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肌球蛋白II和V亚型在培养的大鼠交感神经元中的定位及其在突触前功能中的潜在作用。

Localization of myosin II and V isoforms in cultured rat sympathetic neurones and their potential involvement in presynaptic function.

作者信息

Takagishi Yoshiko, Futaki Sugiko, Itoh Kanako, Espreafico Enilza M, Murakami Noriko, Murata Yoshiharu, Mochida Sumiko

机构信息

Research Institute of Environmental Medicine, Nagoya University, Nagoya 464-8601, Japan.

出版信息

J Physiol. 2005 Nov 15;569(Pt 1):195-208. doi: 10.1113/jphysiol.2005.095943. Epub 2005 Sep 15.

Abstract

While vesicle transport is one of the principal functions of myosin motors in neurones, the role played by specific myosin subtypes in discrete vesicle trafficking is poorly understood. We conducted electrophysiological and morphological experiments to determine whether myosin isoforms II and V might be involved in the transport of small synaptic vesicles in presynaptic nerve terminals of a model cholinergic synapse. Electron microscopy revealed the presence of normal synaptic architecture and synaptic vesicle density in presynaptic terminals of cultured superior cervical ganglion neurones (SCGNs) from myosin Va null rats (dilute-opisthotonus, dop). Similarly, electrophysiological analyses of synaptic transmission and synaptic vesicle cycling at paired SCGN synapses failed to uncover any significant differences in synaptic development and function between normal and dop rats. Immunocytochemistry and in situ localization of green fluorescent protein (GFP)-fusion proteins in wild-type synapses revealed that myosins IIB and Va were distributed throughout the cell soma and processes of SCGNs, while myosins IIA and Vb were not detected in SCGNs. Myosin Va was conspicuously absent in presynaptic nerve terminals, but myosin IIB alone was found to be expressed. Furthermore, synaptic transmission was inhibited by introduction of myosin IIB heavy chain fragments into presynaptic terminals of SCGNs. Together these results suggest that only myosin IIB isoform participates in vesicle trafficking in presynaptic nerve terminals of cultured SCGNs.

摘要

虽然囊泡运输是神经元中肌球蛋白马达的主要功能之一,但特定肌球蛋白亚型在离散囊泡运输中所起的作用却鲜为人知。我们进行了电生理和形态学实验,以确定肌球蛋白同工型II和V是否可能参与模型胆碱能突触突触前神经末梢中小突触囊泡的运输。电子显微镜显示,来自肌球蛋白Va基因敲除大鼠(稀释性角弓反张,dop)的培养的颈上神经节神经元(SCGNs)的突触前末梢存在正常的突触结构和突触囊泡密度。同样,对配对的SCGN突触的突触传递和突触囊泡循环的电生理分析未能发现正常大鼠和dop大鼠之间在突触发育和功能上有任何显著差异。野生型突触中绿色荧光蛋白(GFP)融合蛋白的免疫细胞化学和原位定位显示,肌球蛋白IIB和Va分布在SCGNs的整个细胞体和突起中,而在SCGNs中未检测到肌球蛋白IIA和Vb。突触前神经末梢明显缺乏肌球蛋白Va,但仅发现肌球蛋白IIB有表达。此外,将肌球蛋白IIB重链片段引入SCGNs的突触前末梢可抑制突触传递。这些结果共同表明,只有肌球蛋白IIB同工型参与培养的SCGNs突触前神经末梢的囊泡运输。

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