Tordi M G, Naro F, Giordano R, Silvestrini M C
Dipaztimento di Scienze Biochimiche, CNR, Università di Roma, La Sapienza, Roma, Italia.
Biol Met. 1990;3(2):73-6. doi: 10.1007/BF01179506.
The interaction between azurin and silver ions was investigated, by means of ultraviolet, fluorescence and atomic absorption spectroscopies, as a function of the redox state of the protein. The Ag(I) ion has a very low affinity for oxidized azurin. Interestingly, the affinity is much higher for reduced azurin; in this case Ag(I) completely displaces the Cu(I) ion from the native binding site. The effect is very specific for silver ions since other ions, such as Hg(II), Ni(II) and Cd(II), do not produce the same effect. Treatment of reduced and oxidized azurin with excess Ag(I) (2-8-fold stoichiometric) shows that there is a second binding site for silver ions on the protein which can also bind Cu(II) and Hg(II) with comparable affinities.
通过紫外、荧光和原子吸收光谱法,研究了天青蛋白与银离子之间的相互作用,并将其作为蛋白质氧化还原状态的函数。Ag(I)离子对氧化型天青蛋白的亲和力非常低。有趣的是,其对还原型天青蛋白的亲和力要高得多;在这种情况下,Ag(I)会将Cu(I)离子从天然结合位点完全取代。这种效应对于银离子非常特异,因为其他离子,如Hg(II)、Ni(II)和Cd(II),不会产生相同的效应。用过量的Ag(I)(化学计量比为2至8倍)处理还原型和氧化型天青蛋白表明,蛋白质上存在银离子的第二个结合位点,该位点也能以相当的亲和力结合Cu(II)和Hg(II)。