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Monitoring intermediate filament assembly by small-angle x-ray scattering reveals the molecular architecture of assembly intermediates

机译:通过小角度X射线散射监测中间丝的组装揭示了组装中间体的分子结构

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摘要

Intermediate filaments (IFs), along with microtubules, microfilaments, and associated cross-bridging proteins, constitute the cytoskeleton of metazoan cells. While crystallographic data on the dimer representing the elementary IF “building block” have recently become available, little structural detail is known about both the mature IF architecture and its assembly pathway. Here, we have applied solution small-angle x-ray scattering to investigate the in vitro assembly of a 53-kDa human IF protein vimentin at pH 8.4 by systematically varying the ionic strength conditions, and complemented these experiments by electron microscopy and analytical ultracentrifugation. While a vimentin solution in 5 mM Tris·HCl (pH 8.4) contains predominantly tetramers, addition of 20 mM NaCl induces further lateral assembly evidenced by the shift of the sedimentation coeficient and yields a distinct octameric intermediate. Four octamers eventually associate into unit-length filaments (ULFs) that anneal longitudinally. Based on the small-angle x-ray scattering experiments supplemented by crystallographic data and additional structural constraints, 3D molecular models of the vimentin tetramer, octamer, and ULF were constructed. Within each of the three oligomers, the adjacent dimers are aligned exclusively in an approximately half-staggered antiparallel A11 mode with a distance of 3.2–3.4 nm between their axes. The ULF appears to be a dynamic and a relatively loosely packed structure with a roughly even mass distribution over its cross-section.
机译:中间丝(IF)以及微管,微丝和相关的交叉桥蛋白构成后生细胞的细胞骨架。虽然最近已经出现了代表基本IF“构件”的二聚体上的晶体学数据,但关于成熟IF体系结构及其组装途径的结构细节知之甚少。在这里,我们已应用溶液小角度X射线散射通过系统地改变离子强度条件来研究53 kDa人IF蛋白波形蛋白在pH 8.4的体外组装,并通过电子显微镜和分析超离心对这些实验进行了补充。尽管波形蛋白溶液在5 mM Tris·HCl(pH 8.4)中主要包含四聚体,但添加20 mM NaCl会引起进一步的侧向组装,这由沉降系数的变化证明,并产生了独特的八聚体中间体。四个八聚体最终结合成纵向退火的单位长度长丝(ULF)。基于小角度X射线散射实验,并结合晶体学数据和其他结构限制,构建了波形蛋白四聚体,八聚体和ULF的3D分子模型。在这三个低聚物中的每个中,相邻的二聚体仅以近似半交错的反平行A11模式对齐,它们的轴之间的距离为3.2–3.4 nm。 ULF似乎是一种动态且相对松散的结构,其横截面的质量分布大致均匀。

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