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神经丝蛋白组装时NF-M羧基末端尾部结构域的两种不同功能:形成交叉桥和使丝状物纵向伸长。

Two distinct functions of the carboxyl-terminal tail domain of NF-M upon neurofilament assembly: cross-bridge formation and longitudinal elongation of filaments.

作者信息

Nakagawa T, Chen J, Zhang Z, Kanai Y, Hirokawa N

机构信息

Department of Anatomy and Cell Biology, University of Tokyo, Faculty of Medicine, Japan.

出版信息

J Cell Biol. 1995 Apr;129(2):411-29. doi: 10.1083/jcb.129.2.411.

Abstract

Neurofilaments are the major cytoskeletal elements in the axon that take highly ordered structures composed of parallel arrays of 10-nm filaments linked to each other with frequent cross-bridges, and they are believed to maintain a highly polarized neuronal cell shape. Here we report the function of rat NF-M in this characteristic neurofilament assembly. Transfection experiments were done in an insect Sf9 cell line lacking endogenous intermediate filaments. NF-L and NF-M coassemble to form bundles of 10-nm filaments packed in a parallel manner with frequent cross-bridges resembling the neurofilament domains in the axon when expressed together in Sf9 cells. Considering the fact that the expression of either NF-L or NF-M alone in these cells results in neither formation of any ordered network of 10-nm filaments nor cross-bridge structures, NF-M plays a crucial role in this parallel filament assembly. In the case of NF-H the carboxyl-tail domain has been shown to constitute the cross-bridge structures. The similarity in molecular architecture between NF-M and NF-H suggests that the carboxyl-terminal tail domain of NF-M also constitutes cross-bridges. To examine this and to further investigate the function of the carboxyl-terminal tail domain of NF-M, we made various deletion mutants that lacked part of their tail domains, and we expressed these with NF-L. From this deletion mutant analysis, we conclude that the carboxyl-terminal tail domain of NF-M has two distinct functions. First, it is the structural component of cross-bridges, and these cross-bridges serve to control the spacing between core filaments. Second, the portion of the carboxyl-terminal tail domain of NF-M that is directly involved in cross-bridge formation affects the core filament assembly by helping them to elongate longitudinally so that they become straight.

摘要

神经丝是轴突中的主要细胞骨架成分,其具有由10纳米细丝的平行阵列组成的高度有序结构,这些细丝通过频繁的交叉桥相互连接,并且人们认为它们维持着高度极化的神经元细胞形状。在此,我们报告大鼠神经丝蛋白M(NF-M)在这种特征性神经丝组装中的功能。转染实验在缺乏内源性中间丝的昆虫Sf9细胞系中进行。当在Sf9细胞中共同表达时,神经丝蛋白轻链(NF-L)和NF-M共同组装形成10纳米细丝束,这些细丝以平行方式排列,具有频繁的交叉桥,类似于轴突中的神经丝结构域。鉴于在这些细胞中单独表达NF-L或NF-M均不会导致形成任何有序的10纳米细丝网络或交叉桥结构,NF-M在这种平行细丝组装中起着关键作用。就神经丝蛋白重链(NF-H)而言,其羧基末端结构域已被证明构成交叉桥结构。NF-M和NF-H在分子结构上的相似性表明,NF-M的羧基末端结构域也构成交叉桥。为了检验这一点并进一步研究NF-M羧基末端结构域的功能,我们构建了各种缺失其部分尾部结构域的缺失突变体,并将它们与NF-L一起表达。通过这种缺失突变体分析,我们得出结论,NF-M的羧基末端结构域具有两种不同的功能。首先,它是交叉桥的结构成分,这些交叉桥用于控制核心细丝之间的间距。其次,NF-M羧基末端结构域中直接参与交叉桥形成的部分通过帮助核心细丝纵向伸长从而使其变直来影响核心细丝组装。

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本文引用的文献

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Dynamics of the neuronal intermediate filaments.神经元中间丝的动力学
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