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中间丝组装:原纤维形成由决定性的二聚体-二聚体相互作用驱动。

Intermediate filament assembly: fibrillogenesis is driven by decisive dimer-dimer interactions.

作者信息

Herrmann H, Aebi U

机构信息

Division of Cell Biology, German Cancer Research Center, Heidelberg, Germany.

出版信息

Curr Opin Struct Biol. 1998 Apr;8(2):177-85. doi: 10.1016/s0959-440x(98)80035-3.

Abstract

Intermediate filaments are built from one to several members of a multigene family encoding fibrous proteins that share a highly conserved hierarchic assembly plan for the formation of multistranded filaments from distinctly structured extended coiled coils. Despite the rather low primary sequence identity, intermediate filaments form apparently similar filaments with regard to their spatial dimensions and physical properties. Over the past few years, substantial progress has been made in the elucidation of the complex expression patterns and clinically relevant phenotypes of intermediate filaments. The key question of how these filaments assemble and what the molecular architecture of their distinct assembly intermediates comprises, however, has still not been answered to the extent that has been achieved for microfilaments and microtubules.

摘要

中间丝由多基因家族中的一个或几个成员构建而成,该家族编码纤维蛋白,这些纤维蛋白在从结构独特的延伸卷曲螺旋形成多链丝的过程中共享高度保守的层次组装计划。尽管一级序列同一性相当低,但中间丝在空间尺寸和物理性质方面形成了明显相似的丝。在过去几年中,在阐明中间丝的复杂表达模式和临床相关表型方面取得了重大进展。然而,关于这些丝如何组装以及其不同组装中间体的分子结构是什么这一关键问题,尚未得到像微丝和微管那样程度的解答。

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