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血红蛋白中蛋白质部分在近紫外区域的血红素相关光谱变化。

Heme-linked spectral changes of the protein moiety of hemoproteins in the near ultraviolet region.

作者信息

Horie S, Hasumi H, Takizawa N

出版信息

J Biochem. 1985 Jan;97(1):281-93. doi: 10.1093/oxfordjournals.jbchem.a135052.

Abstract

Spectral changes of hemoproteins in the near ultraviolet region on binding to a ligand and on oxidation-reduction of the heme-iron were studied by computer-controlled spectrophotometry. Near ultraviolet difference spectra between the low spin and high spin forms of ferric hemoproteins were classified into three groups: Those showing two absorption peaks having maxima at around 285 and 295 nm, those showing a peak at around 275 nm, and those showing a peak at around 300 nm. No corresponding absorption peak was observed with model heme complexes of low molecular weight. The intensity of the peak in cyanide difference spectra of catalase and horseradish peroxidase in the near ultraviolet region was dependent on the concentration of added cyanide and paralleled the intensity of the spectral changes in the Soret region. The spectral changes in both the near ultraviolet and Soret regions developed within 6 ms after the addition of cyanide. Difference spectra between the reduced and oxidized forms of cytochrome c, cytochrome oxidase-cyanide complex, hemoglobin, and lactoperoxidase-cyanide complex showed a characteristic peak at around 285-290 nm. Various difference spectra of hemoglobin in the near ultraviolet region were also measured. The observed positions, shapes, combinations, and relative intensities of the peaks were compared with those of solvent perturbation difference spectra and pH difference spectra of proteins and aromatic amino acids and also with the diacetylchitobiose-induced difference spectrum of lysozyme. The kinds of aromatic amino acid residues possibly responsible for the observed difference peaks were discussed on the basis of the results of the comparison. Based on the results obtained, the common occurrence of a heme-linked functional response of the hemoprotein conformation was suggested.

摘要

通过计算机控制的分光光度法研究了血红素蛋白在近紫外区域与配体结合以及血红素铁氧化还原时的光谱变化。高铁血红素蛋白的低自旋和高自旋形式之间的近紫外差光谱分为三组:在285和295nm左右有两个吸收峰的;在275nm左右有一个峰的;在300nm左右有一个峰的。低分子量的模型血红素配合物未观察到相应的吸收峰。过氧化氢酶和辣根过氧化物酶在近紫外区域的氰化物差光谱中的峰强度取决于添加氰化物的浓度,并且与索雷特区域的光谱变化强度平行。添加氰化物后6毫秒内,近紫外区域和索雷特区域都出现了光谱变化。细胞色素c、细胞色素氧化酶 - 氰化物复合物、血红蛋白和乳过氧化物酶 - 氰化物复合物的还原态和氧化态之间的差光谱在285 - 290nm左右显示出一个特征峰。还测量了血红蛋白在近紫外区域的各种差光谱。将观察到的峰的位置、形状、组合和相对强度与蛋白质和芳香族氨基酸的溶剂扰动差光谱、pH差光谱以及溶菌酶的二乙酰壳二糖诱导差光谱进行了比较。根据比较结果讨论了可能导致观察到的差峰的芳香族氨基酸残基的种类。基于所得结果,提示了血红素蛋白构象的血红素连接功能反应的普遍存在。

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