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溴化氰对远端组氨酸的修饰对肌红蛋白光谱和配体结合特性的影响:磁圆二色光谱作为高铁高自旋组氨酸结合血红素蛋白中远端水配位的探针

Effects of cyanogen bromide modification of the distal histidine on the spectroscopic and ligand binding properties of myoglobin: magnetic circular dichroism spectroscopy as a probe of distal water ligation in ferric high-spin histidine-bound heme proteins.

作者信息

Bracete A M, Sono M, Dawson J H

机构信息

Department of Chemistry and Biochemistry, University of South Carolina, Columbia 29208.

出版信息

Biochim Biophys Acta. 1991 Nov 15;1080(3):264-70. doi: 10.1016/0167-4838(91)90012-o.

Abstract

Magnetic circular dichroism (MCD) spectroscopy has been utilized to characterize the change in coordination structure in native ferric sperm whale myoglobin upon cyanogen bromide-modification. Comparison of the MCD properties of the ferric high-spin state of cyanogen bromide-modified myoglobin (BrCN-Mb) with those of native ferric horseradish peroxidase and Aplysia myoglobin suggests that ferric BrCN-Mb is a potential MCD model for the pentacoordinate state of ferric high-spin histidine-ligated heme proteins. These five-coordinate heme proteins afford a relatively weak and unsymmetric signal in the Soret region of the MCD spectrum. In contrast, native ferric myoglobin and the benzohydroxamic acid adduct of ferric horseradish peroxidase show a strong and symmetric derivative-shaped Soret MCD signal which is indicative of hexacoordination with water and histidine axial ligands. Therefore it seems that MCD spectroscopy could be used to probe the presence of water ligated to the distal side of ferric high-spin heme proteins. The MCD spectra of the ferric-azide, ferrous-deoxy and ferrous-CO forms of BrCN-Mb have also been measured and compared to those of analogous native myoglobin complexes. The present MCD study has been extended to include new ligands, NO, thiocyanate and cyanate, which bind to ferric BrCN-Mb. With exogenous ligands such as CO, NO and thiocyanate, the coordination structures of the BrCN-Mb complexes are similar to those of the respective native myoglobin adducts. In the case of ferrous-deoxy and ferric-cyanate BrCN-Mb, however, the altered MCD spectra (and EPR for the latter) reveal changes in electronic structure which likely correlate with alterations of the coordination environment of these BrCN-Mb derivatives. Data are also presented which support the proposed tetrazole-bound structure for azide-treated BrCN-Mb (Hori, H., Fujii, M., Shiro, Y., Iizuka, T., Adachi, S. and Morishima, I. (1989) J. Biol. Chem. 264, 5715-5719) and the inability of the distal histidine of BrCN-Mb to stabilize the ferric ligand-bound state.

摘要

磁圆二色性(MCD)光谱已被用于表征天然铁抹香鲸肌红蛋白经溴化氰修饰后配位结构的变化。将溴化氰修饰的肌红蛋白(BrCN-Mb)的铁高自旋态的MCD性质与天然铁辣根过氧化物酶和海兔肌红蛋白的MCD性质进行比较,表明铁BrCN-Mb是铁高自旋组氨酸配位血红素蛋白五配位状态的潜在MCD模型。这些五配位血红素蛋白在MCD光谱的Soret区域提供相对较弱且不对称的信号。相比之下,天然铁肌红蛋白和铁辣根过氧化物酶的苯甲羟肟酸加合物显示出强且对称的导数形Soret MCD信号,这表明与水和组氨酸轴向配体形成六配位。因此,似乎MCD光谱可用于探测与铁高自旋血红素蛋白远端相连的水的存在。还测量了BrCN-Mb的铁叠氮化物、亚铁脱氧和亚铁-CO形式的MCD光谱,并与类似的天然肌红蛋白配合物的光谱进行了比较。目前的MCD研究已扩展到包括与铁BrCN-Mb结合的新配体NO、硫氰酸盐和氰酸盐。对于诸如CO、NO和硫氰酸盐等外源性配体,BrCN-Mb配合物的配位结构与各自的天然肌红蛋白加合物的配位结构相似。然而,对于亚铁脱氧和铁氰酸盐BrCN-Mb,MCD光谱的改变(以及后者的EPR)揭示了电子结构的变化,这可能与这些BrCN-Mb衍生物配位环境的改变相关。还提供了数据,支持了叠氮化物处理的BrCN-Mb的拟四唑结合结构(Hori,H.,Fujii,M.,Shiro,Y.,Iizuka,T.,Adachi,S.和Morishima,I.(1989)J.Biol.Chem.264,5715 - 5719)以及BrCN-Mb的远端组氨酸无法稳定铁配体结合状态的观点。

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