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Ag+ Ion Binding to Human Metallothionein-2A Is Cooperative and Domain Specific

机译:与人质金属硫蛋白-2a的Ag +离子结合是合作的和结构域

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Metallothioneins (MTs) constitute a family of cysteine-rich proteins that play key biological roles for a wide range of metal ions, but unlike many other metalloproteins, the structures of apo- and partially metalated MTs are not well understood. Here, we combine nano-electrospray ionization-mass spectrometry (ESI-MS) and nano-ESI-ion mobility (IM)-MS with collision-induced unfolding (CIU), chemical labeling using N-ethylmaleimide (NEM), and both bottom-up and top-down proteomics in an effort to better understand the metal binding sites of the partially metalated forms of human MT-2A, viz., Ag4MT. The results for Ag-4-MT are then compared to similar results obtained for Cd-4-MT. The results show that Ag-4-MT is a cooperative product, and data from top-down and bottom-up proteomics mass spectrometry analysis combined with NEM labeling revealed that all four Agt ions of Ag-4-MT are bound to the beta-domain. The binding sites are identified as Cys13, Cys15, Cys19, Cys21, Cys24, and Cys26. While both Agt and Cd2+ react with MT to yield cooperative products, i.e., Ag-4-MT and Cd-4-MT, these products are very different; Agt ions of Ag-4-MT are located in the beta-domain, whereas Cd2+ ions of Cd-4-MT are located in the alpha-domain. Ag-6-MT has been reported to be fully metalated in the beta-domain, but our data suggest the two additional Ag+ ions are more weakly bound than are the other four. Higher order Ag-i-MT complexes (i = 7-17) are formed in solutions that contain excess Ag+ ions, and these are assumed to be bound to the alpha-domain or shared between the two domains. Interestingly, the excess Ag+ ions are displaced upon addition of NEM to this solution to yield predominantly Ag4NEM14-MT. Results from CIU suggest that Ag-i-MT complexes are structurally more ordered and that the energy required to unfold these complexes increases as the number of coordinated Ag+ increases.
机译:Metallothioneins(MTS)构成富含半胱氨酸的富含蛋白质,该富含半胱氨酸的蛋白质,该蛋白质在各种金属离子中起主要的生物学作用,但与许多其他金属蛋白不同,Apo-和部分金属化MT的结构尚不清楚。在此,我们将纳米电喷雾电离质谱(ESI-MS)和纳米ESI离子迁移率(IM) - 使用碰撞诱导的展开(CIU),使用N-乙基马来酰亚胺(NEM)和底部的化学标记努力更好地了解人MT-2a,viz的部分金属化形式的金属结合位点的努力和自上而下的蛋白质组学。然后将Ag-4-MT的结果与用于CD-4-MT获得的类似结果进行比较。结果表明,AG-4-MT是合作产物,从自上而下和自下而上的蛋白质组学质谱分析的数据结合了NEM标记,表明Ag-4-MT的所有四种AgT离子都与β-结合领域。结合位点被识别为Cys13,Cys15,Cys19,Cys21,Cys24和Cys26。虽然AGT和CD2 +与MT反应,但是,即AG-4-MT和CD-4-MT,这些产品非常不同; Ag-4-MT的AgT离子位于β-结构域中,而CD2 +离子的CD2 +离子位于α-结构域中。据报道,AG-6-MT在β域中是完全金属化的,但我们的数据表明两种额外的Ag +离子比其他四个更弱。在含有过量的Ag +离子的溶液中形成高阶Ag-I-Mt络合物(I = 7-17),假设这些溶液与α结构域结合或在两个结构域之间共享。有趣的是,过量的Ag +离子在加入NEM时移位至该溶液,以产生主要是Ag4Nem14-MT。 CIU的结果表明,AG-I-MT复合物在结构上更新,并且随着协调ag +增加的数量增加,这些复合物所需的能量增加。

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