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S100A13 promotes senescence-associated secretory phenotype and cellular senescence via modulation of non-classical secretion of IL-1α

机译:S100A13通过调节IL-1α的非经典分泌促进衰老相关的分泌表型和细胞衰老。

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摘要

Senescent cells display the senescence-associated secretory phenotype (SASP) which plays important roles in cancer, aging, etc. Cell surface-bound IL-1α is a crucial SASP factor and acts as an upstream regulator to induce NF-κB activity and subsequent SASP genes transcription. IL-1α exports to cell surface via S100A13 protein-dependent non-classical secretory pathway. However, the status of this secretory pathway during cellular senescence and its role in cellular senescence remain unknown. Here, we show that S100A13 is up-regulated in various types of cellular senescence. S100A13 overexpression increases cell surface-associated IL-1α level, NF-κB activity and subsequent multiple SASP genes induction, whereas S100A13 knockdown has an opposite role. We also exhibit that Cu2+ level is elevated during cellular senescence. Lowering Cu2+ level decreases cell surface-bound IL-1α level, NF-κB activity and SASP production. Moreover, S100A13 overexpression promotes oncogene Ras-induced cell senescence (Ras OIS), Doxorubicin-induced cancer cell senescence (TIS) and replicative senescence, while impairment of non-classical secretory pathway of IL-1α delays cellular senescence. In addition, intervention of S100A13 affects multiple SASP and cellular senescence mediators including p38, γ-H2AX, and mTORC1. Taken together, our findings unveil a critical role of the non-classical secretory pathway of IL-1α in cellular senescence and SASP regulation.
机译:衰老细胞显示出与衰老相关的分泌表型(SASP),它在癌症,衰老等过程中起着重要作用。细胞表面结合的IL-1α是至关重要的SASP因子,并充当上游调节剂,以诱导NF-κB活性和随后的SASP。基因转录。 IL-1α通过S100A13蛋白依赖性非经典分泌途径输出到细胞表面。但是,该分泌途径在细胞衰老过程中的状态及其在细胞衰老中的作用仍然未知。在这里,我们显示S100A13在各种类型的细胞衰老中被上调。 S100A13的过表达增加了细胞表面相关的IL-1α水平,NF-κB活性以及随后的多个SASP基因的诱导,而S100A13的抑制则起相反的作用。我们还表明,细胞衰老过程中Cu 2 + 的水平升高。降低Cu 2 + 水平可降低细胞表面结合的IL-1α水平,NF-κB活性和SASP产生。此外,S100A13的过表达促进癌基因Ras诱导的细胞衰老(Ras OIS),阿霉素诱导的癌细胞衰老(TIS)和复制性衰老,而IL-1α的非经典分泌途径受损会延迟细胞衰老。此外,S100A13的干预会影响多种SASP和细胞衰老介体,包括p38,γ-H2AX和mTORC1。综上所述,我们的发现揭示了IL-1α的非经典分泌途径在细胞衰老和SASP调控中的关键作用。

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