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首页> 外文期刊>Development >rigor mortis encodes a novel nuclear receptor interacting protein required for ecdysone signaling during Drosophila larval development.
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rigor mortis encodes a novel nuclear receptor interacting protein required for ecdysone signaling during Drosophila larval development.

机译:僵尸编码果蝇幼虫发育过程中蜕皮激素信号转导所需的新型核受体相互作用蛋白。

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摘要

Pulses of the steroid hormone ecdysone trigger the major developmental transitions in Drosophila, including molting and puparium formation. The ecdysone signal is transduced by the EcR/USP nuclear receptor heterodimer that binds to specific response elements in the genome and directly regulates target gene transcription. We describe a novel nuclear receptor interacting protein encoded by rigor mortis (rig) that is required for ecdysone responses during larval development. rig mutants display defects in molting, delayed larval development, larval lethality, duplicated mouth parts, and defects in puparium formation - phenotypes that resemble those seen in EcR, usp, E75A and betaFTZ-F1 mutants. Although the expression of these nuclear receptor genes is essentially normal in rig mutant larvae, the ecdysone-triggered switch in E74 isoform expression is defective. rig encodes a protein with multiple WD-40 repeats and an LXXLL motif, sequences that act as specific protein-protein interaction domains. Consistent with the presence of these elements and the lethal phenotypes of rig mutants, Rig protein interacts with several Drosophila nuclear receptors in GST pull-down experiments, including EcR, USP, DHR3, SVP and betaFTZ-F1. The ligand binding domain of betaFTZ-F1 is sufficient for this interaction, which can occur in an AF-2-independent manner. Antibody stains reveal that Rig protein is present in the brain and imaginal discs of second and third instar larvae, where it is restricted to the cytoplasm. In larval salivary gland and midgut cells, however, Rig shuttles between the cytoplasm and nucleus in a spatially and temporally regulated manner, at times that correlate with the major lethal phase of rig mutants and major switches in ecdysone-regulated gene expression. Taken together, these data indicate that rig exerts essential functions during larval development through gene-specific effects on ecdysone-regulated transcription, most likely as a cofactor for one or more nuclear receptors. Furthermore, the dynamic intracellular redistribution of Rig protein suggests that it may act to refine spatial and temporal responses to ecdysone during development.
机译:类固醇激素蜕皮激素的脉冲触发果蝇的主要发育转变,包括蜕皮和产褥期。蜕皮激素信号由EcR / USP核受体异二聚体转导,该异二聚体与基因组中的特定响应元件结合并直接调节靶基因的转录。我们描述了一种新的核受体相互作用蛋白,由幼虫发育过程中蜕皮激素响应所需要的严格的mortis(rig)编码。钻机突变体显示出蜕皮缺陷,幼虫发育延迟,幼虫致死力,嘴巴重复以及duplicate形成缺陷-表型类似于EcR,usp,E75A和betaFTZ-F1突变体中的表型。尽管这些核苷酸受体基因的表达在装备突变的幼虫中基本上是正常的,但是蜕皮激素触发的E74亚型表达的开关是有缺陷的。 rig编码具有多个WD-40重复序列和LXXLL基序的蛋白质,该序列充当特定的蛋白质-蛋白质相互作用域。与这些元素的存在以及rig突变体的致死表型一致,Rig蛋白在GST下拉实验中与几种果蝇核受体相互作用,包括EcR,USP,DHR3,SVP和betaFTZ-F1。 betaFTZ-F1的配体结合域足以实现这种相互作用,可以以独立于AF-2的方式发生。抗体染色显示,Rig蛋白存在于第二龄和第三龄幼虫的大脑和假想盘中,该区域仅限于细胞质。然而,在幼虫唾液腺和中肠细胞中,Rig以时空调节的方式在细胞质和细胞核之间穿梭,有时与钻机突变体的主要致死期和蜕皮激素调节的基因表达的主要开关相关。综上所述,这些数据表明,钻机在幼虫发育过程中通过对蜕皮激素调节的转录的基因特异性作用发挥着重要作用,最有可能作为一种或多种核受体的辅助因子。此外,Rig蛋白的动态细胞内重新分布表明,Rig蛋白在发育过程中可能起到改善对蜕皮激素的时空响应的作用。

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