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丝裂原活化蛋白激酶激酶激酶(MAP3K)在发育过程中作为细胞命运的核心调节因子。

MAP3Ks as central regulators of cell fate during development.

作者信息

Craig Evisabel A, Stevens Mark V, Vaillancourt Richard R, Camenisch Todd D

机构信息

Department of Pharmacology and Toxicology, College of Pharmacy, University of Arizona, Tucson, Arizona, USA.

出版信息

Dev Dyn. 2008 Nov;237(11):3102-14. doi: 10.1002/dvdy.21750.

Abstract

The cytoplasmic serine/threonine kinases transduce extracellular signals into regulatory events that impact cellular responses. The induction of one kinase triggers the activation of several downstream kinases, leading to the regulation of transcription factors to affect gene function. This arrangement allows for the kinase cascade to be amplified, and integrated according to the cellular context. An upstream mitogen or growth factor signal initiates a module of three kinases: a mitogen-activated protein (MAP) kinase kinase kinase (MAPKKK; e.g., Raf) that phosphorylates and activates a MAP kinase kinase (MAPKK; e.g., MEK) and finally activation of MAP kinase (MAPK; e.g., ERK). Thus, this MAP3K-MAP2K-MAPK module represents critical effectors that regulate extracellular stimuli into cellular responses, such as differentiation, proliferation, and apoptosis all of which function during development. There are 21 characterized MAP3Ks that activate known MAP2Ks, and they function in many aspects of developmental biology. This review summarizes known transduction routes linked to each MAP3K and highlights mouse models that provide clues to their physiological functions. This perspective reveals that some of these MAP3K effectors may have redundant functions, and also serve as unique nexus depending on the context of the signaling pathway.

摘要

细胞质丝氨酸/苏氨酸激酶将细胞外信号转导为影响细胞反应的调节事件。一种激酶的诱导会触发几种下游激酶的激活,从而导致转录因子的调节以影响基因功能。这种排列方式使得激酶级联反应得以放大,并根据细胞环境进行整合。上游的有丝分裂原或生长因子信号启动一个由三种激酶组成的模块:一种有丝分裂原激活蛋白(MAP)激酶激酶激酶(MAPKKK;例如,Raf),它磷酸化并激活MAP激酶激酶(MAPKK;例如,MEK),最终激活MAP激酶(MAPK;例如,ERK)。因此,这个MAP3K-MAP2K-MAPK模块代表了关键的效应器,它们将细胞外刺激调节为细胞反应,如分化、增殖和凋亡,所有这些在发育过程中都发挥作用。有21种已被鉴定的MAP3K可激活已知的MAP2K,它们在发育生物学的许多方面发挥作用。本综述总结了与每种MAP3K相关的已知转导途径,并重点介绍了为其生理功能提供线索的小鼠模型。这一观点表明,这些MAP3K效应器中的一些可能具有冗余功能,并且根据信号通路的背景也可作为独特的连接点。

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