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Pan-senescence transcriptome analysis identified RRAD as a marker and negative regulator of cellular senescence

机译:泛衰老转录组分析鉴定为rrad作为细胞衰老的标记和负调节剂

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摘要

Cellular senescence, an irreversible proliferative arrest, functions in tissue remodeling during development and is implicated in multiple aging-associated diseases. While senescent cells often manifest an array of senescence-associated phenotypes, such as cell cycle arrest, altered heterochromatin architecture, reprogrammed metabolism and senescence-associated secretory phenotype (SASP), the identification of senescence cells has been hindered by lack of specific and universal biomarkers. To systematically identify universal biomarkers of cellular senescence, we integrated multiple transcriptome data sets of senescent cells obtained through different in vitro manipulation modes as well as age-related gene expression data of human tissues. Our analysis showed that RRAD (Ras-related associated with diabetes) expression is up-regulated in all the manipulation modes and increases with age in human skin and adipose tissues. The elevated RRAD expression was then confirmed in senescent human fibroblasts that were induced by Ras, H2O2, ionizing radiation, hydroxyurea, etoposide and replicative passage, respectively. Further functional study suggests that RRAD up-regulation acts as a negative feedback mechanism to counter cellular senescence by reducing the level of reactive oxygen species. Finally, we found both p53 and NF-kappa B bind to RRAD genomic regions and modulate RRAD transcription. This study established RRAD to be a biomarker as well as a novel negative regulator of cellular senescence.
机译:细胞衰老,不可逆的增殖性捕获,在发育过程中的组织重塑中的功能,并涉及多种衰老疾病。虽然衰老细胞常用于细胞周期停滞,改变的异粒素架构,重新编程的代谢和衰老相关的分泌表型(SASP),但缺乏特异性和普通生物标志物的鉴定,而衰老相关表型。为了系统地鉴定细胞衰老的通用生物标志物,我们通过不同的体外操纵模式和人组织的年龄相关基因表达数据综合了多种转录组数据组的衰老细胞。我们的分析表明,在所有操纵模式中,RRAD(与糖尿病相关的RAS相关)表达上调,并且随着人体皮肤和脂肪组织的年龄增加。然后在衰老人成纤维细胞中证实升高的RRAD表达,分别由RA,H 2 O 2,电离辐射,羟基脲,依托吡脲和复制通道诱导。进一步的功能研究表明,RRAD上调作为通过降低反应性氧物种水平来对抗细胞衰老的负反馈机制。最后,我们发现P53和NF-Kappa B都与RRAD基因组区域结合并调节RRAD转录。本研究建立了RRAD成为生物标志物以及细胞衰老的新型负调节因子。

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    Shandong Univ Qilu Hosp Dept Clin Lab Jinan Shandong Peoples R China;

    Univ Hlth Network Princess Margaret Canc Ctr Toronto ON Canada;

    Shandong Univ Sch Basic Med Sci Inst Mol Med &

    Genet Key Lab Expt Teratol Minist Educ Jinan;

    Shandong Univ Sch Basic Med Sci Inst Mol Med &

    Genet Key Lab Expt Teratol Minist Educ Jinan;

    Shandong Univ Sch Basic Med Sci Inst Mol Med &

    Genet Key Lab Expt Teratol Minist Educ Jinan;

    Shandong Univ Sch Basic Med Sci Inst Mol Med &

    Genet Key Lab Expt Teratol Minist Educ Jinan;

    Shandong Univ Sch Basic Med Sci Inst Mol Med &

    Genet Key Lab Expt Teratol Minist Educ Jinan;

    Shandong Univ Sch Basic Med Sci Inst Mol Med &

    Genet Key Lab Expt Teratol Minist Educ Jinan;

    Shandong Univ Sch Basic Med Sci Inst Mol Med &

    Genet Key Lab Expt Teratol Minist Educ Jinan;

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  • 正文语种 eng
  • 中图分类 生物化学;
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