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Translation Elongation Factor EF-Tu Modulates Filament Formation of Actin-Like MreB Protein In Vitro

机译:翻译伸长因子EF-Tu在体外调节肌动蛋白样MREB蛋白的长丝形成

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EF-Tu has been shown to interact with actin-like protein MreB and to affect its localization in Escherichia and in Bacillus subtilis cells. We have purified YFP-MreB in an active form, which forms filaments on glass slides in vitro and was active in dynamic light-scattering assays, polymerizing in milliseconds after addition of magnesium. Purified EF-Tu enhanced the amount of MreB filaments, as seen by sedimentation assays, the speed of filament formation and the length of MreB filaments in vitro. EF-Tu had the strongest impact on MreB filaments in a 1:1 ratio, and EF-Tu co-sedimented with MreB filaments, revealing a stoichiometric interaction between both proteins. This was supported by cross-linking assays where 1:1 species were well detectable. When expressed in E. coli cells, B. subtilis MreB formed filaments and induced the formation of co-localizing B. subtilis EF-Tu structures, indicating that MreB can direct the positioning of EF-Tu structures in a heterologous cell system. Fluorescence recovery after photobleaching analysis showed that MreB filaments have a higher turnover in B. subtilis cells than in E coli cells, indicating different filament kinetics in homologous or heterologous cell systems. The data show that MreB can direct the localization of EF-Tu in vivo, which in turn positively affects the formation and dynamics of MreB filaments. Thus, EF-Tu is a modulator of the activity of a bacterial actin-like protein. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:EF-Tu的已被证明与肌动蛋白样蛋白相互作用MREB并影响其在大肠杆菌和枯草芽孢杆菌细胞中的分布。我们已经在活性形式,其形式长丝在体外对载玻片上并是有活性的动态光散射测定法纯化YFP-MREB,添加镁的后聚合以毫秒为单位。纯化的EF-Tu的增强MREB长丝的量,通过沉降测定,的细丝形成的速度和体外MREB长丝的长度所见。 EF-Tu的有在1上MREB长丝最强冲击:1的比例,以及EF-Tu的共沉淀与MREB长丝,揭示这两种蛋白之间的化学计量的相互作用。 1种是公检测:这是通过交联测定法,其中1支撑。当在大肠杆菌细胞中表达,枯草芽孢杆菌MREB形成长丝和诱导共定位枯草芽孢杆菌EF-Tu的结构的形成,这表明MREB可以直接与EF-Tu结构的定位中的异源细胞系统。光漂白后分析荧光恢复表明MREB丝具有在枯草芽孢杆菌细胞更高的营业额比在大肠杆菌细胞,这表明在同源或异源细胞系统不同长丝动力学。数据显示,MREB可以直接与EF-Tu在体内,这又有利地影响MREB丝的形成和动力学的本地化。因此,EF-Tu是细菌的肌动蛋白 - 样蛋白的活性的调节剂。 (c)2015年作者。 elsevier有限公司出版

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