Simple modeling of FtsZ polymers on flat and curved surfaces: correlation with experimental in vitro observations.

Alfonso Paez, Pablo Mateos-Gil, Ines Hörger, Jesús Mingorance, Germán Rivas, Miguel Vicente, Marisela Vélez, Pedro Tarazona
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Abstract

FtsZ is a GTPase that assembles at midcell into a dynamic ring that constricts the membrane to induce cell division in the majority of bacteria, in many archea and several organelles. In vitro, FtsZ polymerizes in a GTP-dependent manner forming a variety of filamentous flexible structures. Based on data derived from the measurement of the in vitro polymerization of Escherichia coli FtsZ cell division protein we have formulated a model in which the fine balance between curvature, flexibility and lateral interactions accounts for structural and dynamic properties of the FtsZ polymers observed with AFM. The experimental results have been used by the model to calibrate the interaction energies and the values obtained indicate that the filaments are very plastic. The extension of the model to explore filament behavior on a cylindrical surface has shown that the FtsZ condensates promoted by lateral interactions can easily form ring structures through minor modulations of either filament curvature or longitudinal bond energies. The condensation of short, monomer exchanging filaments into rings is shown to produce enough force to induce membrane deformations.PACS codes: 87.15.ak, 87.16.ka, 87.17.Ee.

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Abstract Image

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平面和曲面上 FtsZ 聚合物的简单建模:与体外实验观察结果的相关性。
FtsZ 是一种 GTP 酶,在大多数细菌、许多弓形虫和一些细胞器中,它能在细胞中期组装成一个动态环,收缩细胞膜以诱导细胞分裂。在体外,FtsZ 以依赖 GTP 的方式聚合,形成各种丝状柔性结构。根据对大肠杆菌 FtsZ 细胞分裂蛋白体外聚合的测量数据,我们建立了一个模型,其中曲率、柔性和横向相互作用之间的微妙平衡解释了用原子力显微镜观察到的 FtsZ 聚合物的结构和动态特性。该模型利用实验结果来校准相互作用能,所获得的数值表明丝的可塑性很强。将模型扩展到圆柱表面上的长丝行为探索表明,通过横向相互作用促进的 FtsZ 缩合物很容易通过对长丝曲率或纵向键能的微小调节形成环状结构。短的单体交换细丝凝结成环的过程被证明能产生足够的力来引起膜变形。PACS 编码:87.15.ak, 87.16.ka, 87.17.Ee。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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