Schröder Gunnar, Lanka Erich
Division of Molecular Microbiology, Biozentrum, University of Basel, Klingelbergstrasse 50/70, CH-4056 Basel, Switzerland.
Plasmid. 2005 Jul;54(1):1-25. doi: 10.1016/j.plasmid.2005.02.001.
The mating pair formation (Mpf) system functions as a secretion machinery for intercellular DNA transfer during bacterial conjugation. The components of the Mpf system, comprising a minimal set of 10 conserved proteins, form a membrane-spanning protein complex and a surface-exposed sex pilus, which both serve to establish intimate physical contacts with a recipient bacterium. To function as a DNA secretion apparatus the Mpf complex additionally requires the coupling protein (CP). The CP interacts with the DNA substrate and couples it to the secretion pore formed by the Mpf system. Mpf/CP conjugation systems belong to the family of type IV secretion systems (T4SS), which also includes DNA-uptake and -release systems, as well as effector protein translocation systems of bacterial pathogens such as Agrobacterium tumefaciens (VirB/VirD4) and Helicobacter pylori (Cag). The increased efforts to unravel the molecular mechanisms of type IV secretion have largely advanced our current understanding of the Mpf/CP system of bacterial conjugation systems. It has become apparent that proteins coupled to DNA rather than DNA itself are the actively transported substrates during bacterial conjugation. We here present a unified and updated view of the functioning and the molecular architecture of the Mpf/CP machinery.
配对形成(Mpf)系统在细菌接合过程中作为细胞间DNA转移的分泌机制发挥作用。Mpf系统的组件由最少10种保守蛋白组成,形成一个跨膜蛋白复合物和一个表面暴露的性菌毛,二者均用于与受体细菌建立紧密的物理接触。为了作为DNA分泌装置发挥作用,Mpf复合物还需要偶联蛋白(CP)。CP与DNA底物相互作用,并将其与由Mpf系统形成的分泌孔偶联。Mpf/CP接合系统属于IV型分泌系统(T4SS)家族,该家族还包括DNA摄取和释放系统,以及诸如根癌土壤杆菌(VirB/VirD4)和幽门螺杆菌(Cag)等细菌病原体的效应蛋白转运系统。为阐明IV型分泌分子机制所做的更多努力在很大程度上推动了我们目前对细菌接合系统中Mpf/CP系统的理解。很明显,在细菌接合过程中,与DNA偶联的蛋白质而非DNA本身是被主动转运的底物。我们在此展示了关于Mpf/CP机制功能和分子结构的统一且更新的观点。