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玻尔基团盐桥在血红蛋白协同性中的作用。

Role of Bohr group salt bridges in cooperativity in hemoglobin.

作者信息

Kilmartin J V, Imai K, Jones R T, Faruqui A R, Fogg J, Baldwin J M

出版信息

Biochim Biophys Acta. 1978 May 24;534(1):15-25. doi: 10.1016/0005-2795(78)90471-3.

Abstract

Possible problems in measuring the first Adair constant, K1, from accurate oxygen equilibrium curves have been investigated. Of these only the presence of small amounts of CO-hemoglobin or hemoglobin dimers had a significant effect. The former can be eliminated by treatment with oxygen, the latter by measuring the concentration-dependence of K1 or working at high protein concentrations. K1 values have been measured for normal hemoglobin at pH 7 and 9, hemoglobin specifically reacted with cyanate at Val 1alpha (alphac2beta2) and des(His 146beta) hemoglobin at pH 7. K1 is equal to KT, the oxygen affinity of the T state of hemoglobin, for all these hemoglobins and was increased in all of them when compared to normal hemoglobin at pH 7. This shows that the breakage of the Bohr group salt bridges by increasing pH or specific modification changes KT. Hence the Bohr group salt bridges break on ligation of the T state and are partially responsible for the free energy of cooperativity.

摘要

研究了根据精确的氧平衡曲线测量第一阿代尔常数K1时可能出现的问题。其中只有少量一氧化碳血红蛋白或血红蛋白二聚体的存在有显著影响。前者可通过用氧气处理消除,后者可通过测量K1的浓度依赖性或在高蛋白浓度下进行测量来消除。已测量了pH值为7和9时正常血红蛋白、在Val 1α(αc2β2)处与氰酸盐特异性反应的血红蛋白以及pH值为7时去(His 146β)血红蛋白的K1值。对于所有这些血红蛋白,K1等于血红蛋白T态的氧亲和力KT,并且与pH值为7时的正常血红蛋白相比,所有这些血红蛋白的K1均增加。这表明通过提高pH值或特异性修饰破坏玻尔基团盐桥会改变KT。因此,玻尔基团盐桥在T态结合时断裂,并且部分负责协同自由能。

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