von Ballmoos Christoph, Meier Thomas, Dimroth Peter
Institut für Mikrobiologie der Eidgenössischen Technischen Hochschule, ETH Zentrum, Zürich, Switzerland.
Eur J Biochem. 2002 Nov;269(22):5581-9. doi: 10.1046/j.1432-1033.2002.03264.x.
Recent crosslinking studies indicated the localization of the coupling ion binding site in the Na+-translocating F1F0 ATP synthase of Ilyobacter tartaricus within the hydrophobic part of the bilayer. Similarly, a membrane embedded H+-binding site is accepted for the H+-translocating F1F0 ATP synthase of Escherichia coli. For a more definite analysis, we performed parallax analysis of fluorescence quenching with ATP synthases from both I. tartaricus and E. coli. Both ATP synthases were specifically labelled at their c subunit sites with N-cyclohexyl-N'-(1-pyrenyl)carbodiimide, a fluorescent analogue of dicyclohexylcarbodiimide and the enzymes were reconstituted into proteoliposomes. Using either soluble quenchers or spinlabelled phospholipids, we observed a deeply membrane embedded binding site, which was quantitatively determined for I. tartaricus and E. coli to be 1.3 +/- 2.4 A and 1.8 +/- 2.8 A from the bilayer center apart, respectively. These data show a conserved topology among enzymes of different species. We further demonstrated the direct accessibility for Na+ ions to the binding sites in the reconstituted I. tartaricus c11 oligomer in the absence of any other subunits, pointing to intrinsic rotor channels. The common membrane embedded location of the binding site of ATP synthases suggest a common mechanism for ion transfer across the membrane.
最近的交联研究表明,酒石酸伊氏杆菌的Na⁺转运F₁F₀ ATP合酶中偶联离子结合位点位于双层膜的疏水部分。同样,人们认为大肠杆菌的H⁺转运F₁F₀ ATP合酶存在一个膜嵌入的H⁺结合位点。为了进行更确切的分析,我们对来自酒石酸伊氏杆菌和大肠杆菌的ATP合酶进行了荧光猝灭的视差分析。两种ATP合酶均在其c亚基位点用N-环己基-N'-(1-芘基)碳二亚胺进行特异性标记,N-环己基-N'-(1-芘基)碳二亚胺是二环己基碳二亚胺的荧光类似物,然后将这些酶重构成蛋白脂质体。使用可溶性猝灭剂或自旋标记的磷脂,我们观察到一个深度膜嵌入的结合位点,对于酒石酸伊氏杆菌和大肠杆菌,该位点距双层膜中心的定量测定结果分别为1.3±2.4 Å和1.8±2.8 Å。这些数据表明不同物种的酶之间存在保守的拓扑结构。我们进一步证明,在没有任何其他亚基的情况下,Na⁺离子可直接进入重构的酒石酸伊氏杆菌c₁₁寡聚体中的结合位点,这表明存在内在的转子通道。ATP合酶结合位点在膜中的共同嵌入位置表明存在跨膜离子转移的共同机制。