Ghiglione C, Perrimon N, Perkins L A
Department of Genetics, Harvard Medical School, Boston, Massachusetts 02115, USA.
Dev Biol. 1999 Jan 1;205(1):181-93. doi: 10.1006/dbio.1998.9102.
We have examined the role in patterning of quantitative variations of MAPK activity in signaling from the Drosophila Torso (Tor) receptor tyrosine kinase (RTK). Activation of Tor at the embryonic termini leads to differential expression of the genes tailless and huckebein. We demonstrate, using a series of mutations in the signal transducers Corkscrew/SHP-2 and D-Raf, that quantitative variations in the magnitude of MAPK activity trigger both qualitatively and quantitatively distinct transcriptional responses. We also demonstrate that two chimeric receptors, Torextracellular-Egfrcytoplasmic and Torextracellular-Sevcytoplasmic, cannot fully functionally replace the wild-type Tor receptor, revealing that the precise activation of MAPK involves not only the number of activated RTK molecules but also the magnitude of the signal generated by the RTK cytoplasmic domain. Altogether, our results illustrate how a gradient of MAPK activity controls differential gene expression and, thus, the establishment of various cell fates. We discuss the roles of quantitative mechanisms in defining RTK specificity.
我们研究了果蝇躯干(Tor)受体酪氨酸激酶(RTK)信号通路中MAPK活性定量变化在模式形成中的作用。胚胎末端Tor的激活导致无尾基因和驼背基因的差异表达。我们利用信号转导分子螺旋桨/SHP-2和D-Raf中的一系列突变证明,MAPK活性强度的定量变化会引发定性和定量上截然不同的转录反应。我们还证明,两种嵌合受体Torextracellular-Egfrcytoplasmic和Torextracellular-Sevcytoplasmic不能完全在功能上替代野生型Tor受体,这表明MAPK的精确激活不仅涉及活化RTK分子的数量,还涉及RTK胞质结构域产生的信号强度。总之,我们的结果说明了MAPK活性梯度如何控制差异基因表达,从而决定各种细胞命运的建立。我们讨论了定量机制在定义RTK特异性中的作用。