首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Probing protein-cofactor interactions in the terminal oxidases by second derivative spectroscopy: study of bacterial enzymes with cofactor substitutions and heme A model compounds.
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Probing protein-cofactor interactions in the terminal oxidases by second derivative spectroscopy: study of bacterial enzymes with cofactor substitutions and heme A model compounds.

机译:通过二阶导数光谱探测末端氧化酶中的蛋白质-辅因子相互作用:具有辅因子取代和血红素A模型化合物的细菌酶的研究。

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摘要

Second derivative absorption spectra are reported for the aa3-cytochrome c oxidase from bovine cardiac mitochondria, the aa3-600 ubiquinol oxidase from Bacillus subtilis, the ba3-cytochrome c oxidase from Thermus thermophilis, and the aco-cytochrome c oxidase from Bacillus YN-2000. Together these enzymes provide a range of cofactor combinations that allow us to unequivocally identify the origin of the 450-nm absorption band of the terminal oxidases as the 6-coordinate low-spin heme, cytochrome a. The spectrum of the aco-cytochrome c oxidase further establishes that the split Soret band of cytochrome a, with features at 443 and 450 nm, is common to all forms of the enzyme containing ferrocytochrome a and does not depend on ligand occupancy at the other heme cofactor as previously suggested. To test the universality of this Soret band splitting for 6-coordinate low-spin heme A systems, we have reconstituted purified heme A with the apo forms of the heme binding proteins, hemopexin, histidine-proline-rich glycoprotein and the H64V/V68H double mutant of human myoglobin. All 3 proteins bound the heme A as a (bis)histidine complex, as judged by optical and resonance Raman spectroscopy. In the ferroheme A forms, none of these proteins displayed evidence of Soret band splitting. Heme A-(bis)imidazole in aqueous detergent solution likewise failed to display Soret band splitting. When the cyanide-inhibited mixed-valence form of the bovine enzyme was partially denatured by chemical or thermal means, the split Soret transition of cytochrome a collapsed into a single band at 443 nm.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:报告了牛心脏线粒体的aa3-细胞色素c氧化酶,枯草芽孢杆菌的aa3-600泛醇氧化酶,嗜热栖热菌的ba3-细胞色素c氧化酶和芽孢杆菌YN-2000的细胞色素c氧化酶的二阶导数吸收光谱。 。这些酶共同提供了一系列辅助因子组合,使我们能够明确地确定末端氧化酶的450 nm吸收带的起源是6坐标低旋血红素细胞色素a。辅助细胞色素c氧化酶的光谱进一步确定,在443和450 nm处具有特征的细胞色素a的Soret分离带是所有形式的含铁细胞色素a的酶所共有的,并且不依赖于另一血红素上的配体占据如先前建议的辅助因子。为了测试这种6位低旋血红素A系统的Soret带分裂的普遍性,我们用apo形式的血红素结合蛋白,血红素,富含组氨酸脯氨酸的糖蛋白和H64V / V68H double的apo形式重构了纯化的血红素A。人类肌红蛋白的突变体。通过光学和共振拉曼光谱学判断,所有3种蛋白质将血红素A结合为(双)组氨酸复合物。在铁血红素A形式中,这些蛋白质均未显示出Soret带分裂的证据。洗涤剂水溶液中的血红素A-(双)咪唑同样没有显示出Soret带分裂。当通过化学或热手段使牛的氰化物抑制混合价形式部分变性时,细胞色素的分裂Soret跃迁在443 nm处塌陷成一条带(摘要截断为250个字)

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