Qiu W, Zhuang S, von Lintig F C, Boss G R, Pilz R B
Department of Medicine and Cancer Center, University of California, San Diego, La Jolla, California 92093-0652, USA.
J Biol Chem. 2000 Oct 13;275(41):31921-9. doi: 10.1074/jbc.M003327200.
Cyclic AMP can either activate or inhibit the mitogen-activated protein kinase (MAPK) pathway in different cell types; MAPK activation has been observed in B-Raf-expressing cells and has been attributed to Rap1 activation with subsequent B-Raf activation, whereas MAPK inhibition has been observed in cells lacking B-Raf and has been attributed to cAMP-dependent protein kinase (protein kinase A)-mediated phosphorylation and inhibition of Raf-1 kinase. We found that cAMP stimulated MAPK activity in CHO-K1 and PC12 cells but inhibited MAPK activity in C6 and NB2A cells. In all four cell types, cAMP activated Rap1, and the 95- and 68-kDa isoforms of B-Raf were expressed. cAMP activation or inhibition of MAPK correlated with activation or inhibition of endogenous and transfected B-Raf kinase. Although all cell types expressed similar amounts of 14-3-3 proteins, approximately 5-fold less 14-3-3 was associated with B-Raf in cells in which cAMP was inhibitory than in cells in which cAMP was stimulatory. We found that the cell type-specific inhibition of B-Raf could be completely prevented by overexpression of 14-3-3 isoforms, whereas expression of a dominant negative 14-3-3 mutant resulted in partial loss of B-Raf activity. Our data suggest that 14-3-3 bound to B-Raf protects the enzyme from protein kinase A-mediated inhibition; the amount of 14-3-3 associated with B-Raf may explain the tissue-specific effects of cAMP on B-Raf kinase activity.
环磷酸腺苷(cAMP)在不同细胞类型中既可以激活也可以抑制丝裂原活化蛋白激酶(MAPK)途径;在表达B-Raf的细胞中观察到MAPK激活,这归因于Rap1激活及随后的B-Raf激活,而在缺乏B-Raf的细胞中观察到MAPK抑制,这归因于cAMP依赖性蛋白激酶(蛋白激酶A)介导的Raf-1激酶磷酸化和抑制。我们发现,cAMP刺激了CHO-K1和PC12细胞中的MAPK活性,但抑制了C6和NB2A细胞中的MAPK活性。在所有这四种细胞类型中,cAMP激活了Rap1,并且表达了95 kDa和68 kDa的B-Raf亚型。cAMP对MAPK的激活或抑制与内源性和转染的B-Raf激酶的激活或抑制相关。尽管所有细胞类型表达的14-3-3蛋白量相似,但在cAMP具有抑制作用的细胞中,与B-Raf相关的14-3-3比在cAMP具有刺激作用的细胞中少约5倍。我们发现,14-3-3亚型的过表达可以完全阻止细胞类型特异性的B-Raf抑制,而显性负性14-3-3突变体的表达导致B-Raf活性部分丧失。我们的数据表明,与B-Raf结合的14-3-3保护该酶免受蛋白激酶A介导的抑制;与B-Raf相关的14-3-3量可能解释了cAMP对B-Raf激酶活性的组织特异性作用。