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汞离子(Hg)与血液的相互作用及血清白蛋白结合对细胞毒性的衰减作用。

Interaction of mercury ion (Hg) with blood and cytotoxicity attenuation by serum albumin binding.

机构信息

National Institute of Metrology, Beijing 100013, China.

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

出版信息

J Hazard Mater. 2021 Jun 15;412:125158. doi: 10.1016/j.jhazmat.2021.125158. Epub 2021 Jan 23.

Abstract

Blood mercury reflects the amount available from tissues, which is an indication of the exposure level. Here we confirm that Hg caused hemolytic effects at high concentrations; while at light concentrations, most of the ions were bound to human serum albumin (HSA). The binding mechanism of Hg to HSA has been investigated, which indicated that the presence of Hg significantly perturbed the structure of HSA and quenched the fluorescence of protein in a hybrid dynamic and static mode. Hg was preferably bound to cysteine and cystine, where the R‒S‒S‒R structure is responsible for maintaining the protein's structure by stabilizing the α-helical bundles. The metal-protein interaction mitigated the cellular toxicity as concealed by A498 cell lines. The fundamental and comprehensive data in this work is beneficial to elucidating and understanding the identification and binding mechanisms of heavy metals with proteins, as well as possible risks on human beings and the environment.

摘要

血汞反映了组织中可利用的汞含量,这是暴露水平的一个指标。在这里,我们证实 Hg 在高浓度下会引起溶血作用;而在低浓度下,大部分离子与人血清白蛋白 (HSA) 结合。我们研究了 Hg 与 HSA 的结合机制,表明 Hg 的存在显著扰乱了 HSA 的结构,并以混合动态和静态模式猝灭了蛋白质的荧光。Hg 优先与半胱氨酸和胱氨酸结合,其中 R‒S‒S‒R 结构通过稳定 α-螺旋束来维持蛋白质的结构。金属-蛋白质相互作用减轻了细胞毒性,正如 A498 细胞系所掩盖的那样。这项工作中的基础和综合数据有助于阐明和理解重金属与蛋白质的识别和结合机制,以及对人类和环境可能存在的风险。

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