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II型角蛋白1链的保守H1结构域在小鼠和人类角蛋白1/角蛋白10中间丝中相邻分子在二聚体至四聚体结构水平上的排列中起着至关重要的作用。

The conserved H1 domain of the type II keratin 1 chain plays an essential role in the alignment of nearest neighbor molecules in mouse and human keratin 1/keratin 10 intermediate filaments at the two- to four-molecule level of structure.

作者信息

Steinert P M, Parry D A

机构信息

Skin Biology Branch, National Institutes of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

J Biol Chem. 1993 Feb 5;268(4):2878-87.

PMID:7679103
Abstract

A number of fundamental questions pertaining to the registration and packing of the constituent coiled-coil molecules in keratin intermediate filaments, and to the regions of the sequences that are responsible for these levels of organization, remain to be elucidated. In this study, small assembly-competent oligomers of mouse and human keratin 1/keratin 10 keratin filaments were cross-linked by the formation of disulfide bonds catalyzed by the copper-phenanthroline reaction. By isolation and characterization of cross-linked peptides, it has been possible to establish two major modes of molecule alignment: an antiparallel arrangement of half-staggered molecules with their 2B segments overlapping and an antiparallel arrangement of molecules in close axial registration. These data confirm earlier models based on theoretical considerations (Crewther, W. G., Dowling, L. M., Steinert, P. M., and Parry, D. A. D. (1983) Int. J. Biol. Macromol. 5, 267-274). Interestingly, these models place the conserved H1 and H2 end domain segments, which flank the ends of the rod domains of the type II keratin 1 chain, in alignment with either the ends of the rod domains and/or with the L2 segment near the center of the rod domains, of the nearest neighbor molecules. Competition experiments with synthetic peptides suggest that the conserved H1 (and possibly H2) subdomain sequences unique to type II keratin chains play pivotal roles in the registration of neighboring molecules in keratin filaments. The data thus afford a molecular explanation for why keratin filaments require a type II chain for assembly in vivo and in vitro.

摘要

关于角蛋白中间丝中组成性卷曲螺旋分子的登记和包装,以及负责这些组织水平的序列区域,仍有许多基本问题有待阐明。在本研究中,小鼠和人类角蛋白1/角蛋白10角蛋白丝的具有小组装能力的寡聚体通过铜-菲咯啉反应催化形成二硫键进行交联。通过对交联肽的分离和表征,已经能够建立两种主要的分子排列模式:半交错分子的反平行排列,其2B段重叠,以及紧密轴向对齐的分子的反平行排列。这些数据证实了基于理论考虑的早期模型(Crewther, W. G., Dowling, L. M., Steinert, P. M., and Parry, D. A. D. (1983) Int. J. Biol. Macromol. 5, 267-274)。有趣的是,这些模型将保守的H1和H2末端结构域片段(位于II型角蛋白1链杆状结构域末端两侧)与最近邻分子的杆状结构域末端和/或杆状结构域中心附近的L2段对齐。用合成肽进行的竞争实验表明,II型角蛋白链特有的保守H1(可能还有H2)亚结构域序列在角蛋白丝中相邻分子的对齐中起关键作用。因此,这些数据为角蛋白丝在体内和体外组装为何需要II型链提供了分子解释。

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