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肌醇六磷酸对两种β-99位取代的异常血红蛋白——血红蛋白亚基马和血红蛋白肯普西的变构性质的影响。

The effects of inositol hexaphosphate on the allosteric properties of two beta-99-substituted abnormal hemoglobins, hemoglobin Yakima and hemoglobin Kempsey.

作者信息

Nagai M, Nishibu M, Sugita Y, Yoneyama Y

出版信息

J Biol Chem. 1975 Apr 25;250(8):3169-73.

PMID:235541
Abstract

Hemoglobins (Hb) Yakima and Kempsey were purified from patients' blood with diethylaminoethyl cellulose column chromatography. The oxygen equilibrium curves of the two hemoglobins and the effects of organic phosphates on the function were investigated. In 0.1 M phosphate buffer, Hill's constants n for Hb Yakima and Hb Kempsey were 1.0 to 1.1 at the pH range for 6.5 to 8.0 and the oxygen affinities of both the mutant hemoglobins were about 15 to 20 times that of Hb A at pH 7.0. The Bohr effect was normal in Hb Yakima and one-fourth normal in Hb Kempsey. In the presence of inositol hexaphosphate, the oxygen affinities to Hb Yakima and Hb Kempsey were greatly decreased, and an interesting result revealed that these hemoglobins showed clear cooperativity in oxygen binding. Hill's constant n in the presence of inositol hexaphosphate was 1.9 for Hb Kempsey and 2.3 for Hb Yakima at pH 7.0. The cooperativities of these mutant hemoglobins were pH-dependent, and Hb Kempsey showed high cooperativity at low pH (n equal 2.1 at pH 6.6) and low cooperativity at high pH (n equal 1.0 at pH 8.0). Hb Yakima showed similar pH dependence in cooperativity. In the presence of inositol hexaphosphate, Hb A showed a pH-dependent cooperativity different from those of Hb Yakima and Hb Kempsey, namely, Hill's n was the highest in alkaline pH (n equal 3.0 at pH 8.0) and decreased at lower pH (n equal 1.5 at pH 6.5). 2,3Diphosphoglycerate bound with the deoxygenated Hb Yakima and Hb Kempsey, however, had no effect on the oxygen binding of these abnormal hemoglobin. The pH-dependent cooperativity of alpha1beta2 contact anomalous hemoglobin and normal hemoglobin was explained by the shifts in the equilibrium between the high and low ligand affinity forms.

摘要

采用二乙氨基乙基纤维素柱色谱法从患者血液中纯化了血红蛋白(Hb)亚基马和肯普西。研究了这两种血红蛋白的氧平衡曲线以及有机磷酸盐对其功能的影响。在0.1M磷酸盐缓冲液中,在pH值为6.5至8.0的范围内,Hb亚基马和Hb肯普西的希尔常数n为1.0至1.1,并且在pH值为7.0时,两种突变型血红蛋白的氧亲和力约为Hb A的15至20倍。Hb亚基马的玻尔效应正常,而Hb肯普西的玻尔效应为正常的四分之一。在存在肌醇六磷酸的情况下,Hb亚基马和Hb肯普西的氧亲和力大大降低,并且一个有趣的结果表明这些血红蛋白在氧结合方面表现出明显的协同性。在pH值为7.0时,存在肌醇六磷酸的情况下,Hb肯普西的希尔常数n为1.9,Hb亚基马的希尔常数n为2.3。这些突变型血红蛋白的协同性是pH依赖性的,并且Hb肯普西在低pH值(pH值为6.6时n等于2.1)时表现出高协同性,在高pH值(pH值为8.0时n等于1.0)时表现出低协同性。Hb亚基马在协同性方面表现出类似的pH依赖性。在存在肌醇六磷酸的情况下,Hb A表现出与Hb亚基马和Hb肯普西不同的pH依赖性协同性,即希尔常数n在碱性pH值(pH值为8.0时n等于3.0)时最高,在较低pH值(pH值为6.5时n等于1.5)时降低。然而,与脱氧的Hb亚基马和Hb肯普西结合的2,3-二磷酸甘油酸对这些异常血红蛋白的氧结合没有影响。α1β2接触异常血红蛋白和正常血红蛋白的pH依赖性协同性通过高、低配体亲和力形式之间平衡的移动来解释。

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