Naro F, Tordi M G, Giacometti G M, Tomei F, Timperio A M, Zolla L
Istituto di Medicina Legale e delle Assicurazioni, Università di Roma La Sapienza, Italy.
Z Naturforsch C J Biosci. 2000 May-Jun;55(5-6):347-54. doi: 10.1515/znc-2000-5-609.
The interaction between azurin from Pseudomonas aeruginosa and Ag(I), Cu(II), Hg(II), was investigated as a function of protein state, i.e. apo-, reduced and oxidised azurin. Two different metal binding sites, characterized by two different spectroscopic absorbancies, were detected: one is accessible to Ag(I) and Cu(II) but not to Hg(II); the other one binds Ag(I) and Hg(II) but not copper. When added in stoichiometric amount, Ag(I) shows high affinity for the redox center of apo-azurin, to which it probably binds by the -SH group of Cys112; it can displace Cu(I) from reducedazurin, while it does not bind to the redox center of oxidizedazurin. Kinetic experiments show that Ag(I) binding to the reduced form is four times faster than binding to the apo-form. This result suggests that metal binding requires a conformational rearrangement of the active site of the azurin. Interaction of Ag(I) or Hg(II) ions to the second metal binding site, induces typical changes of UV spectrum and quenching of fluorescence emission.
研究了铜绿假单胞菌天青蛋白与Ag(I)、Cu(II)、Hg(II)之间的相互作用,该相互作用是蛋白质状态(即脱辅基、还原态和氧化态天青蛋白)的函数。检测到两个不同的金属结合位点,其特征在于两种不同的光谱吸光度:一个对Ag(I)和Cu(II)可及,但对Hg(II)不可及;另一个结合Ag(I)和Hg(II),但不结合铜。当以化学计量添加时,Ag(I)对脱辅基天青蛋白的氧化还原中心表现出高亲和力,它可能通过Cys112的-SH基团与之结合;它可以从还原态天青蛋白中取代Cu(I),而它不与氧化态天青蛋白的氧化还原中心结合。动力学实验表明,Ag(I)与还原态的结合比与脱辅基形式的结合快四倍。该结果表明金属结合需要天青蛋白活性位点的构象重排。Ag(I)或Hg(II)离子与第二个金属结合位点的相互作用会引起典型的紫外光谱变化和荧光发射猝灭。