Carpenter Timothy, Khalid Syma, Sansom Mark S P
Department of Biochemistry, University of Oxford, Oxford, UK.
Biochim Biophys Acta. 2007 Nov;1768(11):2831-40. doi: 10.1016/j.bbamem.2007.07.025. Epub 2007 Aug 16.
PmOmpA is a two-domain outer membrane protein from Pasteurella multocida. The N-terminal domain of PmOmpA is a homologue of the transmembrane beta-barrel domain of OmpA from Escherichia coli, whilst the C-terminal domain of PmOmpA is a homologue of the extra-membrane Neisseria meningitidis RmpM C-terminal domain. This enables a model of a complete two domain PmOmpA to be constructed and its conformational dynamics explored via MD simulations of the protein embedded within two different phospholipid bilayers (DMPC and DMPE). The conformational stability of the transmembrane beta-barrel is similar to that of a homology model of OprF from Pseudomonas aeruginosa in bilayer simulations. There is a degree of water penetration into the interior of the beta-barrel, suggestive of a possible transmembrane pore. Although the PmOmpA model is stable over 20 ns simulations, retaining its secondary structure and fold integrity throughout, substantial flexibility is observed in a short linker region between the N- and the C-terminal domains. At low ionic strength, the C-terminal domain moves to interact electrostatically with the lipid bilayer headgroups. This study demonstrates that computational approaches may be applied to more complex, multi-domain outer membrane proteins, rather than just to transmembrane beta-barrels, opening the possibility of in silico proteomics approaches to such proteins.
PmOmpA是一种来自多杀性巴氏杆菌的双结构域外膜蛋白。PmOmpA的N端结构域是大肠杆菌OmpA跨膜β桶结构域的同源物,而PmOmpA的C端结构域是脑膜炎奈瑟菌RmpM C端膜外结构域的同源物。这使得能够构建一个完整的双结构域PmOmpA模型,并通过对嵌入两种不同磷脂双层(DMPC和DMPE)中的蛋白质进行分子动力学模拟来探索其构象动力学。跨膜β桶的构象稳定性与双层模拟中铜绿假单胞菌OprF同源模型的稳定性相似。有一定程度的水渗透到β桶内部,提示可能存在跨膜孔。尽管PmOmpA模型在20纳秒的模拟过程中是稳定的,在整个过程中保持其二级结构和折叠完整性,但在N端和C端结构域之间的一个短连接区域观察到了相当大的灵活性。在低离子强度下,C端结构域移动以与脂质双层头部基团发生静电相互作用。这项研究表明,计算方法可应用于更复杂的多结构域外膜蛋白,而不仅仅是跨膜β桶,为这类蛋白质的计算机蛋白质组学方法开辟了可能性。