Strelkov Sergei V, Herrmann Harald, Geisler Norbert, Wedig Tatjana, Zimbelmann Ralf, Aebi Ueli, Burkhard Peter
Maurice E.Müller Institute for Structural Biology, Biozentrum, University of Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland.
EMBO J. 2002 Mar 15;21(6):1255-66. doi: 10.1093/emboj/21.6.1255.
Intermediate filaments (IFs) are key components of the cytoskeleton in higher eukaryotic cells. The elementary IF 'building block' is an elongated coiled-coil dimer consisting of four consecutive alpha-helical segments. The segments 1A and 2B include highly conserved sequences and are critically involved in IF assembly. Based on the crystal structures of three human vimentin fragments at 1.4-2.3 A resolution (PDB entries 1gk4, 1gk6 and 1gk7), we have established the molecular organization of these two segments. The fragment corresponding to segment 1A forms a single, amphipatic alpha-helix, which is compatible with a coiled-coil geometry. While this segment might yield a coiled coil within an isolated dimer, monomeric 1A helices are likely to play a role in specific dimer-dimer interactions during IF assembly. The 2B segment reveals a double-stranded coiled coil, which unwinds near residue Phe351 to accommodate a 'stutter'. A fragment containing the last seven heptads of 2B interferes heavily with IF assembly and also transforms mature vimentin filaments into a new kind of structure. These results provide the first insight into the architecture and functioning of IFs at the atomic level.
中间丝(IFs)是高等真核细胞细胞骨架的关键组成部分。基本的中间丝“构建模块”是一个由四个连续的α螺旋段组成的细长卷曲螺旋二聚体。1A和2B段包含高度保守的序列,并且在中间丝组装中起关键作用。基于三个分辨率为1.4 - 2.3 Å的人波形蛋白片段的晶体结构(蛋白质数据库条目1gk4、1gk6和1gk7),我们确定了这两段的分子组织。对应于1A段的片段形成一个单一的两亲性α螺旋,这与卷曲螺旋几何结构兼容。虽然该段可能在分离的二聚体内产生卷曲螺旋,但单体1A螺旋可能在中间丝组装过程中的特定二聚体 - 二聚体相互作用中发挥作用。2B段显示出一个双链卷曲螺旋,在苯丙氨酸351残基附近展开以容纳一个“口吃”。一个包含2B段最后七个七肽的片段严重干扰中间丝组装,并且还将成熟的波形蛋白丝转化为一种新的结构。这些结果首次在原子水平上深入了解了中间丝的结构和功能。