Escudero Luis M, Wei Shu-Yi, Chiu Wei-Hsin, Modolell Juan, Hsu Jui-Chou
Centro de Biología Molecular Severo Ochoa, C.S.I.C. and U.A.M., Cantoblanco, 28049 Madrid, Spain.
Development. 2003 Dec;130(25):6305-16. doi: 10.1242/dev.00869.
echinoid (ed) encodes an immunoglobulin domain-containing cell adhesion molecule that negatively regulates the Egfr signaling pathway during Drosophila photoreceptor development. We show a novel function of Ed, i.e. the restriction of the number of notum bristles that arise from a proneural cluster. Thus, loss-of-function conditions for ed give rise to the development of extra macrochaetae near the extant ones and increase the density of microchaetae. Analysis of ed mosaics indicates that extra sensory organ precursors (SOPs) arise from proneural clusters of achaete-scute expression in a cell-autonomous way. ed embryos also exhibit a neurogenic phenotype. These phenotypes suggest a functional relation between ed and the Notch (N) pathway. Indeed, loss-of-function of ed reduces the expression of the N pathway effector E(spl)m8 in proneural clusters. Moreover, combinations of moderate loss-of-function conditions for ed and for different components of the N pathway show clear synergistic interactions manifested as strong neurogenic bristle phenotypes. We conclude that Ed is not essential for, but it facilitates, N signaling. It is known that the N and Egfr pathways act antagonistically in bristle development. Consistently, we find that Ed also antagonizes the bristle-promoting activity of the Egfr pathway, either by the enhancement of N signalling or, similar to the eye, by a more direct action on the Egfr pathway.
海胆(ed)编码一种含有免疫球蛋白结构域的细胞粘附分子,在果蝇光感受器发育过程中对表皮生长因子受体(Egfr)信号通路起负调控作用。我们发现了Ed的一种新功能,即限制源自神经原簇的背板刚毛数量。因此,ed功能丧失会导致在现有刚毛附近发育出额外的大刚毛,并增加小刚毛的密度。对ed嵌合体的分析表明,额外的感觉器官前体细胞(SOP)以细胞自主方式从achaete - scute表达的神经原簇中产生。ed胚胎还表现出神经源性表型。这些表型表明ed与Notch(N)信号通路之间存在功能关系。事实上,ed功能丧失会降低神经原簇中N信号通路效应物E(spl)m8的表达。此外,ed和N信号通路不同组分的中度功能丧失条件组合显示出明显的协同相互作用,表现为强烈的神经源性刚毛表型。我们得出结论,Ed对N信号传导不是必需的,但它有助于N信号传导。已知N和Egfr信号通路在刚毛发育中起拮抗作用。一致地,我们发现Ed也通过增强N信号传导或类似于在眼睛中的情况,通过对Egfr信号通路更直接的作用来拮抗Egfr信号通路促进刚毛生长的活性。