Karimova Gouzel, Dautin Nathalie, Ladant Daniel
Unité de Biochimie des Interactions Macromoléculaires, Institut Pasteur, 75724 Paris, Cedex 15, France.
J Bacteriol. 2005 Apr;187(7):2233-43. doi: 10.1128/JB.187.7.2233-2243.2005.
Formation of the Escherichia coli division septum is catalyzed by a number of essential proteins (named Fts) that assemble into a ring-like structure at the future division site. Several of these Fts proteins are intrinsic transmembrane proteins whose functions are largely unknown. Although these proteins appear to be recruited to the division site in a hierarchical order, the molecular interactions underlying the assembly of the cell division machinery remain mostly unspecified. In the present study, we used a bacterial two-hybrid system based on interaction-mediated reconstitution of a cyclic AMP (cAMP) signaling cascade to unravel the molecular basis of septum assembly by analyzing the protein interaction network among E. coli cell division proteins. Our results indicate that the Fts proteins are connected to one another through multiple interactions. A deletion mapping analysis carried out with two of these proteins, FtsQ and FtsI, revealed that different regions of the polypeptides are involved in their associations with their partners. Furthermore, we showed that the association between two Fts hybrid proteins could be modulated by the coexpression of a third Fts partner. Altogether, these data suggest that the cell division machinery assembly is driven by the cooperative association among the different Fts proteins to form a dynamic multiprotein structure at the septum site. In addition, our study shows that the cAMP-based two-hybrid system is particularly appropriate for analyzing molecular interactions between membrane proteins.
大肠杆菌分裂隔膜的形成由多种必需蛋白(称为Fts)催化,这些蛋白在未来的分裂位点组装成环状结构。其中一些Fts蛋白是内在跨膜蛋白,其功能大多未知。尽管这些蛋白似乎按等级顺序被招募到分裂位点,但细胞分裂机器组装背后的分子相互作用大多仍未明确。在本研究中,我们使用了基于相互作用介导的环磷酸腺苷(cAMP)信号级联重建的细菌双杂交系统,通过分析大肠杆菌细胞分裂蛋白之间的蛋白质相互作用网络来揭示隔膜组装的分子基础。我们的结果表明,Fts蛋白通过多种相互作用相互连接。对其中两种蛋白FtsQ和FtsI进行的缺失定位分析表明,多肽的不同区域参与了它们与伙伴的关联。此外,我们表明两种Fts杂交蛋白之间的关联可以通过第三种Fts伙伴的共表达来调节。总之,这些数据表明细胞分裂机器的组装是由不同Fts蛋白之间的协同关联驱动的,以在隔膜位点形成动态多蛋白结构。此外,我们的研究表明基于cAMP的双杂交系统特别适合分析膜蛋白之间的分子相互作用。