【2h】

A new

机译:一个新的

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摘要

Cell growth demands new protein synthesis, which requires nucleolar ribosomal functions. Ribosome biogenesis consumes a large proportion of the cell's resources and energy, and so is tightly regulated through an intricate signaling network to guarantee fidelity. Thus, events that impair ribosome biogenesis cause nucleolar stress. In response to this stress, several nucleolar ribosomal proteins (RPs) translocate to the nucleoplasm and bind to MDM2. MDM2‐mediated ubiquitination and degradation of the tumor suppressor p53 is then blocked, resulting in p53 accumulation and the induction of p53‐dependent cell cycle arrest and apoptosis. Nucleolar stress is therefore a quality control surveillance mechanism that monitors the synthesis and assembly of the rRNA and protein components of ribosomes. Although nucleolar stress signaling pathways have been extensively analyzed, critical questions remain about their regulatory mechanisms. For example, how do RPs translocate from the nucleolus to the nucleoplasm to exert their functions, and do these p53‐regulating RPs influence the prognosis of human cancer patients? Our laboratory recently identified the nucleolar protein PICT1 as a novel regulator of nucleolar stress. PICT1 sequesters the ribosomal protein RPL11 in the nucleolus, preventing it from binding to MDM2. MDM2 is then free to degrade p53, favoring tumor cell growth. Accordingly, the level of PICT1 in a tumor is becoming a useful prognostic marker for human cancers. This review summarizes the evidence that links nucleolar stress to tumorigenesis, and casts PICT1 as an oncogenic player in human cancer biology. (Cancer Sci 2012; 103: 632–637)
机译:细胞生长需要新的蛋白质合成,这需要核仁核糖体功能。核糖体生物发生消耗大部分细胞的资源和能量,因此通过复杂的信号网络紧密调节,以保证保真度。因此,损害核糖体生物发生的事件导致核仁应激。响应于这种应力,几种核仁核糖体蛋白(RPS)易于核状物挥发并结合MDM2。然后封闭MDM2介导的肿瘤抑制P53的泛素化和降解,导致P53积累和P53依赖性细胞周期停滞和凋亡的诱导。因此,核仁应力是一种质量控制监测机制,其监测核糖体的RRNA和蛋白质组分的合成和组装。尽管核仁应激信号通路途径已经广泛分析,但仍然存在危急问题仍然是其监管机制。例如,RPS如何从核聚核桃转移到核状上以施加其功能,并做这些P53调节RPS影响人癌症患者的预后?我们的实验室最近鉴定了核仁蛋白照片1作为核仁应激的新型调节剂。 Pict1螯合在核仁中的核糖体蛋白RPL11,防止其与MDM2结合。然后将MDM2自由降解P53,倾向于肿瘤细胞生长。因此,肿瘤中的PICT1水平成为人类癌症的有用预后标志物。本综述总结了将核仁应激与肿瘤引发的证据总结说明,并作为人类癌症生物学中的致癌患者施放1件。 (癌症SCI 2012; 103:632-637)

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