Mailhos C, André S, Mollereau B, Goriely A, Hemmati-Brivanlou A, Desplan C
Laboratory of Molecular Genetics, Howard Hughes Medical Institute, Rockefeller University, New York, USA.
Development. 1998 Mar;125(5):937-47. doi: 10.1242/dev.125.5.937.
Goosecoid (Gsc) is a homeodomain protein expressed in the organizer region of vertebrate embryos. Its Drosophila homologue, D-Gsc, has been implicated in the formation of the Stomatogastric Nervous System. Although there are no apparent similarities between the phenotypes of mutations in the gsc gene in flies and mice, all known Gsc proteins can rescue dorsoanterior structures in ventralized Xenopus embryos. We describe how D-Gsc behaves as a transcriptional repressor in Drosophila cells, acting through specific palindromic HD binding sites (P3K). D-Gsc is a 'passive repressor' of activator homeoproteins binding to the same sites and an 'active repressor' of activators binding to distinct sites. In addition, D-Gsc is able to strongly repress transcription activated by Paired-class homeoproteins through P3K, via specific protein-protein interactions in what we define as 'interactive repression'. This form of repression requires the short conserved GEH/eh-1 domain, also present in the Engrailed repressor. Although the GEH/eh-1 domain is necessary for rescue of UV-ventralized Xenopus embryos, it is dispensable for ectopic induction of Xlim-1 expression, demonstrating that this domain is not required for all Gsc functions in vivo. Interactive repression may represent specific interactions among Prd-class homeoproteins, several of which act early during development of invertebrate and vertebrate embryos.
鹅膏蕈氨酸(Gsc)是一种在脊椎动物胚胎组织者区域表达的同源结构域蛋白。它在果蝇中的同源物D - Gsc与口胃神经系统的形成有关。尽管果蝇和小鼠中gsc基因突变的表型之间没有明显相似性,但所有已知的Gsc蛋白都能拯救非洲爪蟾腹侧化胚胎中的背前部结构。我们描述了D - Gsc在果蝇细胞中如何作为转录抑制因子发挥作用,通过特定的回文HD结合位点(P3K)起作用。D - Gsc对于与相同位点结合的激活型同源蛋白是“被动抑制因子”,对于与不同位点结合的激活因子是“主动抑制因子”。此外,D - Gsc能够通过P3K强烈抑制由配对类同源蛋白激活的转录,通过我们定义为“交互抑制”的特定蛋白质 - 蛋白质相互作用。这种抑制形式需要短的保守GEH/eh - 1结构域,该结构域也存在于 engrailed 抑制因子中。尽管GEH/eh - 1结构域对于拯救紫外线腹侧化的非洲爪蟾胚胎是必需的,但对于异位诱导Xlim - 1表达是可有可无的,这表明该结构域并非在体内所有Gsc功能中都是必需的。交互抑制可能代表了Prd类同源蛋白之间的特定相互作用,其中一些在无脊椎动物和脊椎动物胚胎发育早期起作用。