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转化生长因子-β信号通路在果蝇大脑神经元重塑过程中激活类固醇激素受体表达。

TGF-beta signaling activates steroid hormone receptor expression during neuronal remodeling in the Drosophila brain.

作者信息

Zheng Xiaoyan, Wang Jian, Haerry Theodor E, Wu Ann Y-H, Martin Josephine, O'Connor Michael B, Lee Ching-Hsien J, Lee Tzumin

机构信息

Department of Cell and Structural Biology, University of Illinois, Urbana, IL 61801, USA.

出版信息

Cell. 2003 Feb 7;112(3):303-15. doi: 10.1016/s0092-8674(03)00072-2.

Abstract

Metamorphosis of the Drosophila brain involves pruning of many larval-specific dendrites and axons followed by outgrowth of adult-specific processes. From a genetic mosaic screen, we recovered two independent mutations that block neuronal remodeling in the mushroom bodies (MBs). These phenotypically indistinguishable mutations affect Baboon function, a Drosophila TGF-beta/activin type I receptor, and dSmad2, its downstream transcriptional effector. We also show that Punt and Wit, two type II receptors, act redundantly in this process. In addition, knocking out dActivin around the mid-third instar stage interferes with remodeling. Binding of the insect steroid hormone ecdysone to distinct ecdysone receptor isoforms induces different metamorphic responses in various larval tissues. Interestingly, expression of the ecdysone receptor B1 isoform (EcR-B1) is reduced in activin pathway mutants, and restoring EcR-B1 expression significantly rescues remodeling defects. We conclude that the Drosophila Activin signaling pathway mediates neuronal remodeling in part by regulating EcR-B1 expression.

摘要

果蝇大脑的变态发育涉及许多幼虫特异性树突和轴突的修剪,随后是成虫特异性突起的生长。通过基因镶嵌筛选,我们获得了两个独立的突变,它们会阻断蘑菇体(MBs)中的神经元重塑。这些表型上无法区分的突变影响了狒狒蛋白的功能,狒狒蛋白是一种果蝇转化生长因子-β/激活素I型受体,以及其下游转录效应因子dSmad2。我们还表明,两种II型受体Punt和Wit在这一过程中发挥冗余作用。此外,在三龄幼虫中期左右敲除dActivin会干扰重塑。昆虫类固醇激素蜕皮激素与不同的蜕皮激素受体亚型结合,会在各种幼虫组织中诱导不同的变态反应。有趣的是,激活素信号通路突变体中蜕皮激素受体B1亚型(EcR-B1)的表达降低,恢复EcR-B1的表达可显著挽救重塑缺陷。我们得出结论,果蝇激活素信号通路部分通过调节EcR-B1的表达来介导神经元重塑。

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