Department of Chemistry, University of California , Riverside, California 92521, United States.
Anal Chem. 2017 Nov 21;89(22):12160-12167. doi: 10.1021/acs.analchem.7b02810. Epub 2017 Nov 8.
Protein adsorption alters the "biological identity" of nanoparticles (NPs) and could affect how biosystems respond to invading NPs. Study of protein-NP interaction can help understand how the physicochemical properties of NPs impact the interaction and thus potentially guide the design of safer and more effective NPs for biomedical or other applications. Binding affinity between proteins and NPs and the occurrence of protein conformational change upon binding to NPs are two important aspects to be learned, but few methods are currently available to assess both simultaneously in a simple way. Herein, we demonstrated that the fluorescamine labeling method developed by our group not only could reveal protein conformational change upon adsorption to NPs, owing to its capability to label the primary amines exposed on protein surface, but also could be applied to measure the binding affinity. By screening the interaction between a large number of proteins and four types of NPs, the present study also revealed that protein adsorption onto NPs could be strongly affected by structure flexibility. The proteins with high structure flexibility experienced high degrees of conformation change when binding to the polystyrene NPs, which could potentially influence protein function. Overall, we demonstrate that our assay is a quick, simple, and high-throughput tool to reveal potential impacts on protein activity and evaluate the strength of protein-NP binding.
蛋白质吸附改变了纳米粒子(NPs)的“生物学特性”,并可能影响生物系统对入侵 NPs 的反应。研究蛋白质-NP 相互作用有助于了解 NPs 的物理化学性质如何影响相互作用,从而可能指导设计更安全、更有效的 NPs 用于生物医学或其他应用。蛋白质与 NPs 的结合亲和力以及蛋白质在与 NPs 结合时构象的变化是需要了解的两个重要方面,但目前很少有方法可以简单地同时评估这两个方面。在这里,我们证明了我们小组开发的荧光胺标记方法不仅可以揭示吸附到 NPs 上的蛋白质构象变化,因为它能够标记暴露在蛋白质表面的伯胺,还可以用于测量结合亲和力。通过筛选大量蛋白质与四种类型的 NPs 之间的相互作用,本研究还揭示了蛋白质吸附到 NPs 上可能会受到结构灵活性的强烈影响。具有高结构灵活性的蛋白质在与聚苯乙烯 NPs 结合时经历了高度的构象变化,这可能会影响蛋白质功能。总的来说,我们证明了我们的测定方法是一种快速、简单、高通量的工具,可以揭示对蛋白质活性的潜在影响,并评估蛋白质-NP 结合的强度。