Institute for Protein Research, Osaka University, Suita 565-0871, Japan.
J Biomol NMR. 2010 Sep;48(1):1-11. doi: 10.1007/s10858-010-9432-x. Epub 2010 Jul 2.
The subunit c-ring of H(+)-ATP synthase (F(o) c-ring) plays an essential role in the proton translocation across a membrane driven by the electrochemical potential. To understand its structure and function, we have carried out solid-state NMR analysis under magic-angle sample spinning. The uniformly [(13)C, (15)N]-labeled F(o) c from E. coli (EF(o) c) was reconstituted into lipid membranes as oligomers. Its high resolution two- and three-dimensional spectra were obtained, and the (13)C and (15)N signals were assigned. The obtained chemical shifts suggested that EF(o) c takes on a hairpin-type helix-loop-helix structure in membranes as in an organic solution. The results on the magnetization transfer between the EF(o) c and deuterated lipids indicated that Ile55, Ala62, Gly69 and F76 were lined up on the outer surface of the oligomer. This is in good agreement with the cross-linking results previously reported by Fillingame and his colleagues. This agreement reveals that the reconstituted EF(o) c oligomer takes on a ring structure similar to the intact one in vivo. On the other hand, analysis of the (13)C nuclei distance of [3-(13)C]Ala24 and [4-(13)C]Asp61 in the F(o) c-ring did not agree with the model structures proposed for the EF(o) c-decamer and dodecamer. Interestingly, the carboxyl group of the essential Asp61 in the membrane-embedded EF(o) c-ring turned out to be protonated as COOH even at neutral pH. The hydrophobic surface of the EF(o) c-ring carries relatively short side chains in its central region, which may allow soft and smooth interactions with the hydrocarbon chains of lipids in the liquid-crystalline state.
H(+)-ATP 合酶的亚基 c 环(F(o) c 环)在电化学势驱动下的跨膜质子转运中起着至关重要的作用。为了了解其结构和功能,我们在魔角旋转样品(MAS)下进行了固态 NMR 分析。来自大肠杆菌的均一 [(13)C, (15)N]-标记的 F(o) c(EF(o) c)被重新组装到脂质膜中形成寡聚物。获得了其高分辨率的二维和三维图谱,并对 (13)C 和 (15)N 信号进行了归属。获得的化学位移表明,EF(o) c 在膜中呈现出发夹型的螺旋-环-螺旋结构,就像在有机溶剂中一样。EF(o) c 与氘化脂质之间的磁化转移结果表明,Ile55、Ala62、Gly69 和 F76 排列在寡聚物的外表面。这与 Fillingame 及其同事之前报道的交联结果非常吻合。这种一致性表明,重新组装的 EF(o) c 寡聚物呈现出与体内完整的环结构相似的结构。另一方面,对 [3-(13)C]Ala24 和 [4-(13)C]Asp61 在 F(o) c 环中的 (13)C 核距离的分析与 EF(o) c-十聚体和十二聚体的模型结构不一致。有趣的是,膜嵌入的 EF(o) c 环中的必需 Asp61 的羧基在中性 pH 下实际上是质子化的,呈 COOH 形式。EF(o) c 环的疏水面在其中心区域具有相对较短的侧链,这可能允许其与液晶状态下的脂质烃链进行柔软和光滑的相互作用。