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化学修饰的Ni(II)-Fe(II)杂合血红蛋白的性质。Ni(II)原卟啉IX作为永久性脱氧血红素的模型。

Properties of chemically modified Ni(II)-Fe(II) hybrid hemoglobins. Ni(II) protoporphyrin IX as a model for a permanent deoxy-heme.

作者信息

Shibayama N, Morimoto H, Kitagawa T

出版信息

J Mol Biol. 1986 Nov 20;192(2):331-6. doi: 10.1016/0022-2836(86)90368-2.

Abstract

Chemical modifications, NES-Cys(beta 93), des-Arg(alpha 141), and both modifications on the same molecule, were made to Ni-Fe hybrid hemoglobins, and their effect on individual subunits was investigated by measuring oxygen equilibrium curves, the Fe(II)-N epsilon (His F8) stretching Raman lines, and light-absorption spectra. The oxygen equilibrium properties indicated that modified Ni-Fe hybrid hemoglobins remain good models for the corresponding deoxy ferrous hemoglobins, although K1, the dissociation equilibrium constant for the first oxygen to bind to hemoglobin, was decreased by the chemical modifications. Resonance Raman spectra of deoxy alpha 2 (Fe) beta 2 (Ni) and light-absorption spectra of deoxy alpha 2 (Ni) beta 2 (Fe), revealed that the state of alpha hemes in both hybrid hemoglobins underwent a transition from a deoxy-like state to an oxy-like state caused by these chemical modifications when K1 was about 3 mm Hg (1 mm Hg approximately 133.3 Pa). On the other hand, the state of beta hemes in hybrid hemoglobins was little affected, when K1 was larger than 1 mm Hg. Modified alpha 2 (Fe) beta 2 (Ni) gave a Hill coefficient greater than unity with a maximum of 1.4 when K1 was about 4 mm Hg. The two-state model predicts that the K1 value at the maximum Hill coefficient should be much larger than this value. For oxygen binding to unmodified alpha 2 (Ni) beta 2 (Fe), oxygen equilibrium data suggested no structural change, while the spectral data showed a structural change around Ni(II) protoporphyrin IX in the alpha subunits. A similar situation was encountered with modified alpha 2 (Ni) beta 2 (Fe), although K1 was decreased as a result of the structural changes induced by the modifications.

摘要

对镍铁杂合血红蛋白进行了化学修饰,包括NES-Cys(β93)、去精氨酸(α141)以及同一分子上的两种修饰,并通过测量氧平衡曲线、Fe(II)-Nε(His F8)伸缩拉曼谱线和光吸收光谱,研究了这些修饰对各个亚基的影响。氧平衡特性表明,尽管化学修饰降低了第一个氧与血红蛋白结合的解离平衡常数K1,但修饰后的镍铁杂合血红蛋白仍是相应脱氧亚铁血红蛋白的良好模型。脱氧α2(Fe)β2(Ni)的共振拉曼光谱和脱氧α2(Ni)β2(Fe)的光吸收光谱显示,当K1约为3 mmHg(1 mmHg≈133.3 Pa)时,这些化学修饰导致两种杂合血红蛋白中α血红素的状态从类似脱氧状态转变为类似氧合状态。另一方面,当K1大于1 mmHg时,杂合血红蛋白中β血红素的状态受影响较小。当K1约为4 mmHg时,修饰后的α2(Fe)β2(Ni)的希尔系数大于1,最大值为1.4。两态模型预测,最大希尔系数时的K1值应远大于此值。对于氧与未修饰的α2(Ni)β2(Fe)的结合,氧平衡数据表明没有结构变化,而光谱数据显示α亚基中Ni(II)原卟啉IX周围存在结构变化。修饰后的α2(Ni)β2(Fe)也遇到了类似情况,尽管由于修饰引起的结构变化导致K1降低。

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