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结核分枝杆菌 FtsZ 的上层结构和动态特性。

Suprastructures and dynamic properties of Mycobacterium tuberculosis FtsZ.

机构信息

ERATO Actin Filament Dynamics Project, Japan Science and Technology Corporation, RIKEN Harima Institute at Spring 8, 1-1-1 Kouto, Sayo, Hyogo 679-5148, Japan.

出版信息

J Biol Chem. 2010 Apr 9;285(15):11281-9. doi: 10.1074/jbc.M109.084079. Epub 2010 Feb 5.

Abstract

Tuberculosis causes the most death in humans by any bacterium. Drug targeting of bacterial cytoskeletal proteins requires detailed knowledge of the various filamentous suprastructures and dynamic properties. Here, we have investigated by high resolution electron microscopy the assembly of cell division protein and microtubule homolog FtsZ from Mycobacterium tuberculosis (MtbFtsZ) in vitro in the presence of various monovalent salts, crowding agents and polycations. Supramolecular structures, including two-dimensional rings, three-dimensional toroids, and multistranded helices formed in the presence of molecular crowding, were similar to those observed by fluorescence microscopy in bacteria in vivo. Dynamic properties of MtbFtsZ filaments were visualized by light scattering and real time total internal reflection fluorescence microscopy. Interestingly, MtbFtsZ revealed a form of dynamic instability at steady state. Cation-induced condensation phenomena of bacterial cytomotive polymers have not been investigated in any detail, although it is known that many bacteria can contain high amounts of polycations, which may modulate the prokaryotic cytoskeleton. We find that above a threshold concentration of polycations which varied with the valence of the cation, ionic strength, and pH, MtbFtsZ mainly formed sheets. The general features of these cation-induced condensation phenomena could be explained in the framework of the Manning condensation theory. Chirality and packing defects limited the dimensions of sheets and toroids at steady state as predicted by theoretical models. In first approximation simple physical principles seem to govern the formation of MtbFtsZ suprastructures.

摘要

结核分枝杆菌是造成人类因细菌感染而死亡的首要原因。针对细菌细胞骨架蛋白的药物靶向治疗需要对各种丝状超结构和动态特性有详细的了解。在这里,我们通过高分辨率电子显微镜研究了结核分枝杆菌(MtbFtsZ)细胞分裂蛋白和微管同源物 FtsZ 在各种单价盐、拥挤剂和聚阳离子存在的情况下的体外组装。在分子拥挤的存在下形成的超分子结构,包括二维环、三维环和多股螺旋,与体内细菌中荧光显微镜观察到的结构相似。通过光散射和实时全内反射荧光显微镜观察到 MtbFtsZ 纤维的动态特性。有趣的是,MtbFtsZ 在稳态下表现出一种动态不稳定性的形式。尽管人们知道许多细菌可以含有大量的聚阳离子,这可能会调节原核细胞骨架,但尚未对细菌运动聚合物的阳离子诱导凝聚现象进行详细研究。我们发现,在聚阳离子的阈值浓度以上,该浓度随阳离子的价态、离子强度和 pH 值而变化,MtbFtsZ 主要形成片状结构。这些阳离子诱导的凝聚现象的一般特征可以用 Manning 凝聚理论来解释。手性和包装缺陷限制了片状结构和环在稳态下的尺寸,这与理论模型的预测一致。在初步近似中,简单的物理原理似乎可以控制 MtbFtsZ 超结构的形成。

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