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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。

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.

作者信息

Sun D, Macioce P, Chin S S, Liem R K

机构信息

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

出版信息

J Neurochem. 1997 Mar;68(3):917-26. doi: 10.1046/j.1471-4159.1997.68030917.x.

DOI:10.1046/j.1471-4159.1997.68030917.x
PMID:9048736
Abstract

To understand the assembly characteristics of the high-molecular-weight neurofilament protein (NF-H), carboxyl- and amino-terminally deleted NF-H proteins were examined by transiently cotransfecting mutant NF-H constructs with the other neurofilament triplet proteins, low- and middle-molecular-weight neurofilament protein (NF-L and NF-M, respectively), in the presence or absence of cytoplasmic vimentin. The results confirm that NF-H can coassemble with vimentin and NF-L but not with NF-M into filamentous networks. Deletions from the amino-terminus show that the N-terminal head is necessary for the coassembly of NF-H with vimentin, NF-L, or NF-M/vimentin. However, headless NF-H or NF-H from which the head and a part of the rod is removed can still incorporate into an NF-L/vimentin network. Deletion of the carboxyl-terminal tail of NF-H shows that this region is not essential for coassembly with vimentin but is important for coassembly with NF-L into an extensive filamentous network. Carboxyl-terminal deletion into the alpha-helical rod results in a dominant-negative mutant, which disrupts all the intermediate filament networks. These results indicate that NF-L is the preferred partner of NF-H over vimentin and NF-M, the head region of NF-H is important for the formation of NF-L/NF-H filaments, and the tail region of NF-H is important to form an extensive network of NF-L/NF-H filaments.

摘要

为了解高分子量神经丝蛋白(NF-H)的组装特性,通过在有或无细胞质波形蛋白存在的情况下,将突变型NF-H构建体与其他神经丝三联体蛋白,即低分子量和中分子量神经丝蛋白(分别为NF-L和NF-M)瞬时共转染,来检测羧基末端和氨基末端缺失的NF-H蛋白。结果证实,NF-H可与波形蛋白和NF-L共同组装成丝状网络,但不能与NF-M共同组装。氨基末端的缺失表明,N端头部对于NF-H与波形蛋白、NF-L或NF-M/波形蛋白的共同组装是必需的。然而,无头NF-H或去除了头部和部分杆状区的NF-H仍可并入NF-L/波形蛋白网络。NF-H羧基末端尾巴的缺失表明,该区域对于与波形蛋白的共同组装并非必需,但对于与NF-L共同组装成广泛的丝状网络很重要。羧基末端缺失至α-螺旋杆状区会产生一个显性负突变体,它会破坏所有中间丝网络。这些结果表明,相对于波形蛋白和NF-M,NF-L是NF-H的首选伙伴,NF-H的头部区域对于NF-L/NF-H细丝的形成很重要,而NF-H的尾部区域对于形成广泛的NF-L/NF-H细丝网络很重要。

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