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Cend1 a Story with Many Tales: From Regulation of Cell Cycle Progression/Exit of Neural Stem Cells to Brain Structure and Function

机译:Cend1一个故事多的故事:从调节细胞周期进程/退出神经干细胞到脑结构和功能

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摘要

Neural stem/precursor cells (NPCs) generate the large variety of neuronal phenotypes comprising the adult brain. The high diversity and complexity of this organ have its origin in embryonic life, during which NPCs undergo symmetric and asymmetric divisions and then exit the cell cycle and differentiate to acquire neuronal identities. During these processes, coordinated regulation of cell cycle progression/exit and differentiation is essential for generation of the appropriate number of neurons and formation of the correct structural and functional neuronal circuits in the adult brain. Cend1 is a neuronal lineage-specific modulator involved in synchronization of cell cycle exit and differentiation of neuronal precursors. It is expressed all along the neuronal lineage, from neural stem/progenitor cells to mature neurons, and is associated with the dynamics of neuron-generating divisions. Functional studies showed that Cend1 has a critical role during neurogenesis in promoting cell cycle exit and neuronal differentiation. Mechanistically, Cend1 acts via the p53-dependent/Cyclin D1/pRb signaling pathway as well as via a p53-independent route involving a tripartite interaction with RanBPM and Dyrk1B. Upon Cend1 function, Notch1 signaling is suppressed and proneural genes such as Mash1 and Neurogenins 1/2 are induced. Due to its neurogenic activity, Cend1 is a promising candidate therapeutic gene for brain repair, while the Cend1 minimal promoter is a valuable tool for neuron-specific gene delivery in the CNS. Mice with Cend1 genetic ablation display increased NPC proliferation, decreased migration, and higher levels of apoptosis during development. As a result, they show in the adult brain deficits in a range of motor and nonmotor behaviors arising from irregularities in cerebellar cortex lamination and impaired Purkinje cell differentiation as well as a paucity in GABAergic interneurons of the cerebral cortex, hippocampus, and amygdala. Taken together, these studies highlight the necessity for Cend1 expression in the formation of a structurally and functionally normal brain.
机译:神经干/前体细胞(NPC)会生成包括成年大脑在内的多种神经元表型。该器官的高度多样性和复杂性起源于胚胎生活,在此过程中,NPC经历对称和不对称分裂,然后退出细胞周期并分化以获取神经元身份。在这些过程中,对成年大脑中适当数量的神经元的生成以及正确的结构和功能性神经元回路的形成,细胞周期进行/退出和分化的协调调节至关重要。 Cend1是神经元谱系特异性调节剂,参与细胞周期退出的同步和神经元前体的分化。从神经干/祖细胞到成熟神经元,它在整个神经元世系中表达,并且与神经元生成分裂的动力学有关。功能研究表明,Cend1在神经发生过程中在促进细胞周期退出和神经元分化中起关键作用。从机理上讲,Cend1通过依赖于p53 / Cyclin D1 / pRb信号通路以及依赖于与RanBPM和Dyrk1B进行三重相互作用的非p53途径起作用。在Cend1功能后,Notch1信号传导受到抑制,并诱导了诸如Mash1和Neurogenins 1/2的proneural基因。由于其神经原活性,Cend1是一种有前途的脑修复候选治疗基因,而Cend1最小启动子是在CNS中进行神经元特异性基因传递的有价值的工具。具有Cend1基因消融的小鼠在发育过程中显示出增加的NPC增殖,减少的迁移和较高的细胞凋亡水平。结果,它们显示出在成人大脑中,由于小脑皮质层压不规则和浦肯野细胞分化受损以及大脑皮质,海马和杏仁核的GABA能中神经元不足而导致的一系列运动和非运动行为缺陷。综上所述,这些研究突出了在结构和功能正常的大脑形成过程中Cend1表达的必要性。

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