Staehling-Hampton K, Jackson P D, Clark M J, Brand A H, Hoffmann F M
McArdle Laboratory for Cancer Research, University of Wisconsin, Madison 53706.
Cell Growth Differ. 1994 Jun;5(6):585-93.
Reported assays of the bone morphogenetic proteins (BMPs) have not in general revealed specific functions for the different proteins, belying the specificity implied by the evolutionary conservation and distinct expression patterns of the genes encoding BMPs. We have used assays of developmental function to show that the two Drosophila homologues of the BMPs, decapentaplegic (dpp) and 60A, that both induce ectopic bone formation in mammalian assay systems, have distinct effects in Drosophila development. A binary expression system using the yeast transcriptional activator GAL4 directed identical patterns of tissue and temporally specific dpp and 60A expression. When dpp enhancer elements drove GAL4 expression, GAL4-responsive dpp transgenes rescued dpp mutant phenotypes, but GAL4-responsive 60A transgenes did not. Ectopic ectodermal expression of dpp during gastrulation respecified the dorsal/ventral pattern of the embryo. In contrast, ectopic 60A expression had no detectable effects on embryonic development but led to defects in adult structures or lethality during metamorphosis. Expression of 60A in cells expressing dpp did not interfere with dpp functions, indicating that dysfunctional heterodimers did not form at sufficient levels to inhibit dpp. These specific developmental responses in Drosophila indicate that in vivo functions of BMP-like factors can be more specific than indicated by the ectopic bone formation assays and that the Drosophila embryo provides an assay system sensitive to the structural differences that contribute to BMP specificity in vivo.
已报道的骨形态发生蛋白(BMPs)检测方法总体上并未揭示不同蛋白质的特定功能,这与编码BMPs的基因的进化保守性和独特表达模式所暗示的特异性不符。我们利用发育功能检测方法表明,BMPs在果蝇中的两个同源物,即能在哺乳动物检测系统中诱导异位骨形成的“截瘫蛋白”(dpp)和60A,在果蝇发育中具有不同的作用。使用酵母转录激活因子GAL4的二元表达系统指导dpp和60A在组织和时间上具有相同模式的特异性表达。当dpp增强子元件驱动GAL4表达时,对GAL4有反应的dpp转基因挽救了dpp突变体表型,但对GAL4有反应的60A转基因则没有。原肠胚形成期间dpp的异位外胚层表达重新确定了胚胎的背/腹模式。相比之下,60A的异位表达对胚胎发育没有可检测到的影响,但导致成虫结构缺陷或变态期间的致死性。在表达dpp的细胞中表达60A并不干扰dpp的功能,这表明功能失调的异二聚体没有以足以抑制dpp的水平形成。果蝇中的这些特定发育反应表明,BMP样因子的体内功能可能比异位骨形成检测所显示的更具特异性,并且果蝇胚胎提供了一个对有助于体内BMP特异性的结构差异敏感的检测系统。