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脑发育调节蛋白在神经元中的作用。

The role of drebrin in neurons.

作者信息

Shirao Tomoaki, Hanamura Kenji, Koganezawa Noriko, Ishizuka Yuta, Yamazaki Hiroyuki, Sekino Yuko

机构信息

Department of Neurobiology and Behavior, Gunma University Graduate School of Medicine, Maebashi, Gunma, Japan.

Division of Pharmacology, National Institute of Health Sciences, Tokyo, Japan.

出版信息

J Neurochem. 2017 Jun;141(6):819-834. doi: 10.1111/jnc.13988. Epub 2017 Apr 21.

Abstract

Drebrin is an actin-binding protein that changes the helical pitch of actin filaments (F-actin), and drebrin-decorated F-actin shows slow treadmilling and decreased rate of depolymerization. Moreover, the characteristic morphology of drebrin-decorated F-actin enables it to respond differently to the same signals from other actin cytoskeletons. Drebrin consists of two major isoforms, drebrin E and drebrin A. In the developing brain, drebrin E appears in migrating neurons and accumulates in the growth cones of axons and dendrites. Drebrin E-decorated F-actin links lamellipodium F-actin to microtubules in the growth cones. Then drebrin A appears at nascent synapses and drebrin A-decorated F-actin facilitates postsynaptic molecular assembly. In the adult brain, drebrin A-decorated F-actin is concentrated in the central region of dendritic spines. During long-term potentiation initiation, NMDA receptor-mediated Ca influx induces the transient exodus of drebrin A-decorated F-actin via myosin II ATPase activation. Because of the unique physical characteristics of drebrin A-decorated F-actin, this exodus likely contributes to the facilitation of F-actin polymerization and spine enlargement. Additionally, drebrin reaccumulation in dendritic spines is observed after the exodus. In our drebrin exodus model of structure-based synaptic plasticity, reestablishment of drebrin A-decorated F-actin is necessary to keep the enlarged spine size during long-term potentiation maintenance. In this review, we introduce the genetic and biochemical properties of drebrin and the roles of drebrin in early stage of brain development, synaptic formation and synaptic plasticity. Further, we discuss the pathological relevance of drebrin loss in Alzheimer's disease. This article is part of the mini review series "60th Anniversary of the Japanese Society for Neurochemistry".

摘要

Drebrin是一种肌动蛋白结合蛋白,它能改变肌动蛋白丝(F-肌动蛋白)的螺旋螺距,并且由drebrin修饰的F-肌动蛋白表现出缓慢的踏车行为和降低的解聚速率。此外,由drebrin修饰的F-肌动蛋白的特征形态使其能够对来自其他肌动蛋白细胞骨架的相同信号做出不同反应。Drebrin由两种主要的亚型组成,即drebrin E和drebrin A。在发育中的大脑中,drebrin E出现在迁移的神经元中,并积累在轴突和树突的生长锥中。由drebrin E修饰的F-肌动蛋白将片足F-肌动蛋白与生长锥中的微管连接起来。然后drebrin A出现在新生突触处,由drebrin A修饰的F-肌动蛋白促进突触后分子组装。在成人大脑中,由drebrin A修饰的F-肌动蛋白集中在树突棘的中心区域。在长时程增强起始过程中,NMDA受体介导的Ca内流通过肌球蛋白II ATP酶激活诱导由drebrin A修饰的F-肌动蛋白短暂外流。由于由drebrin A修饰的F-肌动蛋白的独特物理特性,这种外流可能有助于促进F-肌动蛋白聚合和棘突增大。此外,在这种外流后观察到drebrin在树突棘中重新积累。在我们基于结构的突触可塑性的drebrin外流模型中,在长时程增强维持期间,重新建立由drebrin A修饰的F-肌动蛋白对于保持增大的棘突大小是必要的。在这篇综述中,我们介绍了drebrin的遗传和生化特性以及drebrin在大脑发育早期、突触形成和突触可塑性中的作用。此外,我们讨论了drebrin缺失在阿尔茨海默病中的病理相关性。本文是“日本神经化学学会成立60周年”小型综述系列的一部分。

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