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The distal heme pocket of Escherichia coli flavohemoglobin probed by infrared spectroscopy

机译:红外光谱法检测大肠杆菌黄素血红蛋白的远端血红素袋

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The infrared absorption spectra of ferric cyanide and ferrous carbonmonoxy Escherichia coli flavohemoglobin have been measured in order to probe the fine structural properties of the distal heme pocket, characterized by the presence of a tyrosine in position B10 and a glutamine in position E7. The stretching frequency of iron bound cyanide occurs at 2136 cm~(-1), an unusually high value if compared to other heme proteins. The infrared spectrum of the CO bound derivative displays two peaks centered at 1960 cm~(-1) and at 1909 cm~(-1) respectively. ~2H_2O effects have been studied in both the ferric cyanide and ferrous CO derivatives in order to establish the presence of a distal hydrogen bonding to the iron bound ligand. The observed isotope shifts indicate that in the ferric cyanide derivative a hydrogen bond is donated from a residue in the distal pocket to the biatomic ligand whereas in the ferrous carbon monoxy derivative only the 1909 cm~(-1) component is most likely hydrogen bonded to the phenolic group of TyrB10.
机译:为了探测远端血红素囊袋的精细结构特性,已测量了氰化铁和亚铁一氧化碳大黄铁血红蛋白的红外吸收光谱,其特征在于在B10位置存在酪氨酸,在E7位置存在谷氨酰胺。铁结合的氰化物的拉伸频率发生在2136 cm〜(-1),与其他血红素蛋白相比,这是一个异常高的值。 CO键合衍生物的红外光谱显示两个分别位于1960 cm-1(-1)和1909 cm-1(-1)的峰。在氰化铁和一氧化碳CO衍生物中都已研究了〜2H_2O的作用,以确定与铁结合的配体之间存在远端氢键。观察到的同位素位移表明,在氰化铁衍生物中,远端口袋中的残基向双原子配体提供了氢键,而在亚铁碳一氧基衍生物中,最有可能的氢键是1909 cm〜(-1)组分。 TyrB10的酚基。

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