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金属硫蛋白1A中的结构域选择:锌结合和镉交换的亲和力控制机制

Domain Selection in Metallothionein 1A: Affinity-Controlled Mechanisms of Zinc Binding and Cadmium Exchange.

作者信息

Pinter Tyler B J, Irvine Gordon W, Stillman Martin J

机构信息

Department of Chemistry, The University of Western Ontario, London, Ontario, Canada N6A 5B7.

出版信息

Biochemistry. 2015 Aug 18;54(32):5006-16. doi: 10.1021/acs.biochem.5b00452. Epub 2015 Aug 4.

Abstract

Mammalian metallothioneins (MTs) are small, metal binding proteins implicated in cellular metal ion homeostasis and heavy metal detoxification. Divalent, metal-saturated MTs form two distinct domains; the N-terminal β domain binds three metals using nine Cys residues, and the C-terminal α domain binds four metals with 11 Cys residues. Domain selection during zinc binding and cadmium exchange to human MT1A was examined using a series of competition reactions with mixtures of the isolated domain fragments. These experiments were conducted at two biologically significant pH conditions where MTs exist in vivo. Neither zinc binding nor cadmium exchange showed any significant degree of specificity or selectivity based on detailed analysis of electrospray ionization mass spectrometric and circular dichroic data. Under acidic conditions, zinc binding and cadmium exchange showed slight α domain selectivity because of the increased preference for cooperative clustering of the α domain. Modeling of the reactions showed that at both physiological (7.4) and acidic (5.8) pHs, zinc binding and cadmium exchanges occur essentially randomly between the two fragments. The metal binding affinity distributions between the domain fragments are comingled and not significantly separated as required for a domain specific mechanism. The models show rather that the order of the binding events follows the order of the binding affinities that are distributed across both domains and that this can be considered quantitatively by the KF(Cd)/KF(Zn) binding constant ratio for each metal bound.

摘要

哺乳动物金属硫蛋白(MTs)是一类小分子金属结合蛋白,与细胞内金属离子稳态及重金属解毒作用相关。二价、金属饱和的MTs形成两个不同的结构域;N端β结构域利用9个半胱氨酸残基结合3个金属,C端α结构域利用11个半胱氨酸残基结合4个金属。使用一系列与分离的结构域片段混合物的竞争反应,研究了锌结合和镉交换至人MT1A过程中的结构域选择。这些实验在MTs于体内存在的两个具有生物学意义的pH条件下进行。基于对电喷雾电离质谱和圆二色性数据的详细分析,锌结合和镉交换均未表现出任何显著程度的特异性或选择性。在酸性条件下,由于α结构域对协同聚集的偏好增加,锌结合和镉交换表现出轻微的α结构域选择性。反应建模表明,在生理pH(7.4)和酸性pH(5.8)条件下,锌结合和镉交换在两个片段之间基本随机发生。结构域片段之间的金属结合亲和力分布相互混合,并未像结构域特异性机制所要求的那样显著分开。相反,模型表明结合事件的顺序遵循分布在两个结构域上的结合亲和力顺序,并且这可以通过每种结合金属的KF(Cd)/KF(Zn)结合常数比进行定量考虑。

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