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依赖LKB1的信号通路。

LKB1-dependent signaling pathways.

作者信息

Alessi Dario R, Sakamoto Kei, Bayascas Jose R

机构信息

Medical Research Council, Protein Phosphorylation Unit, School of Life Sciences, University of Dundee, Dundee DD1 5EH, Scotland.

出版信息

Annu Rev Biochem. 2006;75:137-63. doi: 10.1146/annurev.biochem.75.103004.142702.

Abstract

This review focuses on remarkable recent findings concerning the mechanism by which the LKB1 protein kinase that is mutated in Peutz-Jeghers cancer syndrome operates as a tumor suppressor. We discuss evidence that the cellular localization and activity of LKB1 is controlled through its interaction with a catalytically inactive protein resembling a protein kinase, termed STRAD, and an armadillo repeat-containing protein, named mouse protein 25 (MO25). The data suggest that LKB1 functions as a tumor suppressor by not only inhibiting proliferation, but also by exerting profound effects on cell polarity and, most unexpectedly, on the ability of a cell to detect and respond to low cellular energy levels. Genetic and biochemical findings indicate that LKB1 exerts its effects by phosphorylating and activating 14 protein kinases, all related to the AMP-activated protein kinase. The work described in this review shows how a study of an obscure cancer syndrome can uncover new and important regulatory pathways, relevant to the understanding of multiple human diseases.

摘要

本综述着重介绍了近期有关在黑斑息肉综合征中发生突变的LKB1蛋白激酶作为肿瘤抑制因子发挥作用的机制的显著研究发现。我们讨论了相关证据,即LKB1的细胞定位和活性是通过其与一种类似于蛋白激酶但催化无活性的蛋白质(称为STRAD)以及一种含有犰狳重复序列的蛋白质(名为小鼠蛋白25,即MO25)相互作用来控制的。数据表明,LKB1作为肿瘤抑制因子发挥作用,不仅通过抑制细胞增殖,还通过对细胞极性产生深远影响,而且最出人意料的是,对细胞检测和响应低细胞能量水平的能力产生影响。遗传和生化研究结果表明,LKB1通过磷酸化并激活14种蛋白激酶来发挥其作用,所有这些激酶都与AMP激活的蛋白激酶相关。本综述中描述的研究工作展示了对一种罕见癌症综合征的研究如何能够揭示与理解多种人类疾病相关的新的重要调控途径。

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