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2
Analysis of the roles of the head domains of type IV rat neuronal intermediate filament proteins in filament assembly using domain-swapped chimeric proteins.利用结构域交换嵌合蛋白分析IV型大鼠神经元中间丝蛋白头部结构域在丝组装中的作用。
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Assembly properties of amino- and carboxyl-terminally truncated neurofilament NF-H proteins with NF-L and NF-M in the presence and absence of vimentin.在有和没有波形蛋白的情况下,氨基末端和羧基末端截短的神经丝NF-H蛋白与NF-L和NF-M的组装特性。
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Self-assembly in Vitro of the 68,000 molecular weight component of the mammalian neurofilament triplet proteins into intermediate-sized filaments.哺乳动物神经丝三联体蛋白68000分子量组分在体外自组装成中等大小的丝。
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在不存在预先存在的细胞质中间丝的情况下,IV型神经元中间丝在非神经元细胞中的组装。

Assembly of type IV neuronal intermediate filaments in nonneuronal cells in the absence of preexisting cytoplasmic intermediate filaments.

作者信息

Ching G Y, Liem R K

机构信息

Department of Pathology, Columbia University College of Physicians and Surgeons, New York, NY 10032.

出版信息

J Cell Biol. 1993 Sep;122(6):1323-35. doi: 10.1083/jcb.122.6.1323.

DOI:10.1083/jcb.122.6.1323
PMID:8376465
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2119857/
Abstract

We report here on the in vivo assembly of alpha-internexin, a type IV neuronal intermediate filament protein, in transfected cultured cells, comparing its assembly properties with those of the neurofilament triplet proteins (NF-L, NF-M, and NF-H). Like the neurofilament triplet proteins, alpha-internexin coassembles with vimentin into filaments. To study the assembly characteristics of these proteins in the absence of a preexisting filament network, transient transfection experiments were performed with a non-neuronal cell line lacking cytoplasmic intermediate filaments. The results showed that only alpha-internexin was able to self-assemble into extensive filamentous networks. In contrast, the neurofilament triplet proteins were incapable of homopolymeric assembly into filamentous arrays in vivo. NF-L coassembled with either NF-M or NF-H into filamentous structures in the transfected cells, but NF-M could not form filaments with NF-H. alpha-internexin could coassemble with each of the neurofilament triplet proteins in the transfected cells to form filaments. When all but 2 and 10 amino acid residues were removed from the tail domains of NF-L and NF-M, respectively, the resulting NF-L and NF-M deletion mutants retained the ability to coassemble with alpha-internexin into filamentous networks. These mutants were also capable of forming filaments with other wild-type neurofilament triplet protein subunits. These results suggest that the tail domains of NF-L and NF-M are dispensable for normal coassembly of each of these proteins with other type IV intermediate filament proteins to form filaments.

摘要

我们在此报告α-中间丝蛋白(一种IV型神经元中间丝蛋白)在转染的培养细胞中的体内组装情况,并将其组装特性与神经丝三联体蛋白(NF-L、NF-M和NF-H)的组装特性进行比较。与神经丝三联体蛋白一样,α-中间丝蛋白与波形蛋白共同组装成丝。为了在不存在预先存在的丝状网络的情况下研究这些蛋白的组装特性,我们对缺乏细胞质中间丝的非神经元细胞系进行了瞬时转染实验。结果表明,只有α-中间丝蛋白能够自组装成广泛的丝状网络。相比之下,神经丝三联体蛋白在体内不能同源聚合组装成丝状阵列。NF-L与NF-M或NF-H在转染细胞中共组装成丝状结构,但NF-M不能与NF-H形成丝。α-中间丝蛋白可以与转染细胞中的每种神经丝三联体蛋白共同组装形成丝。当分别从NF-L和NF-M的尾部结构域中去除除2个和10个氨基酸残基以外的所有氨基酸残基时,所得的NF-L和NF-M缺失突变体保留了与α-中间丝蛋白共同组装成丝状网络的能力。这些突变体也能够与其他野生型神经丝三联体蛋白亚基形成丝。这些结果表明,NF-L和NF-M的尾部结构域对于这些蛋白中的每一种与其他IV型中间丝蛋白正常共同组装形成丝来说是可有可无的。