首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Non-covalent interactions in blue copper protein probed by Met16 mutation and electronic and resonance Raman spectroscopy of Achromobacter cycloclastes pseudoazurin
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Non-covalent interactions in blue copper protein probed by Met16 mutation and electronic and resonance Raman spectroscopy of Achromobacter cycloclastes pseudoazurin

机译:Met16突变和无色杆菌环孢霉假天青素的电子和共振拉曼光谱探测蓝色铜蛋白中的非共价相互作用

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We have used low-temperature (77 K) resonance Raman (RR) spectroscopy as a probe of the electronic and molecular structure to investigate weak pi-pi interactions between the metal ion-coordinated His imidazoles and aromatic side chains in the second coordination sphere of blue copper proteins. For this purpose, the RR spectra of Met16 mutants of Achromobacter cycloclastes pseudoazurin (AcPAz) with aromatic (Met16Tyr, Met16Trp, and Met16Phe) and aliphatic (Met16Ala, Met16Val, Met16Leu, and Metl6Ile) amino acid side chains have been obtained and analyzed over the 100-500 cm(-1) spectral region. Subtle strengthening of the Cu(II)-S(Cys) interaction on replacing Met16 with Tyr, Trp, and Phe is indicated by the upshifted (0.3-0.8 cm(-1)) RR bands involving nu(Cu-S)(Cys) stretching modes. In contrast, the RR spectra of Met16 mutants with aliphatic amino acids revealed larger (0.2-1.8 cm(-1)) shifts of the nu(Cu-S)(Cys), stretching modes to a lower frequency region, which indicate a weakening of the Cu(II)-S(Cys) bond. Comparisons of the predominantly v(Cu-S)(Cys) stretching RR peaks of the Met16X = Tyr, Trp, and Phe variants, with the molar absorptivity ratio epsilon(1)/epsilon(2) of sigma(similar to 455 nm)/pi(similar to 595 nm) (Cys)S -> Cu(II) charge-transfer bands in the optical spectrum and the axial/rhombic EPR signals, revealed a slightly more trigonal disposition of ligands about the copper(II) ion. In contrast, the RR spectra of Met16Z = Ala, Val, Leu, and Ile variants with aliphatic amino acid side chains show a more tetrahedral perturbation of the copper active site, as judged by the lower frequencies of the nu(Cu-S)(Cys) stretching modes, much larger values of the epsilon(1)/epsilon(2) ratio, and the increased rhombicity of the EPR spectra.
机译:我们已使用低温(77 K)共振拉曼(RR)光谱作为电子和分子结构的探针,以研究金属离子配位的His咪唑与芳香族侧链在第二个配位球中的弱pi-pi相互作用。蓝色铜蛋白。为此目的,已经获得了带有芳香族(Met16Tyr,Met16Trp和Met16Phe)和脂肪族(Met16Ala,Met16Val,Met16Leu和Metl6Ile)氨基酸侧链的无色环拟紫假杆菌(AcPAz)的Met16突变体的RR光谱,并进行了分析。 100-500 cm(-1)光谱区域。由涉及nu(Cu-S)(Cys)的(0.3-0.8 cm(-1))RR带上移表明,在用Tyr,Trp和Phe取代Met16时,Cu(II)-S(Cys)相互作用的细微增强。 )拉伸模式。相比之下,具有脂肪族氨基酸的Met16突变体的RR光谱显示nu(Cu-S)(Cys)的位移较大(0.2-1.8 cm(-1)),拉伸模式向较低的频率区域移动,表明减弱了的Cu(II)-S(Cys)键。 Met16X = Tyr,Trp和Phe变体的主要是v(Cu-S)(Cys)拉伸RR峰的比较,摩尔吸收比epsilon(1)/ epsilon(2)为sigma(类似于455 nm) / pi(类似于595 nm)(Cys)S->光谱中的Cu(II)电荷转移带以及轴向/斜向EPR信号,揭示了铜(II)离子上配体的三角分布略多。相比之下,Met16Z =带有脂肪族氨基酸侧链的Ala,Val,Leu和Ile变体的RR光谱显示铜活性位点的四面体扰动更多,如nu(Cu-S)( Cys)拉伸模式,更大的epsilon(1)/ epsilon(2)比值以及EPR光谱增加的菱形。

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