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四级结构对混合自旋人高铁血红蛋白的自旋状态影响很小。

Quaternary structure has little influence on spin states in mixed-spin human methemoglobins.

作者信息

Philo J S, Dreyer U

出版信息

Biochemistry. 1985 Jun 4;24(12):2985-92. doi: 10.1021/bi00333a027.

DOI:10.1021/bi00333a027
PMID:4016083
Abstract

A key feature of the Perutz stereochemical model for cooperativity in hemoglobin is a strong coupling between quaternary structure and the spin state of the heme iron [Perutz, M. F. (1979) Annu. Rev. Biochem. 48, 327-386]. While this coupling appears to be present for carp azide methemoglobin, it should also be present for all liganded forms of human methemoglobin that exhibit a thermal high-spin in equilibrium low-spin equilibrium. To test this hypothesis, we have measured the changes in spin equilibria upon conversion of six mixed-spin forms of human methemoglobin from the R (high-affinity) to the T (low-affinity) quaternary structure by addition of inositol hexaphosphate. These experiments were done with a sensitive superconducting magnetic susceptibility instrument on solutions at 20 degrees C in 20 mM maleate buffer, pH 6. The data show zero or small increases in high-spin content upon switching from R to T, changes that are equivalent to a relative stabilization of the high-spin form by only 0-300 cal mol-1 heme-1. These changes in energy are far less than the 1200 cal mol-1 heme-1 predicted from the Perutz stereochemical model [Cho, K. C., & Hopfield, J. J. (1979) Biochemistry 18, 5826-5833]. That is, these data do not support a view that the low affinity of the T state is due to restraints acting through the iron-proximal histidine linkage. The mechanistic implications of these results and the differences between species and ferric ligands are discussed.

摘要

佩鲁茨(Perutz)提出的血红蛋白协同性立体化学模型的一个关键特征是四级结构与血红素铁自旋状态之间存在强耦合作用[佩鲁茨,M. F.(1979年)《生物化学年度评论》48卷,327 - 386页]。虽然这种耦合作用在鲤鱼叠氮高铁血红蛋白中似乎存在,但对于所有在平衡态低自旋与热高自旋之间呈现平衡的人高铁血红蛋白配体形式也应该存在。为了验证这一假设,我们通过添加肌醇六磷酸,测量了六种人高铁血红蛋白混合自旋形式从R(高亲和力)四级结构转变为T(低亲和力)四级结构时自旋平衡的变化。这些实验是在20℃、pH值为6的20 mM马来酸缓冲液中的溶液上,使用灵敏的超导磁化率仪器进行的。数据显示,从R态转变为T态时,高自旋含量增加为零或很小,这种变化相当于高自旋形式仅相对稳定了0 - 300卡/摩尔血红素 -1。这些能量变化远小于佩鲁茨立体化学模型预测的1200卡/摩尔血红素 -1[赵,K. C.,& 霍普菲尔德,J. J.(1979年)《生物化学》18卷,5826 - 5833页]。也就是说,这些数据不支持T态低亲和力是由于通过铁 - 近端组氨酸连接起作用的限制因素这一观点。本文讨论了这些结果的机制含义以及物种和三价铁配体之间的差异。

相似文献

1
Quaternary structure has little influence on spin states in mixed-spin human methemoglobins.四级结构对混合自旋人高铁血红蛋白的自旋状态影响很小。
Biochemistry. 1985 Jun 4;24(12):2985-92. doi: 10.1021/bi00333a027.
2
Spectroscopic studies of protein-heme interactions accompanying the allosteric transition in methemoglobins.高铁血红蛋白变构转变过程中蛋白质-血红素相互作用的光谱研究。
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Influence of inositol hexaphosphate binding on subunit dissociation in methemoglobin.肌醇六磷酸结合对高铁血红蛋白中亚基解离的影响。
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Differential effects of pH and inositol hexaphosphate on the spectroscopic properties of the alpha and beta subunits in methemoglobins M Milwaukee and A.pH值和肌醇六磷酸对高铁血红蛋白M密尔沃基型和A型中α和β亚基光谱特性的差异影响。
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Quaternary structure and spin-state transition in azide methemoglobin A.叠氮高铁血红蛋白A的四级结构与自旋态转变
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Nuclear relaxation and gelation study of the interaction of organophosphates with human normal and sickle hemoglobins. In vitro gelation of sickle oxyhemoglobin in the presence of inositol hexaphosphate.有机磷酸酯与人类正常血红蛋白和镰状血红蛋白相互作用的核弛豫和凝胶化研究。在肌醇六磷酸存在下镰状氧合血红蛋白的体外凝胶化。
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Coupling of ferric iron spin and allosteric equilibrium in hemoglobin.血红蛋白中铁离子自旋与别构平衡的偶联
Biophys J. 1991 Oct;60(4):770-6. doi: 10.1016/S0006-3495(91)82111-7.

引用本文的文献

1
Coupling of ferric iron spin and allosteric equilibrium in hemoglobin.血红蛋白中铁离子自旋与别构平衡的偶联
Biophys J. 1991 Oct;60(4):770-6. doi: 10.1016/S0006-3495(91)82111-7.