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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Amicyanin metal-site structure and interaction with MADH: PAC and NMR spectroscopy of Ag-, Cd-, and Cu-amicyanin
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Amicyanin metal-site structure and interaction with MADH: PAC and NMR spectroscopy of Ag-, Cd-, and Cu-amicyanin

机译:Amicyanin金属位点结构及其与MADH的相互作用:Ag,Cd和Cu-花青素的PAC和NMR光谱

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To investigate the structural control mechanisms in the metal site of amicyanin when interacting with MADH, redox-inactive Ag~+- and Cd~(2+)-substituted amicyanins were studied with perturbed angular correlations of γ-rays (PAC) spectroscopy. PAC experiments on 111mCd-substituted amicyanin revealed two different metal-site structures, which are very likely in dynamic exchange on a ~5 ns timescale. Only one structure binds to MADH. The dissociation constants, K d, are 9±2 M with MADHred and 38±11 M with MADHox, indicating that the Cd-amicyanin binding affinity is regulated by the MADH redox state. PAC experiments on 111Ag-substituted amicyanin also showed two different forms of Ag-amicyanin, probably reflecting relaxation from Ag to Cd geometry. No binding of Ag-amicyanin to MADH could be observed with PAC, suggesting that the K d is larger than 43 M, based on the 95% confidence limit. NMR revealed large chemical shift differences between native copper amicyanin and both metal-substituted forms. Affected residues are found up to 15 A away from the metal ion. The Ag~+- and Cd~(2+)-substituted amicyanins demonstrate no change in coordination as a function of pH, contrary to Cu~+-amicyanin which shows protonation of the copper ligand His96 with pK a=6.8. It is concluded that, contrary to other blue copper proteins, Ag~+-amicyanin is not a close mimic of Cu~+-amicyanin, and that structural changes in the metal site have large effects on the affinity for the redox partner.
机译:为了研究花青素与MADH相互作用时金属花青素在金属位点的结构控制机理,利用γ射线(PAC)光谱的扰动角相关性研究了氧化还原无活性的Ag〜+和Cd〜(2+)取代的花青素。在111mCd取代的花青素上进行的PAC实验揭示了两种不同的金属位点结构,很可能在约5 ns的时间尺度上进行动态交换。只有一种结构与MADH结合。离解常数K d对于MADHred为9±2 M,对于MADHox为38±11 M,表明Cd-花青素结合亲和力受MADH氧化还原状态的调节。在111Ag取代的花青素上进行的PAC实验还显示出两种不同形式的Ag-花青素,可能反映了从Ag到Cd几何形状的弛豫。用PAC不能观察到Ag-花青素与MADH的结合,表明基于95%的置信限,K d大于43M。 NMR显示天然铜花青素与两种金属取代形式之间存在较大的化学位移差异。发现受影响的残基距离金属离子最远15A。 Ag〜+和Cd〜(2 +)-取代的花青素没有显示出随pH变化的配位变化,这与Cu〜+-花青素显示铜配体His96的质子化与pKa = 6.8相反。结论是,与其他蓝铜蛋白相反,Ag〜+-花青素不是Cu〜+-花青素的紧密模拟物,并且金属位点的结构变化对与氧化还原伴侣的亲和力有很大影响。

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