Qu Jian, Behrens-Kneip Susanne, Holst Otto, Kleinschmidt Jörg H
Fachbereich Biologie, Universität Konstanz, Germany.
Biochemistry. 2009 Jun 9;48(22):4926-36. doi: 10.1021/bi9004039.
Periplasmic Skp facilitates folding and membrane insertion of many outer membrane proteins (OMPs) into the outer membrane of Gram-negative bacteria. We have examined the binding sites of outer membrane protein A (OmpA) from Escherichia coli in its complexes with the membrane protein chaperone Skp and with Skp and lipopolysaccharide (LPS) by site-directed fluorescence spectroscopy. Single-Trp OmpA mutants, W(n)-OmpA, with tryptophan at position n in the polypeptide chain were isolated in the unfolded form in 8 M urea. In five beta(x)W(n)-OmpA mutants, the tryptophan was located in beta-strand x, in four l(y)W(n)-OmpA mutants, in outer loop y, and in three t(z)W(n)-OmpA mutants in turn z of the beta-barrel transmembrane domain (TMD) of OmpA. PDW(286)-OmpA contained tryptophan in the periplasmic domain (PD). After dilution of the denaturant urea in aqueous solution, spectra indicated a more hydrophobic environment of the tryptophans in beta(x)W(n) mutants in comparison to l(y)W(n)-OmpA and t(z)W(n)-OmpA, indicating that the loops and turns form the surface of hydrophobically collapsed OmpA, while the strand regions are less exposed to water. Addition of Skp increased the fluorescence of all OmpA mutants except PDW(286)-OmpA, demonstrating binding of Skp to the entire beta-barrel domain but not to the PD of OmpA. Skp bound the TMD of OmpA asymmetrically, displaying much stronger interactions with strands beta(1) to beta(3) in the N-terminus than with strands beta(5) to beta(7) in the C-terminus. This asymmetry was not observed for the outer loops and the periplasmic turns of the TMD of OmpA. The fluorescence results demonstrated that all turns and loops l(1), l(2), and l(4) were as strongly bound to Skp as the N-terminal beta-strands. Addition of five negatively charged LPS per one preformed Skp.W(n)-OmpA complex released the C-terminal loops l(2), l(3), and l(4) of the TMD of OmpA from the complex, while its periplasmic turn regions remained bound to Skp. Our results demonstrate that interactions of Skp.OmpA complexes with LPS change the conformation of OmpA in the Skp complex for facilitated insertion and folding into membranes.
周质中的Skp蛋白有助于许多外膜蛋白(OMPs)折叠并插入革兰氏阴性菌的外膜。我们通过定点荧光光谱法研究了大肠杆菌外膜蛋白A(OmpA)与膜蛋白伴侣Skp以及与Skp和脂多糖(LPS)形成的复合物中的结合位点。单色氨酸OmpA突变体W(n)-OmpA,其多肽链中第n位为色氨酸,在8 M尿素中以未折叠形式分离得到。在5个β(x)W(n)-OmpA突变体中,色氨酸位于β链x中;在4个l(y)W(n)-OmpA突变体中,位于外环y中;在3个t(z)W(n)-OmpA突变体中,位于OmpA的β桶跨膜结构域(TMD)的第z圈中。PDW(286)-OmpA在周质结构域(PD)中含有色氨酸。在水溶液中稀释变性剂尿素后,光谱表明与l(y)W(n)-OmpA和t(z)W(n)-OmpA相比,β(x)W(n)突变体中的色氨酸所处环境更疏水,这表明环和转角形成了疏水塌陷的OmpA的表面,而链区域较少暴露于水中。添加Skp增加了除PDW(286)-OmpA外所有OmpA突变体的荧光,表明Skp与整个β桶结构域结合,但不与OmpA的PD结合。Skp不对称地结合OmpA的TMD,与N端的β(1)至β(3)链的相互作用比与C端的β(5)至β(7)链的相互作用强得多。对于OmpA的TMD的外环和周质转角未观察到这种不对称性。荧光结果表明,所有的转角和环l(1)、l(2)和l(4)与Skp的结合强度与N端β链相同。每一个预先形成的Skp.W(n)-OmpA复合物添加5个带负电荷的LPS会使OmpA的TMD的C端环l(2)、l(3)和l(4)从复合物中释放出来,而其周质转角区域仍与Skp结合。我们的结果表明,Skp.OmpA复合物与LPS的相互作用改变了Skp复合物中OmpA的构象,便于其插入膜并折叠。