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Structure and expression of murine mgcRacGAP: its developmental regulation suggests a role for the Rac/MgcRacGAP signalling pathway in neurogenesis.

机译:鼠mgcRacGAP的结构和表达:其发育调控表明Rac / MgcRacGAP信号通路在神经发生中起作用。

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摘要

Rho-family GTPases regulate a wide range of biological functions including cell migration, cell adhesion and cell growth. Recently, results from studies in vivo in Drosophila, mouse and humans have demonstrated the involvement of these GTPases in mechanisms controlling neuronal differentiation and the development of the central nervous system (CNS). However, the signalling pathways underlying these functions and the proteins directly regulating RhoGTPases in developing neurons are poorly defined. Here we report the structure and expression pattern of the murine orthologue of mgcRacGAP, a human gene encoding a RacGTPase partner expressed in male germ cells [Touré, Dorseuil, Morin, Timmons, Jegou, Reibel and Gacon (1998) J. Biol. Chem. 273, 6019-6023]. In contrast with that from humans, murine mgcRacGAP encodes two distinct transcripts. Both are developmentally regulated. A 2.2 kb transcript is strongly expressed in mature testis and is up-regulated with spermatogenesis. A 3 kb RNA is predominant in the embryo and is expressed primarily in the CNS during the neurogenic phase, decreasing after birth. In situ hybridization analysis in embryonic-day 14.5 mouse embryos demonstrates a preferential expression of mgcRacGAP in the proliferative ventricular zone of the cortex. In addition to the expression of mgcRacGAP in male germ cells already reported in humans and suggesting an involvement in spermatogenesis, we characterize an embryonic transcript whose expression is closely correlated with neurogenesis. This result addresses the question of the role of Rac/MgcRacGAP pathway in neuronal proliferation.
机译:Rho家族的GTPases调节广泛的生物学功能,包括细胞迁移,细胞粘附和细胞生长。最近,在果蝇,小鼠和人类体内的研究结果表明,这些GTPases参与了控制神经元分化和中枢神经系统(CNS)发育的机制。然而,这些功能的信号传导途径以及发育中的神经元中直接调节RhoGTPases的蛋白质的定义不明确。在这里,我们报告了mgcRacGAP鼠直系同源物的结构和表达模式,mgcRacGAP是编码在雄性生殖细胞中表达的RacGTPase伴侣的人类基因[Touré,Dorseuil,Morin,Timmons,Jegou,Reibel和Gacon(1998)J.Biol。化学273,6019-6023]。与人类相反,鼠mgcRacGAP编码两个不同的转录本。两者都受到发展管制。 2.2 kb的转录物在成熟的睾丸中强烈表达,并随着精子发生而上调。 3 kb RNA在胚胎中占主导地位,并且在神经发生阶段主要在中枢神经系统表达,在出生后减少。胚胎天14.5小鼠胚胎中的原位杂交分析表明mgcRacGAP在皮质的增殖性心室区中优先表达。除了已经在人类中报道的雄性生殖细胞中mgcRacGAP的表达并暗示其参与精子发生之外,我们还表征了一个胚胎转录本,其表达与神经发生密切相关。该结果解决了Rac / MgcRacGAP途径在神经元增殖中的作用的问题。

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