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首页> 外文期刊>Development >Regulation of chemosensory and GABAergic motor neuron development by the C. elegans Aristaless/Arx homolog alr-1.
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Regulation of chemosensory and GABAergic motor neuron development by the C. elegans Aristaless/Arx homolog alr-1.

机译:秀丽隐杆线虫Aristaless / Arx同源物alr-1对化学感应和GABA能运动神经元发育的调节。

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Mutations in the highly conserved Aristaless-related homeodomain protein ARX have been shown to underlie multiple forms of X-linked mental retardation. Arx knockout mice exhibit thinner cerebral cortices because of decreased neural precursor proliferation, and also exhibit defects in the differentiation and migration of GABAergic interneurons. However, the role of ARX in the observed behavioral and developmental abnormalities is unclear. The regulatory functions of individual homeodomain proteins and the networks in which they act are frequently highly conserved across species, although these networks may be deployed in different developmental contexts. In Drosophila, aristaless mutants exhibit defects in the development of terminal appendages, and Aristaless has been shown to function with the LIM-homeodomain protein LIM1 to regulate leg development. Here, we describe the role of the Aristaless/Arx homolog alr-1 in C. elegans. We show that alr-1 acts in a pathway with the LIM1 ortholog lin-11 to regulate the development of a subset of chemosensory neurons. Moreover, we demonstrate that the differentiation of a GABAergic motoneuron subtype is affected in alr-1 mutants, suggesting parallels with ARX functions in vertebrates. Investigating ALR-1 functions in C. elegans may yield insights into the role of this important protein in neuronal development and the etiology of mental retardation.
机译:已显示高度保守的无Arista相关Homeodomain蛋白ARX中的突变是X连锁智力低下的多种形式的基础。 Arx基因敲除小鼠由于神经前体增殖的减少而显示出较薄的大脑皮层,并且在GABA能的中间神经元的分化和迁移中也表现出缺陷。但是,ARX在观察到的行为和发育异常中的作用尚不清楚。单个同源域蛋白及其发挥作用的网络的调节功能在物种间通常高度保守,尽管这些网络可能部署在不同的发育环境中。在果蝇中,无节叶的突变体在末梢附肢的发育中表现出缺陷,并且已证明无阿里斯塔氏与LIM-同源结构域蛋白LIM1一起调节腿的发育。在这里,我们描述无核/ Arx同源alr-1在秀丽隐杆线虫中的作用。我们显示,alr-1在与LIM1直系同源蛋白lin-11的通路中起作用,以调节化学感觉神经元子集的发育。此外,我们证明了GABA能运动神经元亚型的分化在alr-1突变体中受到影响,表明与脊椎动物中ARX功能的相似之处。研究秀丽隐杆线虫中的ALR-1功能可能会深入了解这种重要蛋白在神经元发育和智力低下的病因中的作用。

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