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首页> 外文期刊>Molecular and Cellular Biology >YB-1 Is Important for Late-Stage Embryonic Development, Optimal Cellular Stress Responses, and the Prevention of Premature Senescence
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YB-1 Is Important for Late-Stage Embryonic Development, Optimal Cellular Stress Responses, and the Prevention of Premature Senescence

机译:YB-1对于后期胚胎发育,最佳细胞应激反应以及预防过早衰老很重要

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Proteins containing “cold shock” domains belong to the most evolutionarily conserved family of nucleic acid-binding proteins known among bacteria, plants, and animals. One of these proteins, YB-1, is widely expressed throughout development and has been implicated as a cell survival factor that regulates the transcription and/or translation of many cellular growth and death-related genes. For these reasons, YB-1 deficiency has been predicted to be incompatible with cell survival. However, the majority of YB-1?/? embryos develop normally up to embryonic day 13.5 (E13.5). After E13.5, YB-1?/? embryos exhibit severe growth retardation and progressive mortality, revealing a nonredundant role of YB-1 in late embryonic development. Fibroblasts derived from YB-1?/? embryos displayed a normal rate of protein synthesis and minimal alterations in the transcriptome and proteome but demonstrated reduced abilities to respond to oxidative, genotoxic, and oncogene-induced stresses. YB-1?/? cells under oxidative stress expressed high levels of the G1-specific CDK inhibitors p16Ink4a and p21Cip1 and senesced prematurely; this defect was corrected by knocking down CDK inhibitor levels with specific small interfering RNAs. These data suggest that YB-1 normally represses the transcription of CDK inhibitors, making it an important component of the cellular stress response signaling pathway.
机译:包含“冷休克”结构域的蛋白质属于细菌,植物和动物中已知进化最保守的核酸结合蛋白家族。这些蛋白质之一,YB-1,在整个发育过程中得到广泛表达,并被认为是调节许多细胞生长和死亡相关基因的转录和/或翻译的细胞存活因子。由于这些原因,据预测YB-1缺乏与细胞存活不相容。但是,大多数 YB-1 ?/?胚胎正常发育直至胚胎第13.5天(E13.5)。在E13.5之后, YB-1 ?/?胚胎表现出严重的生长迟缓和进行性死亡,揭示了YB-1在晚期胚胎发育中的非冗余作用。从 YB-1 ?/?胚胎衍生的成纤维细胞显示出正常的蛋白质合成速度,转录组和蛋白质组的变化最小,但是对氧化,遗传毒性,和癌基因诱发的压力。 YB-1 ?/?细胞在氧化应激下表达高水平的G 1 特异性CDK抑制剂p16Ink4a和p21Cip1,并过早衰老。通过用特定的小干扰RNA敲低CDK抑制剂水平可纠正此缺陷。这些数据表明,YB-1通常会抑制CDK抑制剂的转录,使其成为细胞应激反应信号通路的重要组成部分。

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