Garcia J, de Gunzburg J, Eychène A, Gisselbrecht S, Porteu F
Institut National de la Santé et de la Recherche Médicale U363, Institut Cochin de Génétique Moléculaire, Paris, France.
Mol Cell Biol. 2001 Apr;21(8):2659-70. doi: 10.1128/MCB.21.8.2659-2670.2001.
Thrombopoietin (TPO) regulates growth and differentiation of megakaryocytes. We previously showed that extracellular signal-regulated kinases (ERKs) are required for TPO-mediated full megakaryocytic maturation in both normal progenitors and a megakaryoblastic cell line (UT7) expressing the TPO receptor (Mpl). In these cells, intensity and duration of TPO-induced ERK signal are controlled by several regions of the cytoplasmic domain of Mpl. In this study, we explored the signaling pathways involved in this control. We show that the small GTPases Ras and Rap1 contribute together to TPO-induced ERK activation in UT7-Mpl cells and that they do so by activating different Raf kinases as downstream effectors: a Ras-Raf-1 pathway is required to initiate ERK activation while Rap1 sustains this signal through B-Raf. Indeed, (i) in cells expressing wild-type or mutant Mpl, TPO-induced Ras and Rap1 activation correlates with early and sustained phases of ERK signal, respectively; (ii) interfering mutants of Ras and Rap1 both inhibit ERK kinase activity and ERK-dependent Elk1 transcriptional activation in response to TPO; (iii) the kinetics of activation of Raf-1 and B-Raf by TPO follow those of Ras and Rap1, respectively; (iv) RasV12-mediated Elk1 activation was modulated by the wild type or interfering mutants of Raf-1 but not those of B-Raf; (v) Elk1 activation mediated by a constitutively active mutant of Rap1 (Rap1V12) is potentiated by B-Raf and inhibited by an interfering mutant of this kinase. UT7-Mpl cells represent the second cellular model in which Ras and Rap1 act in concert to modulate the duration of ERK signal in response to a growth factor and thereby the differentiation program. This is also, to our knowledge, the first evidence suggesting that Rap1 may play an active role in megakaryocytic maturation.
血小板生成素(TPO)调节巨核细胞的生长和分化。我们先前表明,细胞外信号调节激酶(ERK)是正常祖细胞和表达TPO受体(Mpl)的巨核母细胞系(UT7)中TPO介导的完全巨核细胞成熟所必需的。在这些细胞中,TPO诱导的ERK信号的强度和持续时间由Mpl细胞质结构域的几个区域控制。在本研究中,我们探索了参与这种控制的信号通路。我们发现小GTP酶Ras和Rap1共同促进UT7-Mpl细胞中TPO诱导的ERK激活,并且它们通过激活不同的Raf激酶作为下游效应器来实现这一点:Ras-Raf-1通路启动ERK激活,而Rap1通过B-Raf维持该信号。事实上,(i)在表达野生型或突变型Mpl的细胞中,TPO诱导的Ras和Rap1激活分别与ERK信号的早期和持续阶段相关;(ii)Ras和Rap1的干扰突变体均抑制ERK激酶活性以及TPO诱导的ERK依赖性Elk1转录激活;(iii)TPO对Raf-1和B-Raf的激活动力学分别与Ras和Rap1的激活动力学一致;(iv)RasV12介导的Elk1激活受Raf-1的野生型或干扰突变体调节,但不受B-Raf的调节;(v)由组成型活性突变体Rap1(Rap1V12)介导的Elk1激活被B-Raf增强,并被该激酶的干扰突变体抑制。UT7-Mpl细胞是第二个细胞模型,其中Ras和Rap1协同作用以调节生长因子诱导的ERK信号持续时间,从而调节分化程序。据我们所知,这也是第一个表明Rap1可能在巨核细胞成熟中发挥积极作用的证据。