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Role of dimerization in the control of the functioning of the human haemoglobin mutant haemoglobin Howick (β37 Trp→Gly)

机译:二聚化在控制人类血红蛋白突变体血红蛋白Howick(β37Trp→Gly)功能中的作用

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pHaemoglobin Howick shows a high oxygen affinity (p50 = 1 mmHg) and a low co-operativity (n = 1.3). Equilibrium studies show the protein to be essentially totally dimeric in the oxygenated form. A wide range of rapid kinetic experiments indicate that the deoxygenated form of the protein exists in a tetramer&--&dimer equilibrium with an associated equilibrium constant of 3 microM. These kinetic data also indicate that the oxygenated form of the protein exists in a tetramer&--&dimer equilibrium with an associated equilibrium constant of 35 mM, and furthermore clearly identifies a large increase in the rate of the tetramer-to-dimer dissociation process as the origin of the vastly increased dissociation equilibrium constants. Simulations of the protein-concentration-dependence of the oxygen-binding properties of haemoglobin Howick, based on the measured equilibrium parameters, closely fits the experimental data. The change in dimerization constant for the deoxygenated form of the protein corresponds remarkably well to the free-energy change predicted for the simple transfer of the amino acid side chain at position beta 37 from a hydrophobic to a hydrophilic environment during the dimerization process./p
机译:p血红蛋白Howick显示出高的氧亲和力(p50 = 1 mmHg)和低的协同性(n = 1.3)。平衡研究表明该蛋白质在氧化形式下基本上是完全二聚的。广泛的快速动力学实验表明,蛋白质的脱氧形式以四聚体-二聚体平衡存在,相关的平衡常数为3μM。这些动力学数据还表明蛋白质的氧化形式存在于四聚体-二聚体平衡中,其相关平衡常数为35mM,并且进一步清楚地表明四聚体-二聚体解离速率的大幅增加。过程作为离解平衡常数大大增加的起源。基于测得的平衡参数,模拟血红蛋白Howick的氧结合特性对蛋白质浓度的依赖性,非常符合实验数据。蛋白质的脱氧形式的二聚常数的变化与二聚过程中β37位氨基酸侧链从疏水环境向亲水环境的简单转移所预测的自由能变化非常吻合。 >

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