Guichard A, Biehs B, Sturtevant M A, Wickline L, Chacko J, Howard K, Bier E
Department of Biology, University of California San Diego, La Jolla CA 92093-0349, USA.
Development. 1999 Jun;126(12):2663-76. doi: 10.1242/dev.126.12.2663.
Genes of the ventrolateral group in Drosophila are dedicated to developmental regulation of Egfr signaling in multiple processes including wing vein development. Among these genes, Egfr encodes the Drosophila EGF-Receptor, spitz (spi) and vein (vn) encode EGF-related ligands, and rhomboid (rho) and Star (S) encode membrane proteins. In this study, we show that rho-mediated hyperactivation of the EGFR/MAPK pathway is required for vein formation throughout late larval and early pupal development. Consistent with this observation, rho activity is necessary and sufficient to activate MAPK in vein primordium during late larval and early pupal stages. Epistasis studies using a dominant negative version of Egfr and a ligand-independent activated form of Egfr suggest that rho acts upstream of the receptor. We show that rho and S function in a common aspect of vein development since loss-of-function clones of rho or S result in nearly identical non-autonomous loss-of-vein phenotypes. Furthermore, mis-expression of rho and S in wild-type and mutant backgrounds reveals that these genes function in a synergistic and co-dependent manner. In contrast, spi does not play an essential role in the wing. These data indicate that rho and S act in concert, but independently of spi, to promote vein development through the EGFR/MAPK signaling pathway.
果蝇腹外侧组的基因专门负责在包括翅脉发育在内的多个过程中对表皮生长因子受体(Egfr)信号进行发育调控。在这些基因中,Egfr编码果蝇表皮生长因子受体,spitz(spi)和vein(vn)编码表皮生长因子相关配体,而rhomboid(rho)和Star(S)编码膜蛋白。在本研究中,我们表明,在整个幼虫后期和蛹早期发育过程中,rho介导的表皮生长因子受体/丝裂原活化蛋白激酶(EGFR/MAPK)信号通路的过度激活是翅脉形成所必需的。与这一观察结果一致,在幼虫后期和蛹早期阶段,rho活性对于在翅脉原基中激活丝裂原活化蛋白激酶是必要且充分的。使用Egfr的显性负性版本和Egfr的配体非依赖性激活形式进行的上位性研究表明,rho在受体上游起作用。我们表明,rho和S在翅脉发育的一个共同方面发挥作用,因为rho或S的功能缺失克隆会导致几乎相同的非自主性翅脉缺失表型。此外,在野生型和突变背景中对rho和S的错误表达揭示了这些基因以协同和相互依赖的方式发挥作用。相比之下,spi在翅膀中不发挥重要作用。这些数据表明,rho和S协同作用,但独立于spi,通过EGFR/MAPK信号通路促进翅脉发育。