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铜金属蛋白驱动的银纳米颗粒溶解的结构和功能影响。

Structural and functional effects of Cu metalloprotein-driven silver nanoparticle dissolution.

机构信息

Department of Chemistry & Biochemistry, Santa Clara University, Santa Clara, California 95053 United States.

出版信息

Environ Sci Technol. 2012 Jun 5;46(11):6355-62. doi: 10.1021/es300901h. Epub 2012 May 18.

Abstract

Interactions of a model Cu-metalloprotein, azurin, with 10-100 nm silver nanoparticles (NPs) were examined to elucidate the role of oxidative dissolution and protein interaction on the biological reactivity of NPs. Although minimal protein and NP structural changes were observed upon interaction, displacement of Cu(II) and formation of Ag(I) azurin species under aerobic conditions implicates Cu(II) azurin as a catalyst of NP oxidative dissolution. Consistent with NP oxidation potentials, largest concentrations of Ag(I) azurin species were recorded in reaction with 10 nm NPs (>50%). Apo-protein was also observed under anaerobic reaction with NPs of all sizes and upon aerobic reaction with larger NPs (>20 nm), where NP oxidation is slowed. Cu(II) azurin displacement upon reaction with NPs was significantly greater than when reacted with Ag(I)(aq) alone. Regardless of NP size, dialysis experiments show minimal reactivity between azurin and the Ag(I)(aq) species formed as a result of NP oxidative dissolution, indicating Cu displacement from azurin occurs at the NP surface. Mechanisms of azurin-silver NP interaction are proposed. Results demonstrate that NP interactions not only impact protein structure and function, but also NP reactivity, with implications for targeting, uptake, and cytotoxicity.

摘要

研究了模型铜金属蛋白(天青蛋白)与 10-100nm 银纳米颗粒(NPs)的相互作用,以阐明氧化溶解和蛋白相互作用对 NPs 生物反应性的作用。尽管相互作用后观察到最小的蛋白和 NP 结构变化,但在有氧条件下 Cu(II)的取代和 Ag(I)天青蛋白物种的形成表明 Cu(II)天青蛋白是 NP 氧化溶解的催化剂。与 NP 氧化电位一致,与 10nm NPs(>50%)反应时记录到最大浓度的 Ag(I)天青蛋白物种。在与所有尺寸的 NPs 进行厌氧反应以及与较大尺寸的 NPs(>20nm)进行有氧反应时,也观察到脱辅基蛋白,其中 NP 氧化速度减慢。与 NPs 反应时 Cu(II)天青蛋白的取代明显大于单独与 Ag(I)(aq)反应时的取代。无论 NP 尺寸如何,透析实验表明,天青蛋白与由于 NP 氧化溶解形成的 Ag(I)(aq)物种之间的反应性很小,表明 Cu 从天青蛋白中的取代发生在 NP 表面。提出了天青蛋白-银 NP 相互作用的机制。结果表明,NP 相互作用不仅影响蛋白结构和功能,还影响 NP 的反应性,这对靶向、摄取和细胞毒性具有重要意义。

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