Vimentin filaments integrate low complexity domains in a highly complex helical structure
Vimentin filaments integrate low complexity domains in a highly complex helical structure
Abstract Intermediate filaments (IFs) are integral components of the cytoskeleton. They provide cells with tissue-specific mechanical properties and are involved in numerous cellular processes. Due to their intricate architecture, a 3D structure of IFs has remained elusive. Here we use cryo-focused ion beam milling, cryo-electron microscopy and tomography, to obtain a 3D structure of vimentin IFs (VIFs). VIFs assemble into a modular, densely-packed and highly-ordered helical symmetric structure of 40 α-helices in cross-section, organized into 5 protofibrils. Surprisingly, the intrinsically disordered head domains form an amyloid-like fiber in the center of VIFs, while the intrinsically disordered tails form lateral connections between the protofibrils. Our findings demonstrate how protein domains of low sequence complexity can complement well-folded protein domains to construct a biopolymer with striking strength and stretchability.
Beales Charlie T.、Turgay Yagmur、Kraxner Julia、Goldman Robert D.、Eibauer Matthias、Medalia Ohad、Weber Miriam S.、Sivagurunathan Suganya、Kronenberg-Tenga Rafael、K?ster Sarah、Boujemaa-Paterski Rajaa
细胞生物学生物物理学分子生物学
Beales Charlie T.,Turgay Yagmur,Kraxner Julia,Goldman Robert D.,Eibauer Matthias,Medalia Ohad,Weber Miriam S.,Sivagurunathan Suganya,Kronenberg-Tenga Rafael,K?ster Sarah,Boujemaa-Paterski Rajaa.Vimentin filaments integrate low complexity domains in a highly complex helical structure[EB/OL].(2025-03-28)[2025-04-28].https://www.biorxiv.org/content/10.1101/2023.05.22.541714.点此复制
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