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Mdm2与肿瘤发生:不断演变的理论及未解之谜

Mdm2 and tumorigenesis: evolving theories and unsolved mysteries.

作者信息

Senturk Emir, Manfredi James J

机构信息

Department of Oncological Sciences, Mount Sinai School of Medicine, New York, NY, USA.

出版信息

Genes Cancer. 2012 Mar;3(3-4):192-8. doi: 10.1177/1947601912457368.

Abstract

Since the discovery of Mdm2, the contribution of this RING E3 ubiquitin ligase to the pathobiology of cancer has focused almost exclusively on its role as a negative regulator of the p53 tumor suppressor. Under normal conditions, Mdm2 promotes the ubiquitin- and proteasome-dependent degradation of p53. Levels of p53 are thus kept sufficiently low to allow for cell survival and cell cycle progression. In the context of such insults as DNA damage or ribosomal stress, however, the Mdm2-p53 interaction is disrupted and p53 is stabilized. The myriad intracellular outcomes of p53 activation together comprise a robust program of tumor suppression that is short-circuited in cancer. Over half of all human malignancies are known to have lost p53 expression or sustained p53 mutation, whereas many of the remaining tumors harbor other alterations in key mediators of p53 activity that include overexpression of Mdm2. Therapies targeting the interaction between Mdm2 and p53 represent a possible means of pharmacologically reactivating the p53 pathway in this latter setting. The degree of overlap across the biological consequences of either p53 loss or Mdm2 overexpression, however, has not been thoroughly explored. Indeed, a body of evidence for several p53-independent functions of Mdm2 suggests that disrupting the Mdm2-p53 interaction may fail to address the full spectrum of oncogenic effects specific to tumors that overexpress Mdm2.

摘要

自Mdm2被发现以来,这种RING E3泛素连接酶对癌症病理生物学的贡献几乎完全集中在其作为p53肿瘤抑制因子负调节因子的作用上。在正常情况下,Mdm2促进p53的泛素和蛋白酶体依赖性降解。因此,p53的水平保持在足够低的水平,以允许细胞存活和细胞周期进展。然而,在DNA损伤或核糖体应激等损伤情况下,Mdm2-p53相互作用被破坏,p53被稳定。p53激活的众多细胞内结果共同构成了一个强大的肿瘤抑制程序,而在癌症中这个程序被短路。已知超过一半的人类恶性肿瘤失去了p53表达或持续存在p53突变,而其余许多肿瘤在p53活性的关键介质中存在其他改变,包括Mdm2的过表达。针对Mdm2和p53之间相互作用的疗法代表了在后者情况下通过药理学重新激活p53途径的一种可能手段。然而,p53缺失或Mdm2过表达的生物学后果之间的重叠程度尚未得到充分探索。事实上,大量证据表明Mdm2具有多种不依赖p53的功能,这表明破坏Mdm2-p53相互作用可能无法解决过表达Mdm2的肿瘤特有的全部致癌作用。

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