Mao Hui Z, Weber Joachim
Department of Chemistry and Biochemistry, Texas Tech University, Lubbock, TX 79409-1061, USA.
Proc Natl Acad Sci U S A. 2007 Nov 20;104(47):18478-83. doi: 10.1073/pnas.0709322104. Epub 2007 Nov 14.
ATP synthase uses a unique rotary mechanism to couple ATP synthesis and hydrolysis to transmembrane proton translocation. The F(1) subcomplex has three catalytic nucleotide binding sites, one on each beta subunit, with widely differing affinities for MgATP or MgADP. During rotational catalysis, the sites switch their affinities. The affinity of each site is determined by the position of the central gamma subunit. The site with the highest nucleotide binding affinity is catalytically active. From the available x-ray structures, it is not possible to discern the high-affinity site. Using fluorescence resonance energy transfer between tryptophan residues engineered into gamma and trinitrophenyl nucleotide analogs on the catalytic sites, we were able to determine that the high-affinity site is close to the C-terminal helix of gamma, but at considerable distance from its N terminus. Thus, the beta(TP) site in the x-ray structure [Abrahams JP, Leslie AGW, Lutter R, Walker JE (1994) Nature 370:621-628] is the high-affinity site, in agreement with the prediction of Yang et al. [Yang W, Gao YQ, Cui Q, Ma J, Karplus M (2003) Proc Natl Acad Sci USA 100:874-879]. Taking into account the known direction of rotation, the findings establish the sequence of affinities through which each catalytic site cycles during MgATP hydrolysis as low --> high --> medium --> low.
ATP合酶利用一种独特的旋转机制,将ATP的合成与水解与跨膜质子转运偶联起来。F(1)亚复合物有三个催化性核苷酸结合位点,每个β亚基上一个,对MgATP或MgADP的亲和力差异很大。在旋转催化过程中,这些位点会切换它们的亲和力。每个位点的亲和力由中央γ亚基的位置决定。核苷酸结合亲和力最高的位点具有催化活性。从现有的X射线结构中,无法辨别出高亲和力位点。通过工程改造在γ亚基上的色氨酸残基与催化位点上的三硝基苯基核苷酸类似物之间的荧光共振能量转移,我们能够确定高亲和力位点靠近γ亚基的C端螺旋,但与其N端有相当的距离。因此,X射线结构[Abrahams JP, Leslie AGW, Lutter R, Walker JE (1994) Nature 370:621 - 628]中的β(TP)位点是高亲和力位点,这与Yang等人[Yang W, Gao YQ, Cui Q, Ma J, Karplus M (2003) Proc Natl Acad Sci USA 100:874 - 879]的预测一致。考虑到已知的旋转方向,这些发现确定了在MgATP水解过程中每个催化位点循环通过的亲和力顺序为低→高→中→低。