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FtsZ聚合分析:简单方案及注意事项。

FtsZ polymerization assays: simple protocols and considerations.

作者信息

Król Ewa, Scheffers Dirk-Jan

机构信息

Department of Molecular Microbiology, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen.

出版信息

J Vis Exp. 2013 Nov 16(81):e50844. doi: 10.3791/50844.

Abstract

During bacterial cell division, the essential protein FtsZ assembles in the middle of the cell to form the so-called Z-ring. FtsZ polymerizes into long filaments in the presence of GTP in vitro, and polymerization is regulated by several accessory proteins. FtsZ polymerization has been extensively studied in vitro using basic methods including light scattering, sedimentation, GTP hydrolysis assays and electron microscopy. Buffer conditions influence both the polymerization properties of FtsZ, and the ability of FtsZ to interact with regulatory proteins. Here, we describe protocols for FtsZ polymerization studies and validate conditions and controls using Escherichia coli and Bacillus subtilis FtsZ as model proteins. A low speed sedimentation assay is introduced that allows the study of the interaction of FtsZ with proteins that bundle or tubulate FtsZ polymers. An improved GTPase assay protocol is described that allows testing of GTP hydrolysis over time using various conditions in a 96-well plate setup, with standardized incubation times that abolish variation in color development in the phosphate detection reaction. The preparation of samples for light scattering studies and electron microscopy is described. Several buffers are used to establish suitable buffer pH and salt concentration for FtsZ polymerization studies. A high concentration of KCl is the best for most of the experiments. Our methods provide a starting point for the in vitro characterization of FtsZ, not only from E. coli and B. subtilis but from any other bacterium. As such, the methods can be used for studies of the interaction of FtsZ with regulatory proteins or the testing of antibacterial drugs which may affect FtsZ polymerization.

摘要

在细菌细胞分裂过程中,必需蛋白FtsZ在细胞中部组装形成所谓的Z环。FtsZ在体外GTP存在的情况下聚合成长丝,并且聚合受几种辅助蛋白的调节。FtsZ聚合已通过包括光散射、沉降、GTP水解测定和电子显微镜等基本方法在体外进行了广泛研究。缓冲条件既影响FtsZ的聚合特性,也影响FtsZ与调节蛋白相互作用的能力。在这里,我们描述了FtsZ聚合研究的方案,并使用大肠杆菌和枯草芽孢杆菌FtsZ作为模型蛋白验证了条件和对照。引入了一种低速沉降测定法,该方法可以研究FtsZ与使FtsZ聚合物成束或形成微管的蛋白之间的相互作用。描述了一种改进的GTP酶测定方案,该方案允许在96孔板设置中使用各种条件随时间测试GTP水解,具有标准化的孵育时间,消除了磷酸盐检测反应中显色的变化。描述了用于光散射研究和电子显微镜的样品制备。使用几种缓冲液来确定适合FtsZ聚合研究的缓冲液pH值和盐浓度。高浓度的KCl对大多数实验来说是最好的。我们的方法为FtsZ的体外表征提供了一个起点,不仅适用于大肠杆菌和枯草芽孢杆菌的FtsZ,也适用于任何其他细菌的FtsZ。因此,这些方法可用于研究FtsZ与调节蛋白的相互作用或测试可能影响FtsZ聚合的抗菌药物。

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