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一条保守的信号通路:果蝇Toll-Dorsal信号通路。

A conserved signaling pathway: the Drosophila toll-dorsal pathway.

作者信息

Belvin M P, Anderson K V

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720, USA.

出版信息

Annu Rev Cell Dev Biol. 1996;12:393-416. doi: 10.1146/annurev.cellbio.12.1.393.

Abstract

The Toll-Dorsal pathway in Drosophila and the interleukin-1 receptor (IL-1R)-NF-kappa B pathway in mammals are homologous signal transduction pathways that mediate several different biological responses. In Drosophila, genetic analysis of dorsal-ventral patterning of the embryo has defined the series of genes that mediate the Toll-Dorsal pathway. Binding of extracellular ligand activates the transmembrane receptor Toll, which requires the novel protein Tube to activate the cytoplasmic serine/threonine kinase Pelle. Pelle activity controls the degradation of the Cactus protein, which is present in a cytoplasmic complex with the Dorsal protein. Once Cactus is degraded in response to signal, Dorsal is free to move into the nucleus where it regulates transcription of specific target genes. The Toll, tube, pelle, cactus, and dorsal genes also appear to be involved in Drosophila immune response. Because the IL-1R-NF-kappa B pathway plays a role in vertebrate innate immunity and because plant homologues of the Toll-Dorsal pathway are important in plant disease resistance, it is likely that this pathway arose before the divergence of plants and animals as a defense against pathogens.

摘要

果蝇中的Toll-Dorsal信号通路与哺乳动物中的白细胞介素-1受体(IL-1R)-核因子κB信号通路是同源的信号转导通路,可介导多种不同的生物学反应。在果蝇中,对胚胎背腹模式形成的遗传学分析确定了介导Toll-Dorsal信号通路的一系列基因。细胞外配体的结合激活跨膜受体Toll,这需要新蛋白Tube来激活细胞质丝氨酸/苏氨酸激酶Pelle。Pelle的活性控制Cactus蛋白的降解,Cactus蛋白与Dorsal蛋白存在于细胞质复合物中。一旦Cactus响应信号而降解,Dorsal就可以自由进入细胞核,在那里它调节特定靶基因的转录。Toll、tube、pelle、cactus和dorsal基因似乎也参与了果蝇的免疫反应。由于IL-1R-核因子κB信号通路在脊椎动物先天免疫中发挥作用,并且由于Toll-Dorsal信号通路的植物同源物在植物抗病性中很重要,因此这条信号通路很可能在动植物分化之前就已出现,作为抵御病原体的一种防御机制。

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