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生理和病理条件下的突触前微管细胞骨架:来自果蝇脆性X综合征和遗传性痉挛性截瘫的启示

The Presynaptic Microtubule Cytoskeleton in Physiological and Pathological Conditions: Lessons from Drosophila Fragile X Syndrome and Hereditary Spastic Paraplegias.

作者信息

Bodaleo Felipe J, Gonzalez-Billault Christian

机构信息

Laboratory of Cell and Neuronal Dynamics, Department of Biology, Faculty of Sciences, Universidad de ChileSantiago, Chile; Center for Geroscience, Brain Health and Metabolism (GERO)Santiago, Chile.

Laboratory of Cell and Neuronal Dynamics, Department of Biology, Faculty of Sciences, Universidad de ChileSantiago, Chile; Center for Geroscience, Brain Health and Metabolism (GERO)Santiago, Chile; The Buck Institute for Research on Aging, NovatoCA, USA.

出版信息

Front Mol Neurosci. 2016 Jul 25;9:60. doi: 10.3389/fnmol.2016.00060. eCollection 2016.

Abstract

The capacity of the nervous system to generate neuronal networks relies on the establishment and maintenance of synaptic contacts. Synapses are composed of functionally different presynaptic and postsynaptic compartments. An appropriate synaptic architecture is required to provide the structural basis that supports synaptic transmission, a process involving changes in cytoskeletal dynamics. Actin microfilaments are the main cytoskeletal components present at both presynaptic and postsynaptic terminals in glutamatergic synapses. However, in the last few years it has been demonstrated that microtubules (MTs) transiently invade dendritic spines, promoting their maturation. Nevertheless, the presence and functions of MTs at the presynaptic site are still a matter of debate. Early electron microscopy (EM) studies revealed that MTs are present in the presynaptic terminals of the central nervous system (CNS) where they interact with synaptic vesicles (SVs) and reach the active zone. These observations have been reproduced by several EM protocols; however, there is empirical heterogeneity in detecting presynaptic MTs, since they appear to be both labile and unstable. Moreover, increasing evidence derived from studies in the fruit fly neuromuscular junction proposes different roles for MTs in regulating presynaptic function in physiological and pathological conditions. In this review, we summarize the main findings that support the presence and roles of MTs at presynaptic terminals, integrating descriptive and biochemical analyses, and studies performed in invertebrate genetic models.

摘要

神经系统生成神经元网络的能力依赖于突触连接的建立和维持。突触由功能不同的突触前和突触后部分组成。需要适当的突触结构来提供支持突触传递的结构基础,这一过程涉及细胞骨架动力学的变化。肌动蛋白微丝是谷氨酸能突触中突触前和突触后末端存在的主要细胞骨架成分。然而,在过去几年中,已证明微管(MTs)会短暂侵入树突棘,促进其成熟。尽管如此,MTs在突触前位点的存在和功能仍是一个有争议的问题。早期的电子显微镜(EM)研究表明,MTs存在于中枢神经系统(CNS)的突触前末端,在那里它们与突触小泡(SVs)相互作用并到达活性区。这些观察结果已被多种EM实验方法重现;然而,检测突触前MTs存在经验上的异质性,因为它们似乎既不稳定又易变。此外,越来越多来自果蝇神经肌肉接头研究的证据表明,MTs在生理和病理条件下调节突触前功能方面具有不同作用。在这篇综述中,我们总结了支持MTs在突触前末端存在和作用的主要发现,整合了描述性和生化分析以及在无脊椎动物遗传模型中进行的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e08/4958632/08f795214c2b/fnmol-09-00060-g001.jpg

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