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首页> 外文期刊>Cancer letters >Pre-malignant transformation by senescence evasion is prevented by the PERK and ATF6alpha branches of the Unfolded Protein Response
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Pre-malignant transformation by senescence evasion is prevented by the PERK and ATF6alpha branches of the Unfolded Protein Response

机译:通过展开蛋白质反应的Perk和Atf6Alpha分支预防衰老逃逸的衰老逃逸的预防转化

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摘要

The incidence of carcinomas highly increases with age. However, the initial steps of the age-related molecular carcinogenic processes remain poorly characterized. We previously showed that normal human epidermal keratinocytes spontaneously and systematically escape from senescence to give rise to preneoplastic emerging cells through a process called post-senescence neoplastic emergence (PSNE). To identify molecular pathways involved in the switch from senescence to pre-transformation, we performed Connectivity Map analyses and DAVID functional annotations followed by hierarchical clustering and multidimensional scaling of the gene expression signature of PSNE cells. We identified endoplasmic reticulum stress related pathways as key regulators of PSNE. Invalidation by RNA interference of the UPR sensors PERK, ATF6α, but not IRE1α, delayed the occurrence of senescence when performed in pre-senescent cells, and increased the PSNE frequency when performed in already senescent cells. Conversely, endoplasmic reticulum stress inducers applied to already senescent cells decreased the frequency of PSNE. In conclusion, these results indicate that the activation of the UPR could protect from the early carcinogenic steps by senescence evasion. This opens new avenues to explore therapeutics that could be useful in decreasing the age-associated tumor incidence.
机译:癌症的发生率随着年龄的增长高度增加。然而,与年龄相关的分子致癌过程的初始步骤仍然存在差。我们以前表明,正常人体表皮角质形成细胞自发地和系统地逃离衰老,通过称为衰老后肿瘤出现(PSNE)的过程产生促塑性新出现的细胞。为了识别从衰老中涉及的分子途径从衰老到预转换,我们进行了连接图分析和David功能注释,然后进行了Psne细胞基因表达特征的分层聚类和多维缩放。我们鉴定了内质网应力相关途径作为PSNE的关键调节剂。通过UPR传感器的RNA干扰无效,ATF6α,但不是IS1α,当在衰老细胞中进行时延迟衰老的发生,并且在已经在衰老细胞中进行时增加了PSNE频率。相反,应用于已经衰老细胞的内质网应力诱导剂降低了PSNE的频率。总之,这些结果表明UPR的激活可以通过衰老逃避来保护早期致癌步骤。这开设了新的途径,以探索治疗方法,这对于降低相关的肿瘤发病率。

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