Stillman M J, Cai W, Zelazowski A J
J Biol Chem. 1987 Apr 5;262(10):4538-48.
The cadmium-binding properties of rabbit liver Zn7-metallothionein (MT) 2 and apo-MT, rat liver apo-alpha MT and Zn4-alpha MT, and calf liver apo-beta MT, have been studied using circular dichroism (CD) and magnetic circular dichroism (MCD) spectroscopies. Both sets of spectra recorded during the titration of Zn7-MT 2 with Cd2+ exhibit a complicated pattern that is quite unexpected. Such behavior is not found at all in sets of spectra recorded during titrations of the apo-species (apo-MT, apo-alpha MT, and apo-beta MT), and is observed to a much lesser extent in the titration of Zn-alpha MT. Comparison between the band centers of the Cd-alpha MT and Cd-beta MT indicates that the CD spectrum of Cd7-MT is dominated by intensity from transitions that originate on Cd-S chromophores in the alpha domain, with little direct contribution from the beta domain. Analysis of the spectra recorded during titrations of Zn7-MT 2 with Cd2+ suggests: (i) that Cd2+ replaces Zn2+ in Zn7-MT isomorphously; (ii) that cadmium binds in a nonspecific, "distributed" manner across both domains; (iii) that cluster formation in the alpha domain only occurs after 4 mol eq of cadmium have been added and is indicated by the presence of a cluster-sensitive, CD spectral feature; (iv) that the characteristic derivative CD spectrum of native Cd4,Zn3-MT is only obtained from "synthetic" Cd4,Zn3-MT following a treatment cycle that allows the redistribution of cadmium into the alpha domain; warming the synthetic "native," Cd4,Zn3-MT, to 65 degrees C results in cadmium being preferentially bound in the alpha domain; and (v) Zn7-MT will bind Cd2+ quite normally at up to 65 degrees C but with greater specificity for the alpha domain compared with titrations carried out at 25 degrees C. These results suggest that the initial presence of zinc in both domains is an important factor in the lack of any domain specificity during cadmium binding to Zn-MT which contrasts the domain specific manner observed for cadmium binding to apo-MT.
利用圆二色性(CD)和磁圆二色性(MCD)光谱学,研究了兔肝锌7-金属硫蛋白(MT)2和脱辅基MT、大鼠肝脱辅基α-MT和锌4-α-MT以及小牛肝脱辅基β-MT的镉结合特性。在用Cd2+滴定锌7-MT 2过程中记录的两组光谱都呈现出一种复杂的模式,这是相当出乎意料的。在脱辅基物种(脱辅基MT、脱辅基α-MT和脱辅基β-MT)滴定过程中记录的光谱组中根本没有发现这种行为,并且在锌-α-MT的滴定中观察到的程度要小得多。镉-α-MT和镉-β-MT的谱带中心之间的比较表明,镉7-MT的CD光谱主要由源自α结构域中Cd-S发色团跃迁的强度主导,β结构域的直接贡献很小。在用Cd2+滴定锌7-MT 2过程中记录的光谱分析表明:(i)Cd2+以同晶型方式取代锌7-MT中的Zn2+;(ii)镉以非特异性的“分布”方式结合在两个结构域上;(iii)只有在加入4摩尔当量的镉后,α结构域中才会形成簇,这由一个对簇敏感的CD光谱特征表明;(iv)天然镉4,锌3-MT的特征导数CD光谱仅从“合成”镉4,锌3-MT中获得,经过一个允许镉重新分布到α结构域的处理循环;将合成的“天然”镉4,锌3-MT加热到65℃会导致镉优先结合在α结构域中;以及(v)锌7-MT在高达65℃时能正常结合Cd2+,但与在25℃下进行的滴定相比,对α结构域具有更高的特异性。这些结果表明,两个结构域中锌的初始存在是镉与锌-MT结合过程中缺乏任何结构域特异性的一个重要因素,这与观察到的镉与脱辅基MT结合的结构域特异性方式形成对比。