基GCLC具有催化活性,是生命必不可少的。相比之下,GCL的修饰子亚基GCLM在小鼠中是必需的。尽管已经认识到GCLM增加了GSH合成的速率,但是其生理作用尚不清楚。在这里,我们表明,Gclm的丧失导致原代鼠成纤维细胞的过早衰老,其特征是:(a)生长速率降低;(b)与衰老一致的细胞形态;(c)衰老相关的β-半乳糖苷酶活性增加;以及(d)细胞周期停滞在G(1)/ S和G(2)/ M边界。这些变化伴随着细胞内ROS的增加,DNA损伤的积累以及p53和p21蛋白的诱导。我们还发现N-乙酰半胱氨酸增加细胞内GSH并防止Gclm(-/-)细胞过早衰老。这些结果表明,GCLM的控制反过来通过GSH控制细胞氧化还原环境的各个方面,对确定细胞的复制能力非常重要。

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