Nowak T, Lee M J
Biochemistry. 1977 Apr 5;16(7):1343-50. doi: 10.1021/bi00626a016.
The formation of multiple ligand complexes with muscle pyruvate kinase was measured in terms of dissociation constants and the standard free energies of formation were calculated. The binding of Mn2+ to the enzyme (KA = 55 +/- 5 X 10(-6) M; deltaF degrees = -5.75 +/- 0.05 kcal/mol) and to the enzyme saturated with phosphoenolpyruvate (conditional free energy) KA' = 0.8 +/- 0.4 X 10(-6) M; deltaF degrees = -8.22 +/- 0.34 kcal/mol) has been measured under identical conditions giving a free energy of coupling, delta(deltaF degrees) = -2.47 +/- 0.34 kcal/mol. Such a large negative free energy of coupling is diagnostic of a strong positively cooperative effect in ligand binding. The binding of the substrate phosphoenolpyruvate to free enzyme and the enzyme-Mn2+ complex was, by necessity, measured by different methods. The free energy of phosphoenolpyruvate binding to free enzyme (KS = 1.58 +/- 0.10 X 10(-4)M; deltaF degrees = -5.13 +/- 0.04 kcal/mol) and to the enzyme-Mn2+ complex (K3 = 0.75 +/- 0.10 X 10(-6)M; deltaF degrees = -8.26 +/- 0.07 kcal/mol) also gives a large negative free energy of coupling, delta(deltaF degrees) = -3.16 +/- 0.08 kcal/mol. Such a large negative value confirms reciprocal binding effects between the divalent cation and the substrate phosphoenolpyruvate. The binding of Mn2+ to the enzyme-ADP complex was also investigated and a free energy of coupling, delta(deltaF degrees) = -0.08 +/- 0.08 kcal/mol, was measured, indicative of little or no cooperativity in binding. The free energy of coupling with Mn2+ and pyruvate was measured as -1.52 +/- 0.14 kcal/mol, showing a significant amount of cooperativity in ligand binding but a substantially smaller effect than that observed for phosphoenolpyruvate binding. The magnitude of the coupling free energy may be related to the role of the divalent cation in the formation of the enzyme-substrate complexes. In the absence of the activating monovalent cation, the coupling free energies for phosphoenolpyruvate and pyruvate binding decrease by 40-60% and 25%, respectively, substantiating a role for the monovalent cation in the formation of enzyme-substrate complexes with phosphoenolpyruvate and with pyruvate.
通过解离常数测定了与肌肉丙酮酸激酶形成的多种配体复合物,并计算了形成的标准自由能。在相同条件下测量了Mn2+与酶(KA = 55±5×10(-6) M;ΔF° = -5.75±0.05 kcal/mol)以及与磷酸烯醇式丙酮酸饱和的酶(条件自由能)KA' = 0.8±0.4×10(-6) M;ΔF° = -8.22±0.34 kcal/mol)的结合,得出耦合自由能Δ(ΔF°) = -2.47±0.34 kcal/mol。如此大的负耦合自由能表明配体结合中存在强烈的正协同效应。底物磷酸烯醇式丙酮酸与游离酶和酶 - Mn2+复合物的结合必然通过不同方法测量。磷酸烯醇式丙酮酸与游离酶(KS = 1.58±0.10×10(-4)M;ΔF° = -5.13±0.04 kcal/mol)以及与酶 - Mn2+复合物(K3 = 0.75±0.10×10(-6)M;ΔF° = -8.26±0.07 kcal/mol)的结合也给出了很大的负耦合自由能,Δ(ΔF°) = -3.16±0.08 kcal/mol。如此大的负值证实了二价阳离子与底物磷酸烯醇式丙酮酸之间的相互结合效应。还研究了Mn2+与酶 - ADP复合物的结合,测量的耦合自由能Δ(ΔF°) = -0.08±0.08 kcal/mol,表明结合中几乎没有协同性。与Mn2+和丙酮酸的耦合自由能测量为 -1.52±0.14 kcal/mol,显示出配体结合中有大量协同性,但比磷酸烯醇式丙酮酸结合所观察到的效应小得多。耦合自由能的大小可能与二价阳离子在酶 - 底物复合物形成中的作用有关。在没有激活单价阳离子的情况下,磷酸烯醇式丙酮酸和丙酮酸结合的耦合自由能分别降低40 - 60%和25%,证实了单价阳离子在与磷酸烯醇式丙酮酸和丙酮酸形成酶 - 底物复合物中的作用。