Gräber P, Labahn A
Biologisches Institut, Universität Stuttgart, Germany.
J Bioenerg Biomembr. 1992 Oct;24(5):493-7. doi: 10.1007/BF00762367.
Proton transport-coupled unisite catalysis was measured with the H(+)-ATPase from chloroplasts. The reaction was measured in the ATP hydrolysis direction under deenergized conditions and in the ATP synthesis direction under energized conditions. The equilibrium constant of the enzyme does not change upon energization, whereas the dissociation constants of substrates and products change by orders of magnitude. This indicates that the Gibbs free enthalpy derived from proton translocation is used to change binding affinities of substrates and products, and this results in synthesis of free ATP.
利用叶绿体H(+)-ATP酶测定了质子转运偶联的单部位催化作用。该反应在去能条件下于ATP水解方向进行测定,在供能条件下于ATP合成方向进行测定。酶的平衡常数在供能时不变,而底物和产物的解离常数则变化几个数量级。这表明质子转运产生的吉布斯自由焓用于改变底物和产物的结合亲和力,从而导致游离ATP的合成。