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小鼠核纤层蛋白A头部结构域的最后二十个残基包含体外形成头对头聚合物的重要结构元件。

The last twenty residues in the head domain of mouse lamin A contain important structural elements for formation of head-to-tail polymers in vitro.

作者信息

Isobe Kazuhiro, Gohara Rumi, Ueda Toshihisa, Takasaki Yozo, Ando Shoji

机构信息

Division of Biopolymer Research, Department of Biomolecular Sciences, Faculty of Medicine, Saga University, Nabeshima, Saga, Japan.

出版信息

Biosci Biotechnol Biochem. 2007 May;71(5):1252-9. doi: 10.1271/bbb.60674. Epub 2007 May 7.

Abstract

Nuclear lamins are a type of intermediate filament (IF) proteins. They have a characteristic tripartite domain structure with a alpha-helical rod domain flanked by non-alpha-helical N-terminal head and C-terminal tail domains. While the head domain has been shown to be important for the formation of head-to-tail polymers that are critical assembly intermediates for lamin IFs, essential structural elements in this domain have remained obscure. As a first step to remedy this, a series of mouse lamin A mutants in which the head domain (30 amino acid residues) was deleted stepwise from the N-terminus at intervals of 10 residues were bacterially expressed. The assembly properties in vitro of the purified recombinant proteins were explored by electron microscopy. We observed that while a lamin A mutant lacking N-terminal 10 residues formed head-to-tail polymers, a mutant lacking N-terminal 20 residues or the whole head domain (30 residues) showed significantly decreased potency to form head-to-tail polymers. These results suggest that the last 20 residues (from Arg-11 to Gln-30) of the head domain of mouse lamin A contain essential structures for the formation of head-to-tail polymers. The last 20 residues of the head domain include several conserved residues between A- and B-type lamins and also the phosphorylation site for cdc2 kinase, which affects lamin IF organization in vivo and in vitro. Our results provide clues to the molecular mechanism by which the head domain plays a crucial role in lamin polymerization.

摘要

核纤层蛋白是一类中间丝(IF)蛋白。它们具有典型的三重结构域结构,其α-螺旋杆状结构域两侧是非α-螺旋的N端头部和C端尾部结构域。虽然已证明头部结构域对于头对头聚合物的形成很重要,而头对头聚合物是核纤层中间丝关键的组装中间体,但该结构域中的关键结构元件仍不清楚。作为解决这一问题的第一步,我们逐步从N端以10个残基的间隔删除头部结构域(30个氨基酸残基),构建了一系列小鼠核纤层蛋白A突变体,并在细菌中进行表达。通过电子显微镜研究了纯化重组蛋白在体外的组装特性。我们观察到,虽然缺少N端10个残基的核纤层蛋白A突变体形成了头对头聚合物,但缺少N端20个残基或整个头部结构域(30个残基)的突变体形成头对头聚合物的能力显著下降。这些结果表明,小鼠核纤层蛋白A头部结构域的最后20个残基(从Arg-11到Gln-30)包含形成头对头聚合物的关键结构。头部结构域的最后20个残基包括A类和B类核纤层蛋白之间的几个保守残基,以及cdc2激酶的磷酸化位点,该位点在体内和体外都会影响核纤层中间丝的组织。我们的结果为头部结构域在核纤层蛋白聚合中发挥关键作用的分子机制提供了线索。

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