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Interplay between Selenium Levels Selenoprotein Expression and Replicative Senescence in WI-38 Human Fibroblasts

机译:WI-38人成纤维细胞中硒水平硒蛋白表达和复制衰老之间的相互作用

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摘要

Selenium is an essential trace element, which is incorporated as selenocysteine into at least 25 selenoproteins using a unique translational UGA-recoding mechanism. Selenoproteins are important enzymes involved in antioxidant defense, redox homeostasis, and redox signaling pathways. Selenium levels decline during aging, and its deficiency is associated with a marked increase in mortality for people over 60 years of age. Here, we investigate the relationship between selenium levels in the culture medium, selenoprotein expression, and replicative life span of human embryonic lung fibroblast WI-38 cells. Selenium levels regulate the entry into replicative senescence and modify the cellular markers characteristic for senescent cells. Whereas selenium supplementation extends the number of population doublings, its deficiency impairs the proliferative capacity of WI-38 cells. We observe that the expression of several selenoproteins involved in antioxidant defense is specifically affected in response to cellular senescence. Their expression is selectively controlled by the modulation of mRNA levels and translational recoding efficiencies. Our data provide novel mechanistic insights into how selenium impacts the replicative life span of mammalian cells by identifying several selenoproteins as new targets of senescence.
机译:硒是必需的微量元素,它利用独特的翻译UGA编码机制作为硒代半胱氨酸掺入至少25种硒蛋白中。硒蛋白是参与抗氧化防御,氧化还原稳态和氧化还原信号通路的重要酶。硒在衰老过程中会下降,其缺乏与60岁以上人群的死亡率显着增加有关。在这里,我们调查培养基中硒水平,硒蛋白表达和人类胚胎肺成纤维细胞WI-38细胞复制寿命之间的关系。硒水平调节进入复制性衰老的过程,并修饰衰老细胞的细胞标志物特征。补充硒会增加种群数量增加一倍,但缺乏会损害WI-38细胞的增殖能力。我们观察到,参与抗氧化防御的几种硒蛋白的表达在细胞衰老反应中受到特别影响。它们的表达通过mRNA水平的调节和翻译编码效率来选择性地控制。我们的数据通过鉴定几种硒蛋白作为衰老的新靶标,对硒如何影响哺乳动物细胞的复制寿命提供了新颖的机理见解。

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