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Artificial septal targeting of Bacillus subtilis cell division proteins in Escherichia coli: An interspecies approach to the study of protein-protein interactions in multiprotein complexes

机译:大肠杆菌中的枯草芽孢杆菌细胞分裂蛋白的人工间隔靶向:一种研究多蛋白复合物中蛋白相互作用的种间方法

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摘要

Bacterial cell division is mediated by a set of proteins that assemble to form a large multiprotein complex called the divisome. Recent studies in Bacillus subtilis and Escherichia coli indicate that cell division proteins are involved in multiple cooperative binding interactions, thus presenting a technical challenge to the analysis of these interactions. We report here the use of an E. coli artificial septal targeting system for examining the interactions between the B. subtilis cell division proteins DivIB, FtsL, DivIC, and PBP 2B. This technique involves the fusion of one of the proteins (the “bait”) to ZapA, an E. coli protein targeted to mid-cell, and the fusion of a second potentially interacting partner (the “prey”) to green fluorescent protein (GFP). A positive interaction between two test proteins in E. coli leads to septal localization of the GFP fusion construct, which can be detected by fluorescence microscopy. Using this system, we present evidence for two sets of strong protein-protein interactions between B. subtilis divisomal proteins in E. coli, namely, DivIC with FtsL and DivIB with PBP 2B, that are independent of other B. subtilis cell division proteins and that do not disturb the cytokinesis process in the host cell. Our studies based on the coexpression of three or four of these B. subtilis cell division proteins suggest that interactions among these four proteins are not strong enough to allow the formation of a stable four-protein complex in E. coli in contrast to previous suggestions. Finally, our results demonstrate that E. coli artificial septal targeting is an efficient and alternative approach for detecting and characterizing stable protein-protein interactions within multiprotein complexes from other microorganisms. A salient feature of our approach is that it probably only detects the strongest interactions, thus giving an indication of whether some interactions suggested by other techniques may either be considerably weaker or due to false positives.
机译:细菌细胞分裂是由一组蛋白质介导的,这些蛋白质组装形成一个大的多蛋白复合物,称为“ divisome”。枯草芽孢杆菌和大肠杆菌的最新研究表明,细胞分裂蛋白参与多种协同结合相互作用,因此对这些相互作用的分析提出了技术挑战。我们在这里报告使用大肠杆菌人工间隔靶向系统来检查枯草芽孢杆菌细胞分裂蛋白DivIB,FtsL,DivIC和PBP 2B之间的相互作用。该技术涉及将一种蛋白质(“诱饵”)与靶向中细胞的大肠杆菌蛋白ZapA融合,以及将第二种可能相互作用的伴侣(“猎物”)与绿色荧光蛋白( GFP)。大肠杆菌中两种测试蛋白之间的正相互作用导致GFP融合构建体的间隔定位,可以通过荧光显微镜检测到。使用该系统,我们为大肠杆菌中的枯草芽孢杆菌二体分离蛋白之间的两组强蛋白相互作用提供了证据,即DivIC与FtsL和DivIB与PBP 2B,它们独立于其他枯草芽孢杆菌细胞分裂蛋白和不会干扰宿主细胞的胞质分裂过程。我们基于三种或四种枯草芽孢杆菌细胞分裂蛋白的共表达的研究表明,与以前的建议相比,这四种蛋白之间的相互作用不够强,无法在大肠杆菌中形成稳定的四蛋白复合物。最后,我们的结果表明,大肠杆菌人工隔垫靶向是一种有效的替代方法,可用于检测和表征来自其他微生物的多蛋白复合物中稳定的蛋白-蛋白相互作用。我们方法的一个显着特征是,它可能仅检测到最强的交互作用,从而表明了其他技术建议的某些交互作用是可能弱得多还是由于误报。

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