Section of Molecular Microbiology, Department of Molecular Cell Biology, Amsterdam Institute of Molecules, Medicines and Systems, Vrije Universiteit Amsterdam, 1081 HV Amsterdam, The Netherlands.
J Biol Chem. 2013 Aug 23;288(34):24340-50. doi: 10.1074/jbc.M113.485888. Epub 2013 Jul 11.
Escherichia coli cell division is effected by a large assembly of proteins called the divisome, of which a subcomplex consisting of three bitopic inner membrane proteins, FtsQ, FtsB, and FtsL, is an essential part. These three proteins, hypothesized to link cytoplasmic to periplasmic events during cell division, contain large periplasmic domains that are of major importance for function and complex formation. The essential nature of this subcomplex, its low abundance, and its multiple interactions with key divisome components in the relatively accessible periplasm make it an attractive target for the development of protein-protein interaction inhibitors. Although the crystal structure of the periplasmic domain of FtsQ has been solved, the structure of the FtsQBL complex is unknown, with only very crude indications of the interactions in this complex. In this study, we used in vivo site-specific photo cross-linking to probe the surface of the FtsQ periplasmic domain for its interaction interfaces with FtsB and FtsL. An interaction hot spot for FtsB was identified around residue Ser-250 in the C-terminal region of FtsQ and a membrane-proximal interaction region for both proteins around residue Lys-59. Sequence alignment revealed a consensus motif overlapping with the C-terminal interaction hot spot, underlining the importance of this region in FtsQ. The identification of contact sites in the FtsQBL complex will guide future development of interaction inhibitors that block cell division.
大肠杆菌的细胞分裂是由一个称为分裂体的大型蛋白质组装体来实现的,其中由三个双拓扑内膜蛋白 FtsQ、FtsB 和 FtsL 组成的亚复合物是必不可少的一部分。这三种蛋白质被假设为在细胞分裂过程中连接细胞质和周质的事件,它们含有大量的周质结构域,这些结构域对于功能和复合物形成至关重要。这个亚复合物的本质是必需的,其丰度低,并且与相对可及的周质中的关键分裂体成分有多种相互作用,这使其成为开发蛋白-蛋白相互作用抑制剂的有吸引力的目标。尽管已经解决了 FtsQ 周质域的晶体结构,但 FtsQBL 复合物的结构仍然未知,只有这个复合物中相互作用的非常粗略的迹象。在这项研究中,我们使用体内定点光交联技术来探测 FtsQ 周质域的表面与其与 FtsB 和 FtsL 的相互作用界面。在 FtsQ 的 C 末端区域的残基 Ser-250 周围鉴定到了与 FtsB 的相互作用热点,并且在两个蛋白质的膜近端区域鉴定到了与 FtsL 的相互作用热点。序列比对揭示了与 C 末端相互作用热点重叠的共识基序,突出了该区域在 FtsQ 中的重要性。FtsQBL 复合物中接触位点的鉴定将指导未来开发阻止细胞分裂的相互作用抑制剂。