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酵母野生型细胞色素c过氧化物酶、大肠杆菌重组酶以及天冬氨酸235突变为天冬酰胺235的突变体的质子核磁共振对比分析。

Comparative proton NMR analysis of wild-type cytochrome c peroxidase from yeast, the recombinant enzyme from Escherichia coli, and an Asp-235----Asn-235 mutant.

作者信息

Satterlee J D, Erman J E, Mauro J M, Kraut J

机构信息

Department of Chemistry, Washington State University, Pullman 99164-4630.

出版信息

Biochemistry. 1990 Sep 18;29(37):8797-804. doi: 10.1021/bi00489a042.

Abstract

Proton NMR spectra of cytochrome c peroxidase (CcP) isolated from yeast (wild type) and two Escherichia coli expressed proteins, the parent expressed protein [CcP(MI)] and the site-directed mutant CcP(MI,D235N) (Asp-235----Asn-235), have been examined. At neutral pH and in the presence of only potassium phosphate buffer and potassium nitrate, wild-type Ccp and CcP(MI) demonstrate nearly identical spectra corresponding to normal (i.e., "unaged") high-spin ferric peroxidase. In contrast, the mutant protein displays a spectrum characteristic of a low-spin form, probably a result of hydroxide ligation. Asp-235 is hydrogen-bonded to the proximal heme ligand, His-175. Changing Asp-235 to Asn results in alteration of the pK for formation of the basic form of CcP. Thus, changes in proximal side structure mediate the chemistry of the distal ligand binding site. All three proteins bind F-, N3-, and CN- ions, although the affinity of the mutant protein (D235N) for fluoride ion appears to be much higher than that of the other two proteins. Analysis of proton NMR spectra of the cyanide ligated forms leads to the conclusion that the mutant protein (D235N) possesses a more neutral proximal histidine imidazole ring than does either wild-type CcP or CcP(MI). It confirms that an important feature of the cytochrome c peroxidase structure is at least partial, and probably full, imidazolate character for the proximal histidine (His-175).

摘要

对从酵母(野生型)中分离得到的细胞色素c过氧化物酶(CcP)以及两种在大肠杆菌中表达的蛋白质(亲本表达蛋白[CcP(MI)]和定点突变体CcP(MI,D235N)(天冬氨酸-235→天冬酰胺-235))的质子核磁共振谱进行了检测。在中性pH值且仅存在磷酸钾缓冲液和硝酸钾的情况下,野生型Ccp和CcP(MI)显示出几乎相同的谱图,对应于正常(即“未老化”)的高自旋铁过氧化物酶。相比之下,突变蛋白显示出低自旋形式的特征谱图,这可能是氢氧根配位的结果。天冬氨酸-235与近端血红素配体组氨酸-175形成氢键。将天冬氨酸-235变为天冬酰胺会导致CcP碱性形式形成的pK发生改变。因此,近端侧结构的变化介导了远端配体结合位点的化学性质。所有这三种蛋白质都能结合氟离子、叠氮根离子和氰根离子,尽管突变蛋白(D235N)对氟离子的亲和力似乎比其他两种蛋白质高得多。对氰根配位形式的质子核磁共振谱分析得出结论,突变蛋白(D235N)的近端组氨酸咪唑环比野生型CcP或CcP(MI)的更中性。这证实了细胞色素c过氧化物酶结构的一个重要特征是近端组氨酸(组氨酸-175)至少部分且可能完全具有咪唑盐特征。

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