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Reelin Functions Mechanisms of Action and Signaling Pathways During Brain Development and Maturation

机译:大脑发育和成熟过程中的Reelin功能作用机制和信号通路

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摘要

During embryonic development and adulthood, Reelin exerts several important functions in the brain including the regulation of neuronal migration, dendritic growth and branching, dendritic spine formation, synaptogenesis and synaptic plasticity. As a consequence, the Reelin signaling pathway has been associated with several human brain disorders such as lissencephaly, autism, schizophrenia, bipolar disorder, depression, mental retardation, Alzheimer’s disease and epilepsy. Several elements of the signaling pathway are known. Core components, such as the Reelin receptors very low-density lipoprotein receptor (VLDLR) and Apolipoprotein E receptor 2 (ApoER2), Src family kinases Src and Fyn, and the intracellular adaptor Disabled-1 (Dab1), are common to most but not all Reelin functions. Other downstream effectors are, on the other hand, more specific to defined tasks. Reelin is a large extracellular protein, and some aspects of the signal are regulated by its processing into smaller fragments. Rather than being inhibitory, the processing at two major sites seems to be fulfilling important physiological functions. In this review, I describe the various cellular events regulated by Reelin and attempt to explain the current knowledge on the mechanisms of action. After discussing the shared and distinct elements of the Reelin signaling pathway involved in neuronal migration, dendritic growth, spine development and synaptic plasticity, I briefly outline the data revealing the importance of Reelin in human brain disorders.
机译:在胚胎发育和成年期,Reelin在大脑中发挥一些重要功能,包括调节神经元迁移,树突生长和分支,树突棘形成,突触形成和突触可塑性。因此,Reelin信号通路已与多种人类脑部疾病相关,例如轻型脑瘫,自闭症,精神分裂症,躁郁症,抑郁症,智力低下,阿尔茨海默氏病和癫痫病。信号传导途径的几个要素是已知的。 Reelin受体极低密度脂蛋白受体(VLDLR)和Apo脂蛋白E受体2(ApoER2),Src家族激酶Src和Fyn以及细胞内衔接子Disabled-1(Dab1)等核心成分在大多数情况下是常见的,但并非如此Reelin的所有功能。另一方面,其他下游效应器更特定于定义的任务。 Reelin是一种大的细胞外蛋白,信号的某些方面受其加工成较小片段的调节。而不是抑制,在两个主要部位的加工似乎正在履行重要的生理功能。在这篇综述中,我描述了Reelin调控的各种细胞事件,并试图解释有关作用机理的最新知识。在讨论了Reelin信号通路中涉及神经元迁移,树突生长,脊柱发育和突触可塑性的共享且独特的元素之后,我简要概述了揭示Reelin在人脑疾病中的重要性的数据。

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