Krautwald S, Büscher D, Dent P, Ruthenberg K, Baccarini M
Department of Immunobiology, Fraunhofer Institute for Toxicology and Molecular Biology, Hannover, Germany.
Oncogene. 1995 Mar 16;10(6):1187-92.
Many tyrosine kinase growth factor receptors activate the MAP Kinase (MAPK) pathway by stimulating the activity of the RAF kinase. In some, but not all cell types, the expression of activated RAF is sufficient to induce constitutive MAPK activation. In BAC-1.2F5 macrophages the expression of virally activated RAF does not correlate with constitutive MAPK activation; on the contrary, growth factor-mediated stimulation of MAPK activity is suppressed in these cells. Suppression correlates with v-RAF expression, as MAPK activation is normal in a revertant cell line that stopped expressing v-RAF. Inhibition of MAPK activation is associated with lack of ERK-2 tyrosine phosphorylation, and is not due to the suppression of CSF-1-mediated MEK activation. Pretreatment with vanadate restores growth factor-stimulated activation and tyrosine phosphorylation of MAPK in v-RAF-expressing macrophages, indicating the involvement of a tyrosine phosphatase. Interestingly, v-RAF-expressing macrophages contain low constitutive levels of MKP-1 mRNA, an immediate early gene that encodes a MAPK-specific phosphatase and is induced in the parental cell line by CSF-1 treatment. The restoration of MAPK activation by vanadate pretreatment and the presence of MKP-1 mRNA in v-RAF-expressing macrophages raise the intriguing possibility that in macrophages RAF may be feeding back on the MAPK pathway by participating in the control of MKP-1 expression.
许多酪氨酸激酶生长因子受体通过刺激RAF激酶的活性来激活丝裂原活化蛋白激酶(MAPK)途径。在一些但并非所有细胞类型中,活化RAF的表达足以诱导组成型MAPK活化。在BAC-1.2F5巨噬细胞中,病毒活化RAF的表达与组成型MAPK活化不相关;相反,在这些细胞中生长因子介导的MAPK活性刺激受到抑制。这种抑制与v-RAF表达相关,因为在停止表达v-RAF的回复细胞系中MAPK活化是正常的。MAPK活化的抑制与ERK-2酪氨酸磷酸化的缺乏有关,并且不是由于CSF-1介导的MEK活化的抑制。用钒酸盐预处理可恢复v-RAF表达的巨噬细胞中生长因子刺激的MAPK活化和酪氨酸磷酸化,表明有酪氨酸磷酸酶参与。有趣的是,表达v-RAF的巨噬细胞中MKP-1 mRNA的组成型水平较低,MKP-1是一个立即早期基因,编码一种MAPK特异性磷酸酶,并在亲代细胞系中由CSF-1处理诱导产生。钒酸盐预处理对MAPK活化的恢复以及表达v-RAF的巨噬细胞中MKP-1 mRNA的存在,引发了一个有趣的可能性,即在巨噬细胞中RAF可能通过参与MKP-1表达的控制来对MAPK途径进行反馈调节。