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铬(III)-铁(II)杂合血红蛋白的氧平衡特性

Oxygen equilibrium properties of chromium (III)-iron (II) hybrid hemoglobins.

作者信息

Unzai S, Hori H, Miyazaki G, Shibayama N, Morimoto H

机构信息

Department of Biophysical Engineering, Faculty of Engineering Science, Osaka University, Japan.

出版信息

J Biol Chem. 1996 May 24;271(21):12451-6. doi: 10.1074/jbc.271.21.12451.

Abstract

Cr(III)-Fe(II) hybrid hemoglobins, alpha 2(Cr) beta 2(Fe) and alpha 2(Fe) beta 2(Cr), in which hemes in either the alpha- or beta-subunits were substituted with chromium(III) protoporphyrin IX (Cr(III)(PPIX), were prepared and characterized by oxygen equilibrium measurements. Because Cr(III)PPIX binds neither oxygen molecules nor carbon monoxide, the oxygen equilibrium properties of Fe(II) subunits within these hybrids can be analyzed by a two-step oxygen equilibrium scheme. The oxygen equilibrium constants for both hybrids at the second oxygenation step agree with those for human adult hemoglobin at the last oxygenation step (at pH 6.5-8.4 with an without inositol hexaphosphate at 25 degrees C). The similarity between the effects of the Cr(III)PPIX and each subunits' oxygeme on the oxygen equilibrium properties of the counterpart Fe(II) subunits within hemoglobin indicate the utility of Cr(III)PPIX as a model for a permanently oxygenated heme within the hemoglobin molecule. We found that Cr(III)-Fe(II) hybrid hemoglobins have several advantages over cyanomet valency hybrid hemoglobins, which have been frequently used as a model system for partially oxygenated hemoglobins. In contrast to cyanomet heme, Cr(III)PPIX within hemoglobin is not subject to reduction with dithionite or enzymatic reduction systems. Therefore, we could obtain more accurate and reasonable oxygen equilibrium curves of Cr(III)-Fe(II) hybrids in the presence of an enzymatic reduction system, and we could obtain single crystals of deoxy-alpha 2(Cr) beta 2(Fe) when grown in low salt solution in the presence of polyethylene glycol 1000 and 50 mM dithionite.

摘要

制备了Cr(III)-Fe(II)杂合血红蛋白α2(Cr)β2(Fe)和α2(Fe)β2(Cr),其中α-或β-亚基中的血红素被铬(III)原卟啉IX(Cr(III)(PPIX))取代,并通过氧平衡测量对其进行了表征。由于Cr(III)PPIX既不结合氧分子也不结合一氧化碳,因此可以通过两步氧平衡方案分析这些杂合体中Fe(II)亚基的氧平衡特性。在第二个氧合步骤中,两种杂合体的氧平衡常数与成人血红蛋白在最后一个氧合步骤中的氧平衡常数一致(在25℃下,pH为6.5 - 8.4,有无肌醇六磷酸)。Cr(III)PPIX和每个亚基的氧对血红蛋白中对应Fe(II)亚基的氧平衡特性的影响之间的相似性表明,Cr(III)PPIX可作为血红蛋白分子中永久氧合血红素的模型。我们发现,Cr(III)-Fe(II)杂合血红蛋白比经常用作部分氧合血红蛋白模型系统的氰化高铁价态杂合血红蛋白具有几个优势。与氰化高铁血红素不同,血红蛋白中的Cr(III)PPIX不会被连二亚硫酸盐或酶促还原系统还原。因此,在酶促还原系统存在的情况下,我们可以获得更准确、合理的Cr(III)-Fe(II)杂合体的氧平衡曲线,并且当在含有聚乙二醇1000和50 mM连二亚硫酸盐的低盐溶液中生长时,我们可以获得脱氧-α2(Cr)β2(Fe)的单晶。

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