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含镉纳米颗粒上蛋白质冠的形成:富含半胱氨酸蛋白质的面依赖性结合的重要作用

Protein Corona Formation on Cadmium-Bearing Nanoparticles: Important Role of Facet-Dependent Binding of Cysteine-Rich Proteins.

作者信息

Qi Yu, Guan Wenyu, Jiang Chuanjia, Chen Wei, Zhang Tong

机构信息

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

University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

Environ Health (Wash). 2024 May 30;2(9):623-630. doi: 10.1021/envhealth.4c00031. eCollection 2024 Sep 20.

Abstract

Cadmium-bearing nanoparticles, such as nanoparticulate cadmium selenide (CdSe) and cadmium sulfide (CdS), widely exist in the environment and originate from both natural and anthropogenic sources. Risk assessment of these nanoparticles cannot be accurate without taking into account the properties of the protein corona that is acquired by the nanoparticles upon biouptake. Here, we show that the compositions of the protein corona on CdSe/CdS nanoparticles are regulated collectively by the surface atomic arrangement of the nanoparticles and the abundance and distribution of cysteine moieties of the proteins in contact with the nanoparticles. A proteomic analysis shows that the observed facet-dependent preferential binding of proteins is mostly related to the cysteine contents of the proteins, among commonly recognized protein properties controlling the formation of the protein corona. Theoretical calculations further demonstrate that the atomic arrangement of surface Cd atoms, as dictated by the exposed facets of the nanoparticles, controls the specific binding mode of the S atoms in the disulfide bonds of the proteins. Supplemental protein adsorption experiments confirm that disulfide bonds remain intact during protein adsorption, making the binding of protein molecules sensitive to the abundance and distribution of Cd-binding moieties and possibly molecular rigidity of the proteins. The significant conformational changes of adsorbed proteins evidenced from a circular dichroism spectroscopy analysis suggest that disrupting the structural stability of proteins may be an additional risk factor of Cd-bearing nanoparticles. These findings underline that the unique properties and behaviors of nanoparticles must be fully considered when evaluating the biological effects and health risks of metal pollutants.

摘要

含镉纳米颗粒,如纳米硒化镉(CdSe)和硫化镉(CdS),广泛存在于环境中,其来源既有天然的也有人类活动产生的。如果不考虑纳米颗粒在生物摄取过程中获得的蛋白质冠层的特性,对这些纳米颗粒的风险评估就不可能准确。在此,我们表明,CdSe/CdS纳米颗粒上蛋白质冠层的组成是由纳米颗粒的表面原子排列以及与纳米颗粒接触的蛋白质中半胱氨酸部分的丰度和分布共同调节的。蛋白质组学分析表明,在控制蛋白质冠层形成的常见公认蛋白质特性中,观察到的蛋白质的晶面依赖性优先结合大多与蛋白质的半胱氨酸含量有关。理论计算进一步证明,由纳米颗粒暴露的晶面决定的表面镉原子的原子排列控制着蛋白质二硫键中硫原子的特定结合模式。补充的蛋白质吸附实验证实,二硫键在蛋白质吸附过程中保持完整,使得蛋白质分子的结合对镉结合部分的丰度和分布以及蛋白质可能的分子刚性敏感。圆二色光谱分析证明吸附蛋白质有显著的构象变化,这表明破坏蛋白质的结构稳定性可能是含镉纳米颗粒的另一个风险因素。这些发现强调,在评估金属污染物的生物效应和健康风险时,必须充分考虑纳米颗粒的独特性质和行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72aa/11540113/710f3c85f6fa/eh4c00031_0001.jpg

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