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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Genetic ablation of the Rho GTPase Rnd3 triggers developmental defects in internal capsule and the globus pallidus formation
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Genetic ablation of the Rho GTPase Rnd3 triggers developmental defects in internal capsule and the globus pallidus formation

机译:Rho GTPase的遗传消融RND3触发内胶囊中的发育缺陷和Globus pallidus形成

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The forebrain includes the cerebral cortex, the thalamus, and the striatum and globus pallidus (GP) in the subpallium. The formation of these structures and their interconnections by specific axonal tracts take place in a precise and orchestrated time and spatial-dependent manner during development. However, the knowledge of the molecular and cellular mechanisms that are involved is rather limited. Moreover, while many extracellular cues and specific receptors have been shown to play a role in different aspects of nervous system development, including neuron migration and axon guidance, examples of intracellular signaling effectors involved in these processes are sparse. In the present work, we have shown that the atypical RhoGTPase, Rnd3, is expressed very early during brain development and keeps a dynamic expression in several brain regions including the cortex, the thalamus, and the subpallium. By using a gene-trap allele (Rnd3gt) and immunological techniques, we have shown that Rnd3gt/ gt embryos display severe defects in striatal and thalamocortical axonal projections (SAs and TCAs, respectively) and defects in GP formation already at early stages. Surprisingly, the corridor, an important intermediate target for TCAs is still present in these mutants. Mechanistically, a conditional genetic deletion approach revealed that Rnd3 is primarily required for the normal development of Medial Ganglionic Eminence-derived structures, such as the GP, and therefore acts non-cell autonomously in SAs and TCAs. In conclusion, we have demonstrated the important role of Rnd3 as an early regulator of subpallium development in vivo and revealed new insights about SAs and TCAs development.
机译:前脑包括大脑皮层、丘脑、纹状体和丘脑下的苍白球(GP)。这些结构的形成及其通过特定轴突束的相互连接在发育过程中以精确且协调的时间和空间依赖性方式发生。然而,有关分子和细胞机制的知识相当有限。此外,尽管许多细胞外线索和特定受体已被证明在神经系统发育的不同方面发挥作用,包括神经元迁移和轴突引导,但参与这些过程的细胞内信号效应器的例子并不多见。在目前的研究中,我们发现非典型RhoGTPase,Rnd3,在大脑发育的早期表达,并在包括皮质、丘脑和丘脑下叶在内的几个大脑区域保持动态表达。通过使用基因陷阱等位基因(Rnd3gt)和免疫学技术,我们已经证明Rnd3gt/gt胚胎在纹状体和丘脑皮质轴突投射(分别为SAs和TCAs)中显示出严重缺陷,并且在早期阶段就已经存在GP形成缺陷。令人惊讶的是,这些突变体中仍然存在TCAs的一个重要中间靶点走廊。从机制上讲,条件基因缺失方法显示Rnd3主要是内侧神经节隆起衍生结构(如GP)的正常发育所必需的,因此在SAs和TCAs中非细胞自主地发挥作用。总之,我们已经证明了Rnd3作为体内穹窿下发育的早期调节器的重要作用,并揭示了有关SAs和TCAs发育的新见解。

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