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loco encodes an RGS protein required for Drosophila glial differentiation.

机译:loco编码果蝇神经胶质分化所需的RGS蛋白。

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In Drosophila, glial cell development depends on the gene glial cells missing (gcm). gcm activates the expression of other transcription factors such as pointed and repo, which control subsequent glial differentiation. In order to better understand glial cell differentiation, we have screened for genes whose expression in glial cells depends on the activity of pointed. Using an enhancer trap approach, we have identified loco as such a gene. loco is expressed in most lateral CNS glial cells throughout development. Embryos lacking loco function have an normal overall morphology, but fail to hatch. Ultrastructural analysis of homozygous mutant loco embryos reveals a severe glial cell differentiation defect. Mutant glial cells fail to properly ensheath longitudinal axon tracts and do not form the normal glial-glial cell contacts, resulting in a disruption of the blood-brain barrier. Hypomorphic loco alleles were isolated following an EMS mutagenesis. Rare escapers eclose which show impaired locomotor capabilities. loco encodes the first two known Drosophila members of the family of Regulators of G-protein signalling (RGS) proteins, known to interact with the alpha subunits of G-proteins. loco specifically interacts with the Drosophila alphai-subunit. Strikingly, the interaction is not confined to the RGS domain. This interaction and the coexpression of LOCO and Galphai suggests a function of G-protein signalling for glial cell development.
机译:在果蝇中,神经胶质细胞的发育取决于缺失的神经胶质细胞基因(gcm)。 gcm激活其他转录因子(如针对性和回购)的表达,这些转录因子控制随后的神经胶质分化。为了更好地了解神经胶质细胞的分化,我们筛选了在神经胶质细胞中的表达取决于尖的活性的基因。使用增强子陷阱方法,我们已经鉴定出疯牛病为此类基因。在整个发育过程中,loco在大多数外侧中枢神经胶质细胞中表达。缺乏运动功能的胚胎总体形态正常,但无法孵化。纯合突变的机车胚胎的超微结构分析表明严重的神经胶质细胞分化缺陷。突变的神经胶质细胞不能正确地包裹纵向轴突束,并且不能形成正常的神经胶质-神经胶质细胞接触,从而导致血脑屏障的破坏。 EMS诱变后,分离亚型的疯牛等位基因。稀有的逃逸者闭合,表明运动能力受损。 loco编码已知与G蛋白的α亚基相互作用的G蛋白信号调节(RGS)蛋白调节剂家族的前两个已知果蝇成员。 loco与果蝇αi亚基特异性相互作用。令人惊讶的是,交互作用不限于RGS域。这种相互作用以及LOCO和Galphai的共表达暗示了G蛋白信号传导神经胶质细胞发育的功能。

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