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SOCS1 a novel interaction partner of p53 controlling oncogene-induced senescence

机译:SOCS1p53控制的新型交互伙伴 癌基因诱导的衰老

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摘要

Members of the signal transducers and activators of transcription (STATs) family of proteins, which connect cytokine signaling to activation of transcription, are frequently activated in human cancers. Suppressors of cytokine signaling (SOCS) are transcriptional targets of activated STAT proteins that negatively control STAT signaling. SOCS1 expression is silenced in multiple human cancers suggesting a tumor suppressor role for this protein. However, SOCS1 not only regulates STAT signaling but can also localize to the nucleus and directly interact with the p53 tumor suppressor through its central SH2 domain. Furthermore, SOCS1 contributes to p53 activation and phosphorylation on serine 15 by forming a ternary complex with ATM or ATR. Through this mechanism SOCS1 regulates the process of oncogene-induced senescence, which is a very important tumor suppressor response. A mutant SOCS1 lacking the SOCS box cannot interact with ATM/ATR, stimulate p53 or induce the senescence phenotype, suggesting that the SOCS box recruits DNA damage activated kinases to its interaction partners bound to its SH2 domain. Proteomic analysis of SOCS1 interaction partners revealed other potential targets of SOCS1 in the DNA damage response. These newly discovered functions of SOCS1 help to explain the increased susceptibility of Socs1 null mice to develop cancer as well as their propensity to develop autoimmune diseases. Consistently, we found that mice lacking SOCS1 displayed defects in the regulation of p53 target genes including Mdm2, Pmp22, PUMA and Gadd45a. The involvement of SOCS1 in p53 activation and the DNA damage response defines a novel tumor suppressor pathway and intervention point for future cancer therapeutics.
机译:将细胞因子信号传导与转录激活联系起来的蛋白质信号转导子和转录激活子(STATs)家族成员经常在人类癌症中被激活。细胞因子信号转导(SOCS)的抑制剂是激活的STAT蛋白的转录靶标,该蛋白对STAT信号进行负控制。 SOCS1的表达在多种人类癌症中沉默,这表明该蛋白具有抑癌作用。但是,SOCS1不仅调节STAT信号传导,而且还可以定位于细胞核,并通过其中心SH2结构域与p53肿瘤抑制因子直接相互作用。此外,SOCS1通过与ATM或ATR形成三元复合物,促进p53激活和丝氨酸15磷酸化。通过这种机制,SOCS1调节癌基因诱导的衰老过程,这是非常重要的肿瘤抑制反应。缺少SOCS盒的突变SOCS1不能与ATM / ATR相互作用,刺激p53或诱导衰老表型,这表明SOCS盒募集了DNA损伤激活激酶来相互作用 与其SH2域绑定的合作伙伴。 SOCS1相互作用的蛋白质组学分析 合作伙伴揭示了DNA损伤中SOCS1的其他潜在靶标 响应。这些新发现的SOCS1功能有助于解释 增加Socs1无效小鼠发生癌症的易感性 以及他们发展自身免疫性疾病的倾向。一致地,我们 发现缺少SOCS1的小鼠在调节p53方面表现出缺陷 靶基因包括Mdm2,Pmp22,PUMA和Gadd45a。 SOCS1参与p53激活和DNA损伤反应 定义了新的肿瘤抑制途径和未来的干预点 癌症疗法。

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