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球形红杆菌aa3型细胞色素c氧化酶催化位点的两种构象。

Two conformations of the catalytic site in the aa3-type cytochrome c oxidase from Rhodobacter sphaeroides.

作者信息

Wang J, Takahashi S, Hosler J P, Mitchell D M, Ferguson-Miller S, Gennis R B, Rousseau D L

机构信息

AT&T Bell Laboratories, Murray Hill, New Jersey 07974, USA.

出版信息

Biochemistry. 1995 Aug 8;34(31):9819-25. doi: 10.1021/bi00031a001.

Abstract

Resonance Raman spectra of the carbon monoxy derivative of the aa3-type cytochrome c oxidase from Rhodobacter sphaeroides show two distinct Fe-CO stretching modes (519 and 493 cm-1) at room temperature. The frequency of the mode at 519 cm-1 coincides with that of other terminal oxidases at neutral pH. Two C-O stretching modes, one at 1966 cm-1 and one at 1955 cm-1, are also found. The splitting of the C-O stretching mode is consistent with the FTIR spectra of cytochrome c oxidases at cryogenic temperatures in which two different conformations (alpha and beta) of the catalytic site of the enzyme are present. The splitting of both the Fe-CO and C-O stretching modes under our conditions indicates that these two forms of the enzyme are also present at room temperature, and with the additional information on the Fe-CO modes provided here, a structural origin for the two forms may be postulated. The alpha-form has the same general structure of the active site as mammalian oxidase, a structure in which the copper atom that is the part of the Fe-CuB binuclear site interacts strongly with the bound CO. We postulate that the copper atom exerts a strong polar or steric effect on the heme-bound CO, resulting in either compression of the Fe-CO bond or distortion of the Fe-CO moiety.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

球形红细菌aa3型细胞色素c氧化酶的一氧化碳衍生物的共振拉曼光谱在室温下显示出两种不同的Fe-CO伸缩模式(519和493 cm-1)。519 cm-1处模式的频率与中性pH下其他末端氧化酶的频率一致。还发现了两种C-O伸缩模式,一种在1966 cm-1,另一种在1955 cm-1。C-O伸缩模式的分裂与低温下细胞色素c氧化酶的傅里叶变换红外光谱一致,在该光谱中酶的催化位点存在两种不同的构象(α和β)。在我们的条件下Fe-CO和C-O伸缩模式的分裂表明这两种酶形式在室温下也存在,并且根据此处提供的关于Fe-CO模式的额外信息,可以推测这两种形式的结构起源。α形式的活性位点具有与哺乳动物氧化酶相同的一般结构,在该结构中作为Fe-CuB双核位点一部分的铜原子与结合的CO强烈相互作用。我们推测铜原子对血红素结合的CO施加强烈的极性或空间效应,导致Fe-CO键的压缩或Fe-CO部分的扭曲。(摘要截短于250字)

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