Ellinger-Ziegelbauer H, Brown K, Kelly K, Siebenlist U
Laboratory of Immunoregulation, NIAID, National Institutes of Health, Bethesda, Maryland 20892-1876, USA.
J Biol Chem. 1997 Jan 31;272(5):2668-74. doi: 10.1074/jbc.272.5.2668.
The extracellular signal-regulated kinase (ERK) pathway, the stress-activated protein kinase (SAPK) pathway, and the p38 pathway are three major mitogen-activated protein kinase (MAPK) cascades known to participate in the regulation of cellular responses to a variety of extracellular signals. Upstream regulatory components of these kinase cascades, the MAPK/ERK kinase kinases (MEKK), have been described in several systems. We have isolated a cDNA encoding human MEKK3. Transfected MEKK3 has the ability to activate both SAPK and ERK pathways, but does not induce p38 activity, in agreement with a previous report on murine MEKK3 (Blank, J. L., Gerwins, P., Elliott, E. M., Sather, S., and Johnson, G. L. (1996) J. Biol. Chem. 271, 5361-5368). We now demonstrate that MEKK3 activates SEK and MEK, the known kinases targeting SAPK and ERK, respectively. Utilizing an estrogen ligand-activated MEKK3 derivative, we furthermore demonstrate that MEKK3 regulates the SAPK and the ERK pathway directly. Consistent with the fact that several SAPK-inducing agents activate the transcription factor NFkappaB, we now show that MEKK3 also enhances transcription from an NFkappaB-dependent reporter gene in cotransfection assays. The ability of MEKK3 to simultaneously activate the SAPK and ERK pathways is remarkable, given that they have divergent roles in cellular homeostasis.
细胞外信号调节激酶(ERK)通路、应激激活蛋白激酶(SAPK)通路和p38通路是已知参与调节细胞对多种细胞外信号反应的三个主要的丝裂原活化蛋白激酶(MAPK)级联反应。这些激酶级联反应的上游调节成分,即MAPK/ERK激酶激酶(MEKK),已在多个系统中得到描述。我们分离出了一个编码人MEKK3的cDNA。转染的MEKK3能够激活SAPK和ERK通路,但不诱导p38活性,这与之前关于小鼠MEKK3的报道一致(Blank, J. L., Gerwins, P., Elliott, E. M., Sather, S., and Johnson, G. L. (1996) J. Biol. Chem. 271, 5361-5368)。我们现在证明MEKK3分别激活了SEK和MEK,它们是已知的分别靶向SAPK和ERK的激酶。利用雌激素配体激活的MEKK3衍生物,我们进一步证明MEKK3直接调节SAPK和ERK通路。鉴于SAPK和ERK在细胞内稳态中具有不同的作用,MEKK3能够同时激活这两条通路的能力是非同寻常的。此外,鉴于几种诱导SAPK的试剂可激活转录因子NFκB,我们现在表明在共转染实验中MEKK3也增强了来自NFκB依赖性报告基因的转录。