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Differential regulation of extracellular signal-regulated protein kinase 1 and Jun N-terminal kinase 1 by Ca2+ and protein kinase C in endothelin-stimulated Rat-1 cells

机译:Ca2 +和蛋白激酶C在内皮素刺激的Rat-1细胞中对细胞外信号调节蛋白激酶1和Jun N末端激酶1的差异调节

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pThe extracellular signal-regulated protein kinase (ERK) and Jun N-terminal kinase (JNK) signalling cascades transduce signals from the cell cytoplasm to the nucleus, where they regulate gene expression. The activation of ERK1 by lysophosphatidic acid (LPA) and endothelin 1 (Et-1) was compared in Rat-1 cells. Both stimulated DNA synthesis to a similar degree but, in contrast with LPA, Et-1 did not stimulate sustained ERK1 activation, a signal that is thought to be important for the proliferation of fibroblasts. Et-1, but not LPA, was able to activate JNK1; pharmacological analysis revealed that the same EtsubA/sub receptor mediates DNA synthesis, ERK1 and JNK1 activation. However, activation of JNK1 required higher concentrations of Et-1 than was required for stimulation of ERK1 or DNA synthesis. Signalling to ERK1 and JNK1 was partly inhibited by pertussis toxin, suggesting that both pathways are regulated in part by Gsubi/sub or Gsubo/sub proteins. Activation of JNK1 by Et-1 lagged behind ERK1 activation but was not dependent on it because PD98059, an inhibitor of mitogen-activated protein kinase (or ERK) kinase, was without effect on JNK1 activation. In contrast with recent studies, activation of protein kinase C (PKC) or Casup2+/sup fluxes inhibited activation of JNK1 but not ERK1; furthermore inhibition of PKC or sequestration of Casup2+/sup potentiated JNK1 activation by Et-1 but not by anisomycin, and again had little effect on ERK1 activation. These results demonstrate that the same G-protein-coupled receptor can activate both the ERK and JNK signal pathways but the two kinase cascades seem to be separate, parallel pathways that are differentially regulated by PKC and Casup2+/sup. The results are discussed in terms of the role of ERK and JNK in proliferative signalling./p
机译:>细胞外信号调节蛋白激酶(ERK)和Jun N-末端激酶(JNK)信号级联将信号从细胞质转移到细胞核,在细胞中调节基因表达。比较了大鼠1细胞中溶血磷脂酸(LPA)和内皮素1(Et-1)对ERK1的激活。两者都以相似的程度刺激了DNA的合成,但是与LPA相反,Et-1并未刺激持续的ERK1活化,该信号被认为对成纤维细胞的增殖很重要。 Et-1而非LPA能够激活JNK1;药理分析表明,相同的Et A 受体介导DNA合成,ERK1和JNK1活化。但是,与刺激ERK1或DNA合成相比,激活JNK1需要更高的Et-1浓度。百日咳毒素可部分抑制ERK1和JNK1的信号传导,提示这两种途径均受G i 或G o 蛋白的调节。 Et-1对JNK1的激活滞后于ERK1的激活,但并不依赖于ERK1的激活,因为有丝分裂原激活的蛋白激酶(或ERK)激酶的抑制剂PD98059对JNK1的激活没有影响。与最近的研究相反,蛋白激酶C(PKC)或Ca 2 + 通量的激活抑制了JNK1的激活,但抑制了ERK1的激活。进一步抑制PKC或螯合Ca 2 + 增强了Et-1而不是茴香霉素对JNK1的活化,对ERK1的活化作用很小。这些结果表明,相同的G蛋白偶联受体可以激活ERK和JNK信号通路,但两个激酶级联似乎是独立的平行通路,受PKC和Ca 2 + 的调控。 。讨论了ERK和JNK在增殖信号传导中的作用。

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