Moore Kyle J, Fillingame Robert H
Department of Biomolecular Chemistry, School of Medicine and Public Health, University of Wisconsin, Madison, Wisconsin 53706, USA.
J Biol Chem. 2008 Nov 14;283(46):31726-35. doi: 10.1074/jbc.M803848200. Epub 2008 Sep 11.
Subunit a plays a key role in promoting H+ transport and the coupled rotary motion of the subunit c ring in F1F0-ATP synthase. H+ binding and release occur at Asp-61 in the middle of the second transmembrane helix (TMH) of F0 subunit c. H+ are thought to reach Asp-61 via aqueous pathways mapping to the surfaces of TMHs 2-5 of subunit a. TMH4 of subunit a is thought to pack close to TMH2 of subunit c based upon disulfide cross-link formation between Cys substitutions in both TMHs. Here we substituted Cys into the fifth TMH of subunit a and the second TMH of subunit c and tested for cross-linking using bis-methanethiosulfonate (bis-MTS) reagents. A total of 62 Cys pairs were tested and 12 positive cross-links were identified with variable alkyl length linkers. Cross-linking was achieved near the middle of the bilayer for the Cys pairs a248C/c62C, a248C/ c63C, a248C/c65C, a251C/c57C, a251C/c59C, a251C/c62C, a252C/c62C, and a252C/c65C. Cross-linking was achieved near the cytoplasmic side of the bilayer for Cys pairs a262C/c53C, a262C/c54C, a262C/c55C, and a263C/c54C. We conclude that both aTMH4 and aTMH5 pack proximately to cTMH2 of the c-ring. In other experiments we demonstrate that aTMH4 and aTMH5 can be simultaneously cross-linked to different subunit c monomers in the c-ring. Five mutants showed pH-dependent cross-linking consistent with aTMH5 changing conformation at lower pH values to facilitate cross-linking. We suggest that the pH-dependent conformational change may be related to the proposed role of aTMH5 in gating H+ access from the periplasm to the cAsp-61 residue in cTMH2.
亚基a在促进H⁺转运以及F₁F₀ - ATP合酶中亚基c环的耦合旋转运动中起关键作用。H⁺的结合和释放发生在F₀亚基c第二个跨膜螺旋(TMH)中部的Asp - 61处。H⁺被认为通过定位于亚基a的TMH 2 - 5表面的水相途径到达Asp - 61。基于两个TMH中半胱氨酸替代物之间形成的二硫键交联,推测亚基a的TMH4与亚基c的TMH2紧密堆积。在此,我们将半胱氨酸分别替换到亚基a的第五个TMH和亚基c的第二个TMH中,并使用双甲硫基磺酸盐(bis - MTS)试剂测试交联情况。总共测试了62对半胱氨酸对,并用不同烷基长度的连接子鉴定出12个阳性交联。对于半胱氨酸对a248C/c62C、a248C/c63C、a248C/c65C、a251C/c57C、a251C/c59C、a251C/c62C、a252C/c62C和a252C/c65C,在双层膜中部附近实现了交联。对于半胱氨酸对a262C/c53C、a262C/c54C、a262C/c55C和a263C/c54C,在双层膜细胞质侧附近实现了交联。我们得出结论,aTMH4和aTMH5都与c环的cTMH2紧密堆积。在其他实验中,我们证明aTMH4和aTMH5可以同时与c环中不同的亚基c单体交联。五个突变体表现出pH依赖性交联,这与aTMH5在较低pH值下改变构象以促进交联一致。我们认为pH依赖性构象变化可能与aTMH5在控制H⁺从周质进入cTMH2中的cAsp - 61残基所提出的作用有关。