Hayashi Masaaki, Lee Jiing-Dwan
Department of Immunology, The Scripps Research Institute, La Jolla, CA 92037, USA.
J Mol Med (Berl). 2004 Dec;82(12):800-8. doi: 10.1007/s00109-004-0602-8. Epub 2004 Oct 28.
Mitogen-activated protein (MAP) kinase cascades play a central role in mediating extracellular stimuli-induced intracellular signaling during cell activation. The fourth and least studied mammalian MAP kinase pathway, big MAP kinase 1 (BMK1), also known as extracellular signal regulated kinase 5 (ERK5), is activated in response to growth factors and stress. Activation of this signaling pathway has been implicated not only in physiological functions such as cell survival, proliferation and differentiation but also in pathological processes such as carcinogenesis, cardiac hypertrophy and atherosclerosis. In recent years a series of gene-targeted mice lacking components within the BMK1 cascade have been generated, which have enabled us to investigate the role of the BMK1 pathway within different tissues. Analyses of these knockout mice have led to major discoveries in the role of BMK1 signaling in angiogenesis and in cardiac development. Moreover, studies using conditional BMK1 knockout mice, which circumvent the early embryonic lethality of BMK1 knockouts, have unveiled the importance of BMK1 in endothelial survival and maintenance of vascular integrity during adulthood. Here we summarize current understanding of the function of BMK1, as well as include new data generated from a series of tissue-specific BMK1 knockout mice in an attempt to dissect the role of the BMK1 pathway in various cell types in animals.
丝裂原活化蛋白(MAP)激酶级联反应在细胞激活过程中介导细胞外刺激诱导的细胞内信号传导中起着核心作用。哺乳动物中第四条且研究最少的MAP激酶途径,大MAP激酶1(BMK1),也称为细胞外信号调节激酶5(ERK5),在对生长因子和应激的反应中被激活。该信号通路的激活不仅涉及细胞存活、增殖和分化等生理功能,还涉及致癌作用、心脏肥大和动脉粥样硬化等病理过程。近年来,已经产生了一系列在BMK1级联反应中缺乏组件的基因靶向小鼠,这使我们能够研究BMK1途径在不同组织中的作用。对这些基因敲除小鼠的分析在BMK1信号传导在血管生成和心脏发育中的作用方面带来了重大发现。此外,使用条件性BMK1基因敲除小鼠的研究规避了BMK1基因敲除导致的早期胚胎致死性,揭示了BMK1在成年期内皮细胞存活和维持血管完整性中的重要性。在这里,我们总结了目前对BMK1功能的理解,并纳入了一系列组织特异性BMK1基因敲除小鼠产生的新数据,试图剖析BMK1途径在动物各种细胞类型中的作用。