Turina Paola, Petersen Jan, Gräber Peter
Department of Biology, BiGeA, University of Bologna, Via Irnerio 42, I-40126 Bologna, Italy.
Biomedicine Discovery Institute, Monash University, 1 Wellington Rd., Clayton, Vic 3800, Australia.
Biochim Biophys Acta. 2016 Jun;1857(6):653-64. doi: 10.1016/j.bbabio.2016.02.019. Epub 2016 Mar 3.
The thermodynamic H(+)/ATP ratio of the H(+)-ATP synthase from chloroplasts was measured in proteoliposomes after energization of the membrane by an acid base transition (Turina et al. 2003 [13], 418-422). The method is discussed, and all published data obtained with this system are combined and analyzed as a single dataset. This meta-analysis led to the following results. 1) At equilibrium, the transmembrane ΔpH is energetically equivalent to the transmembrane electric potential difference. 2) The standard free energy for ATP synthesis (reference reaction) is ΔG°(ref)=33.8±1.3kJ/mol. 3) The thermodynamic H(+)/ATP ratio, as obtained from the shift of the ATP synthesis equilibrium induced by changing the transmembrane ΔpH (varying either pH(in) or pH(out)) is 4.0±0.1. The structural H(+)/ATP ratio, calculated from the ratio of proton binding sites on the c-subunit-ring in F(0) to the catalytic nucleotide binding sites on the β-subunits in F(1), is c/β=14/3=4.7. We infer that the energy of 0.7 protons per ATP that flow through the enzyme, but do not contribute to shifting the ATP/(ADP·Pi) ratio, is used for additional processes within the enzyme, such as activation, and/or energy dissipation, due e.g. to internal uncoupling. The ratio between the thermodynamic and the structural H(+)/ATP values is 0.85, and we conclude that this value represents the efficiency of the chemiosmotic energy conversion within the chloroplast H(+)-ATP synthase.
在通过酸碱转变使膜产生能量后,在蛋白脂质体中测量了叶绿体H(+)-ATP合酶的热力学H(+)/ATP比率(Turina等人,2003年[13],418 - 422页)。对该方法进行了讨论,并将使用该系统获得的所有已发表数据合并并作为单个数据集进行分析。该荟萃分析得出以下结果。1)在平衡状态下,跨膜ΔpH在能量上等同于跨膜电势差。2)ATP合成的标准自由能(参考反应)为ΔG°(ref)=33.8±1.3kJ/mol。3)通过改变跨膜ΔpH(改变pH(in)或pH(out))诱导的ATP合成平衡的移动所获得的热力学H(+)/ATP比率为4.0±0.1。根据F(0)中c亚基环上质子结合位点与F(1)中β亚基上催化核苷酸结合位点的比率计算得出的结构H(+)/ATP比率为c/β = 14/3 = 4.7。我们推断,每合成一分子ATP流经该酶但不参与改变ATP/(ADP·Pi)比率的0.7个质子的能量,用于酶内的其他过程,如激活和/或能量耗散,例如由于内部解偶联。热力学和结构H(+)/ATP值之间的比率为0.85,我们得出结论,该值代表叶绿体H(+)-ATP合酶内化学渗透能量转换的效率。