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外周蛋白在SW13细胞中组装成同聚物。

Peripherin assembles into homopolymers in SW13 cells.

作者信息

Cui C, Stambrook P J, Parysek L M

机构信息

Department of Cell Biology, Neurobiology and Anatomy, University of Cincinnati College of Medicine, OH 45267-0521, USA.

出版信息

J Cell Sci. 1995 Oct;108 ( Pt 10):3279-84. doi: 10.1242/jcs.108.10.3279.

Abstract

The properties of full-length and mutant peripherins were studied in intermediate filament-less SW13 cells to define regions of peripherin that are essential for initiation of filament assembly. A full-length rat peripherin gene transfected into SW13 cells resulted in filament formation, consistent with the close structural relationship of peripherin to other type III intermediate filament proteins that readily form homopolymers. Translation of full-length rat peripherin is initiated predominantly at the second of two inframe AUGs. Deletions within the amino terminus of wild-type peripherin abolished its ability to form filaments in SW13 cells. In contrast, deletion of the entire carboxyl-terminal tail of peripherin did not affect its ability to form filamentous arrays in transfected SW13 cells. These results indicate that, of the intermediate filament proteins that are expressed in mature neurons, only peripherin and alpha-internexin are capable of making homopolymer intermediate filaments. In addition, mutations of the carboxyl tail of peripherin generally do not interfere with filament network formation.

摘要

为了确定外周蛋白中对于细丝组装起始至关重要的区域,我们在无中间丝的SW13细胞中研究了全长和突变型外周蛋白的特性。将一个全长大鼠外周蛋白基因转染到SW13细胞中导致了细丝形成,这与外周蛋白与其他易于形成同聚物的III型中间丝蛋白的紧密结构关系一致。全长大鼠外周蛋白的翻译主要在两个读框内AUG中的第二个起始。野生型外周蛋白氨基末端的缺失消除了其在SW13细胞中形成细丝的能力。相反,外周蛋白整个羧基末端尾巴的缺失并不影响其在转染的SW13细胞中形成丝状阵列的能力。这些结果表明,在成熟神经元中表达的中间丝蛋白中,只有外周蛋白和α-中间连接蛋白能够形成同聚物中间丝。此外,外周蛋白羧基尾巴的突变通常不会干扰细丝网络的形成。

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