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AMPK及相关激酶促进癌症作用的证据。

Evidence of cancer-promoting roles for AMPK and related kinases.

作者信息

Monteverde Tiziana, Muthalagu Nathiya, Port Jennifer, Murphy Daniel J

机构信息

Institute of Cancer Sciences, University of Glasgow, UK.

CRUK Beatson Institute, Glasgow, UK.

出版信息

FEBS J. 2015 Dec;282(24):4658-71. doi: 10.1111/febs.13534. Epub 2015 Oct 19.

DOI:10.1111/febs.13534
PMID:26426570
Abstract

The discovery that the 5'AMP-activated protein kinase (AMPK) serves to link the tumour suppressors LKB1 and the tuberous sclerosis complex and functions to slow macromolecular synthesis through attenuation of the mechanistic target of rapamycin complex 1 revealed a role for AMPK in tumour suppression. On the other hand, the well-recognized role of AMPK in maintaining ATP homeostasis, through suppression of anabolism and promotion of catabolism, as well as the role of AMPK in neutralizing reactive oxygen species, via maintenance of NADPH-dependent reductive capacity, point to tumour-protective roles in the context of metabolic stress, which is a key feature of many solid tumours. A growing number of studies thus suggest a duality of functions for AMPK that are either pro- or anti-cancer, depending upon context. Importantly, AMPK is composed of three subunits, and multiple isoforms exist for all three, allowing for different permutations to assemble and the potential for specific AMPK complexes to regulate distinct cellular processes. Moreover, certain subunits of the AMPK complex are frequently overexpressed in a spectrum of human cancer types, suggesting an outright oncogenic function for specific AMPK complexes. Adding complexity to this picture, the catalytic AMPK alpha subunits belong to a family of 14 kinases that can all be activated by LKB1 and studies are beginning to reveal a similar duality of roles in cancer for other members of the AMPK-related kinase family.

摘要

5'AMP 激活的蛋白激酶(AMPK)可连接肿瘤抑制因子 LKB1 和结节性硬化复合物,并通过减弱雷帕霉素复合物 1 的机制靶点来减缓大分子合成,这一发现揭示了 AMPK 在肿瘤抑制中的作用。另一方面,AMPK 通过抑制合成代谢和促进分解代谢来维持 ATP 稳态,以及通过维持 NADPH 依赖性还原能力来中和活性氧,这些作用表明在代谢应激(这是许多实体瘤的关键特征)的背景下,AMPK 具有肿瘤保护作用。因此,越来越多的研究表明,AMPK 的功能具有双重性,根据具体情况,它既可能具有抗癌作用,也可能具有促癌作用。重要的是,AMPK 由三个亚基组成,并且所有三个亚基都存在多种亚型,这使得不同的排列组合得以组装,特定的 AMPK 复合物有可能调节不同的细胞过程。此外,AMPK 复合物的某些亚基在一系列人类癌症类型中经常过度表达,这表明特定的 AMPK 复合物具有直接的致癌功能。使情况更加复杂的是,催化性的 AMPKα亚基属于一个由 14 种激酶组成的家族,所有这些激酶都可以被 LKB1 激活,并且研究开始揭示 AMPK 相关激酶家族的其他成员在癌症中也具有类似的双重作用。

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