Rousso Tal, Lynch Jeremy, Yogev Shaul, Roth Siegfried, Schejter Eyal D, Shilo Ben-Zion
Department of Molecular Genetics, Weizmann Institute of Science, Rehovot, Israel.
Development. 2010 Oct;137(20):3427-37. doi: 10.1242/dev.049858. Epub 2010 Sep 8.
Egfr ligand processing in Drosophila involves trafficking of the ligand precursor by the chaperone Star from the endoplasmic reticulum (ER) to a secretory compartment, where the precursor is cleaved by the intramembrane protease Rhomboid. Some of the Drosophila Rhomboids also reside in the ER, where they attenuate signaling by premature cleavage of Star. The genome of the flour beetle Tribolium castaneum contains a single gene for each of the ligand-processing components, providing an opportunity to assess the regulation and impact of a simplified ligand-processing cassette. We find that the central features of ligand retention, trafficking by the chaperone and cleavage by Rhomboid have been conserved. The single Rhomboid is localized to both ER and secretory compartments. However, we show that Tribolium Star is refractive to Rhomboid cleavage. Consequently, this ligand-processing system effectively mediates long-range Egfr activation in the Tribolium embryonic ventral ectoderm, despite ER localization of Rhomboid. Diversification of the Egfr signaling pathway appears to have coupled gene duplication events with modulation of the biochemical properties and subcellular localization patterns of Rhomboid proteases and their substrates.
果蝇中表皮生长因子受体(Egfr)配体的加工过程涉及伴侣蛋白“星”(Star)将配体前体从内质网(ER)运输到分泌区室,在那里前体被膜内蛋白酶“菱形”(Rhomboid)切割。果蝇的一些“菱形”蛋白酶也存在于内质网中,在那里它们通过过早切割“星”来减弱信号传导。赤拟谷盗(Tribolium castaneum)的基因组中,每个配体加工成分都只有一个基因,这为评估简化的配体加工盒的调控和影响提供了一个机会。我们发现配体保留、伴侣蛋白运输和“菱形”蛋白酶切割的核心特征是保守的。单个“菱形”蛋白酶定位于内质网和分泌区室。然而,我们表明赤拟谷盗的“星”对“菱形”蛋白酶的切割具有抗性。因此,尽管“菱形”蛋白酶定位于内质网,但这个配体加工系统有效地介导了赤拟谷盗胚胎腹侧外胚层中的长距离表皮生长因子受体激活。表皮生长因子受体信号通路的多样化似乎将基因复制事件与“菱形”蛋白酶及其底物的生化特性和亚细胞定位模式的调节联系了起来。