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磷酸肌醇3激酶作为癌症治疗的药物靶点

Phosphoinositide 3-kinases as drug targets in cancer.

作者信息

Stephens Len, Williams Roger, Hawkins Phillip

机构信息

The Babraham Institute, Babraham, Cambridge CB2 4AT, UK.

出版信息

Curr Opin Pharmacol. 2005 Aug;5(4):357-65. doi: 10.1016/j.coph.2005.03.002.

Abstract

The past two years have seen phosphoinositide 3-kinases (PI3Ks) move from being seen as potential targets for chemotherapeutics, to one of them--PI3Kalpha--being generally accepted as validated. A huge amount of work indicated that there was an important role for PI3Ks in tumour progression and, particularly, in the control of proliferation, survival and regulation of the potential oncogene PKB. These links were further strengthened by studies showing that the tumour suppressor, PTEN, is an antagonist of PI3K signalling and that somatic mutations of p110alpha (PIK3CA) are present in a variety of cancers. We now know that three of the most frequent mutations in cancer constitutively activate PI3Kalpha and, when expressed in cells, they drive the oncogenic transformation and chronic activation of downstream signalling by molecules such as PKB, S6K and 4E bp1 that is commonly seen in cancer cells. A large body of research into the cellular roles of PI3Ks has also further validated them as potential foci for cancer chemotherapy, with several additional PI3K effectors controlling cell proliferation and apoptosis having been described. Furthermore, molecules important to the processes of metastasis, development of multi-drug resistance, the 'Warburg effect', angiogenesis and cell growth (i.e. distinct to proliferation) have been found to depend upon, or to be driven by, PI3K activity.

摘要

在过去两年中,磷酸肌醇3激酶(PI3Ks)已从被视为化疗潜在靶点,发展到其中一种——PI3Kα——被普遍认为是经过验证的靶点。大量研究表明,PI3Ks在肿瘤进展中发挥重要作用,尤其是在控制增殖、存活以及调控潜在致癌基因蛋白激酶B(PKB)方面。研究显示肿瘤抑制因子PTEN是PI3K信号传导的拮抗剂,并且p110α(PIK3CA)的体细胞突变存在于多种癌症中,这些研究进一步强化了上述联系。我们现在知道,癌症中最常见的三种突变会组成性激活PI3Kα,当在细胞中表达时,它们会驱动致癌转化以及癌细胞中常见的下游信号分子如PKB、S6K和4E BP1的慢性激活。大量关于PI3Ks细胞作用的研究也进一步证实它们是癌症化疗的潜在靶点,已有多项研究描述了其他几种PI3K效应器对细胞增殖和凋亡的控制。此外,已发现对转移、多药耐药性发展、“瓦伯格效应”、血管生成和细胞生长(即不同于增殖)等过程至关重要的分子依赖于PI3K活性,或由其驱动。

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