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金属硫蛋白 CdS 簇的形成在碳酸酐酶的保护中占主导地位。

Metallothionein CdS cluster formation dominates in the protection of carbonic anhydrase.

机构信息

Department of Chemistry, University of Western Ontario, London, ON N6A 3K7, Canada.

出版信息

Metallomics. 2020 May 27;12(5):767-783. doi: 10.1039/d0mt00023j.

Abstract

Metallothioneins (MTs) are ubiquitous proteins vital for essential metal homeostasis and heavy metal detoxification. The twenty-cysteinyl mammalian metallothioneins protect the proteome by sequestering heavy metals into thermodynamically stable metal thiolate structures when metalated with seven Cd2+. At physiological pH, the first metal (M) thiolate (SCys) structures formed involve M(SCys)4 terminal thiolates. With higher metal loading, M4(SCys)11 and M3(SCys)9 clusters form. As a regulator of the metallome, it is necessary to understand metal sequestration properties of MT in solution with other metalloproteins. We report that the association between apo-MT and apo-carbonic anhydrase (CA) enhances the formation of the protective mode of MT, in which Cd4(SCys)11-clusters form at much lower concentration levels than for the free apo-MT at physiological pH. Using stopped-flow kinetics and electrospray ionization mass spectrometry, we quantified this protective effect, determining that it is significant at pH 7.4, but the effect diminishes at pH 5.0. We report for the first time, the absolute stepwise binding constants of Cd2+ binding to human MT1a both in the presence and absence of CA through calibration by the known binding constant of Cd2+ to bovine CA. We report that this protein association affects the Cd2+ metalation rates of MT. The data support the physiological role of MTs as protectors of the metalloproteome from the toxic effects of Cd2+.

摘要

金属硫蛋白(MTs)是普遍存在的蛋白质,对于必需金属的体内平衡和重金属解毒至关重要。二十个半胱氨酸的哺乳动物金属硫蛋白通过将重金属螯合到热力学稳定的金属硫醇结构中来保护蛋白质组,当与七个 Cd2+ 金属化时。在生理 pH 下,形成的第一个金属(M)硫醇(SCys)结构涉及 M(SCys)4 端硫醇。随着金属负载的增加,形成 M4(SCys)11 和 M3(SCys)9 簇。作为金属组的调节剂,有必要了解 MT 在溶液中与其他金属蛋白的金属螯合特性。我们报告说,apo-MT 和 apo-碳酸酐酶(CA)之间的缔合增强了 MT 的保护模式的形成,其中 Cd4(SCys)11-簇在生理 pH 下以比游离 apo-MT 低得多的浓度形成。使用停流动力学和电喷雾电离质谱,我们定量了这种保护作用,确定它在 pH 7.4 时是显著的,但在 pH 5.0 时作用减弱。我们首次报道了 Cd2+与人 MT1a 结合的绝对逐步结合常数,通过已知 Cd2+与牛 CA 结合常数的校准,在存在和不存在 CA 的情况下均进行了报道。我们报告说,这种蛋白质缔合会影响 MT 的 Cd2+金属化速率。数据支持 MT 作为保护金属蛋白质组免受 Cd2+毒性影响的生理作用。

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