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Regulation of cellular response to oncogenic and oxidative stress by Seladin-1

机译:Seladin-1调节细胞对致癌和氧化应激的反应

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Expression of multiple oncogenes and inactivation of tumour suppressors is required to transform primary mammalian cells into cancer cells(1-3). Activated Ha-RasV12 (Ras) is usually associated with cancer, but it also produces paradoxical premature senescence(4) in primary cells by inducing reactive oxygen species(5) followed by accumulation of tumour suppressors p53 and p16(INK4a) (ref. 4). Here we identify, using a direct genetic screen, Seladin-1 (also known as Dhcr24) as a key mediator of Ras-induced senescence. Following oncogenic and oxidative stress, Seladin-1 binds p53 amino terminus and displaces E3 ubiquitin ligase Mdm2 from p53, thus resulting in p53 accumulation. Additionally, Seladin-1 associates with Mdm2 independently of p53, potentially affecting other Mdm2 targets. Ablation of Seladin-1 causes the bypass of Ras-induced senescence in rodent and human fibroblasts, and allows Ras to transform these cells. Wild-type Seladin-1, but not mutants that disrupt its association with either p53 or Mdm2, suppresses the transformed phenotype. The same mutants are also inactive in directing p53-dependent oxidative stress response. These results show an unanticipated role for Seladin-1, previously implicated in Alzheimer's disease(6) and cholesterol metabolism(7), in integrating cellular response to oncogenic and oxidative stress.
机译:为了将原代哺乳动物细胞转化为癌细胞,需要表达多种癌基因和使肿瘤抑制因子失活(1-3)。活化的Ha-RasV12(Ras)通常与癌症有关,但它也会通过诱导活性氧(5)继而积累抑癌剂p53和p16(INK4a)在原代细胞中产生矛盾的过早衰老(4)(参考文献4) )。在这里,我们使用直接的遗传筛选确定Seladin-1(也称为Dhcr24)作为Ras诱导衰老的关键介质。在致癌和氧化应激后,Seladin-1结合p53氨基末端,并从p53取代E3泛素连接酶Mdm2,从而导致p53积累。此外,Seladin-1独立于p53与Mdm2缔合,可能影响其他Mdm2靶标。 Seladin-1的消融导致Ras诱导的啮齿动物和人类成纤维细胞衰老,并允许Ras转化这些细胞。野生型Seladin-1(但不会破坏与p53或Mdm2的关联的突变体)不会抑制转化的表型。相同的突变体在指导p53依赖性氧化应激反应中也没有活性。这些结果表明,先前参与了阿尔茨海默氏病(6)和胆固醇代谢(7)的Seladin-1在整合细胞对致癌和氧化应激反应中具有意想不到的作用。

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