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精胺诱导的微管锥形螺旋结构的分级组装途径。

Hierarchical Assembly Pathways of Spermine-Induced Tubulin Conical-Spiral Architectures.

机构信息

Institute of Chemistry, The Hebrew University of Jerusalem, Edmond J. Safra Campus, Givat Ram, Jerusalem 9190401, Israel.

Institute for Drug Research, The School of Pharmacy, Faculty of Medicine, The Hebrew University of Jerusalem, Ein Karem, Jerusalem 9112102, Israel.

出版信息

ACS Nano. 2021 May 25;15(5):8836-8847. doi: 10.1021/acsnano.1c01374. Epub 2021 Apr 26.

Abstract

Tubulin, an essential cytoskeletal protein, assembles into various morphologies by interacting with an array of cellular factors. One of these factors is the endogenous polyamine spermine, which may promote and stabilize tubulin assemblies. Nevertheless, the assembled structures and their formation pathways are poorly known. Here we show that spermine induced the assembly of tubulin into several hierarchical architectures based on a tubulin conical-spiral subunit. Using solution X-ray scattering and cryo-TEM, we found that with progressive increase of spermine concentration tubulin dimers assembled into conical-frustum-spirals of increasing length, containing up to three helical turns. The subunits with three helical turns were then assembled into tubules through base-to-top packing and formed antiparallel bundles of tubulin conical-spiral tubules in a distorted hexagonal symmetry. Further increase of the spermine concentration led to inverted tubulin tubules assembled in hexagonal bundles. Time-resolved experiments revealed that tubulin assemblies formed at higher spermine concentrations assembled from intermediates, similar to those formed at low spermine concentrations. These results are distinct from the classical transition between twisted ribbons, helical, and tubular assemblies, and provide insight into the versatile morphologies that tubulin can form. Furthermore, they may contribute to our understanding of the interactions that control the composition and construction of protein-based biomaterials.

摘要

微管蛋白是一种必需的细胞骨架蛋白,通过与一系列细胞因子相互作用,组装成各种形态。这些因子之一是内源性多胺精胺,它可能促进和稳定微管蛋白的组装。然而,组装的结构及其形成途径知之甚少。在这里,我们展示了精胺诱导微管蛋白组装成几种基于微管锥形螺旋亚基的分层结构。使用溶液 X 射线散射和 cryo-TEM,我们发现随着精胺浓度的逐渐增加,微管二聚体组装成长度不断增加的锥形-截头圆锥螺旋,其中包含多达三个螺旋。然后,具有三个螺旋的亚基通过基底到顶部的包装组装成微管,并在扭曲的六边形对称性中形成微管锥形螺旋微管的平行束。进一步增加精胺浓度会导致反向微管组装成六边形束。时间分辨实验表明,在较高精胺浓度下形成的微管组装体是由中间体组装而成的,类似于在较低精胺浓度下形成的中间体。这些结果与经典的扭曲带、螺旋和管状组装之间的转变不同,为微管蛋白可以形成的多种形态提供了深入的了解。此外,它们可能有助于我们理解控制基于蛋白质的生物材料组成和结构的相互作用。

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