Surana Neeraj K, Buscher Amy Z, Hardy Gail G, Grass Susan, Kehl-Fie Thomas, St Geme Joseph W
The Edward Mallinckrodt Department of Pediatrics and the Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, MO 63110, USA.
J Biol Chem. 2006 Jun 30;281(26):18051-8. doi: 10.1074/jbc.M600036200. Epub 2006 Apr 28.
The two-partner secretion pathway in Gram-negative bacteria consists of a TpsA exoprotein and a cognate TpsB outer membrane translocator protein. Previous work has demonstrated that the TpsB protein forms a beta-barrel structure with pore forming activity and facilitates translocation of the TpsA protein across the outer membrane. In this study, we characterized the functional domains of the Haemophilus influenzae HMW1B protein, a TpsB protein that interacts with the H. influenzae HMW1 adhesin. Using c-Myc epitope tag insertions and cysteine substitution mutagenesis, we discovered that HMW1B contains an N-terminal surface-localized domain, an internal periplasmic domain, and a C-terminal membrane anchor. Functional and biochemical analysis of the c-Myc epitope tag insertions and a series of HMW1B deletion constructs demonstrated that the periplasmic domain is required for secretion of HMW1 and that the C-terminal membrane anchor (HMW1B-(234-545)) is capable of oligomerization and pore formation. Similar to our observations with HMW1B, examination of a Bordetella pertussis TpsB protein called FhaC revealed that the C terminus of FhaC (FhaC-(232-585)) is capable of pore formation. We speculate that all TpsB proteins have a modular structure, with a periplasmic domain that interacts with the cognate TpsA protein and with pore forming activity contained within the C terminus.
革兰氏阴性菌中的双伙伴分泌途径由一个TpsA外蛋白和一个同源的TpsB外膜转运蛋白组成。先前的研究表明,TpsB蛋白形成具有孔形成活性的β桶结构,并促进TpsA蛋白跨外膜转运。在本研究中,我们对流感嗜血杆菌HMW1B蛋白的功能结构域进行了表征,HMW1B蛋白是一种与流感嗜血杆菌HMW1黏附素相互作用的TpsB蛋白。通过c-Myc表位标签插入和半胱氨酸替代诱变,我们发现HMW1B包含一个N端表面定位结构域、一个内部周质结构域和一个C端膜锚定结构域。对c-Myc表位标签插入和一系列HMW1B缺失构建体的功能和生化分析表明,周质结构域是HMW1分泌所必需的,并且C端膜锚定结构域(HMW1B-(234-545))能够寡聚化并形成孔。与我们对HMW1B的观察结果相似,对一种名为FhaC的百日咳博德特氏菌TpsB蛋白的研究表明,FhaC的C端(FhaC-(232-585))能够形成孔。我们推测所有TpsB蛋白都具有模块化结构,其周质结构域与同源TpsA蛋白相互作用,且C端具有孔形成活性。