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人血红蛋白氧结合和亚基缔合自由能变化的可分解性

Resolvability of free energy changes for oxygen binding and subunit association by human hemoglobin.

作者信息

Straume M, Johnson M L

机构信息

Department of Pharmacology, University of Virginia School of Medicine, Charlottesville 22908.

出版信息

Biophys J. 1989 Jul;56(1):15-25. doi: 10.1016/S0006-3495(89)82648-7.

Abstract

Probability distributions of the free energy changes for oxygen binding, subunit association, and quaternary enhancement by human hemoglobin were obtained from Monte Carlo simulations performed on two independent sets of variable protein concentration equilibrium oxygen-binding data. Uncertainties in unliganded and fully liganded dimer to tetramer association free energy changes (0 delta G'2 and 4 delta G'2) were accounted for in the simulations. Distributions of the dimer to tetramer association free energy changes for forming singly and triply liganded tetramers (1 delta G'2 and 3 delta G'2) are well defined and quite symmetric, whereas that for forming doubly liganded tetramers (2 delta G'2) is poorly defined and highly asymmetric. The distribution of the dimer stepwise oxygen-binding free-energy change (delta g'2i) is well defined and quite symmetric as are those of the tetramer stepwise oxygen-binding free-energy changes for binding the first and last oxygens to tetramers (delta g'41 and delta g'44). Distributions of the intermediate tetramer stepwise oxygen-binding free-energy changes (delta g'42 and delta g'43) are poorly defined and highly asymmetric, but are compensatory in that their sum (delta g'4[2 + 3]) is again well defined and nearly symmetric. Distributions of the free energy changes corresponding to the tetramer product Adair oxygen binding constants (delta G'4i) are well defined and quite symmetric for i = 1, 3, 4 but not for i = 2. The distribution of delta g'44 - delta g'2i (the quaternary enhancement free energy change) is relatively narrow, nearly symmetric, and confined to the negative free-energy domain. This suggests that the quaternary enhancement free energy change (a) may be resolved with good confidence from this data and (b) is finite and negative under the conditions of these experiments. Our results also suggest two different four-state combinatorial switch models that provide accurate characterization of hemoglobin's functional behavior.

摘要

通过对两组独立的可变蛋白质浓度平衡氧结合数据进行蒙特卡罗模拟,获得了人类血红蛋白氧结合、亚基缔合和四级增强的自由能变化的概率分布。模拟中考虑了未结合和完全结合的二聚体到四聚体缔合自由能变化(0ΔG'2和4ΔG'2)的不确定性。形成单配体和三配体四聚体(1ΔG'2和3ΔG'2)的二聚体到四聚体缔合自由能变化的分布定义明确且相当对称,而形成双配体四聚体(2ΔG'2)的分布定义不明确且高度不对称。二聚体逐步氧结合自由能变化(Δg'2i)的分布定义明确且相当对称,四聚体逐步氧结合自由能变化中,将第一个和最后一个氧结合到四聚体的变化(Δg'41和Δg'44)也是如此。中间四聚体逐步氧结合自由能变化(Δg'42和Δg'43)的分布定义不明确且高度不对称,但具有补偿性,因为它们的总和(Δg'4[2 + 3])再次定义明确且几乎对称。对应于四聚体产物阿代尔氧结合常数(ΔG'4i)的自由能变化分布,对于i = 1、3、4定义明确且相当对称,但对于i = 2则不然。Δg'44 - Δg'2i(四级增强自由能变化)的分布相对较窄,几乎对称,且局限于负自由能域。这表明(a)从这些数据中可以很有把握地解析出四级增强自由能变化,并且(b)在这些实验条件下,它是有限且为负的。我们的结果还提出了两种不同的四态组合开关模型,它们能准确地表征血红蛋白的功能行为。

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Oxygen binding constants for human hemoglobin tetramers.
Biochemistry. 1987 Jun 30;26(13):3995-4002. doi: 10.1021/bi00387a038.
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The hemoglobin tetramer: a three-state molecular switch for control of ligand affinity.
Annu Rev Biophys Biophys Chem. 1987;16:583-609. doi: 10.1146/annurev.bb.16.060187.003055.

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