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Evidences For Charge Transfer-Induced Conformational Changes In Carbon Nanostructure-Protein Corona

机译:电荷转移诱导的碳纳米蛋白 - 蛋白电晕诱导的构象变化的证据

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摘要

The binding of proteins to a nanostructure often alters protein secondary and tertiary structures. However, the main physical mechanisms that elicit protein conformational changes in the presence of the nanostructure have not yet been fully established. Here we performed a comprehensive spectroscopic study to probe the interactions between bovine serum albumin (BSA) and carbon-based nanostructures of graphene and single-walled carbon nanotubes (SWNTs). Our results showed that the BSA “corona” acted as a weak acceptor to facilitate charge transfer from the carbon nanostructures. Notably, we observed that charge transfer occurred only in the case of SWNTs but not in graphene, resulting from the sharp and discrete electronic density of states of the former. Furthermore, the relaxation of external α–helices in BSA secondary structure increased concomitantly with the charge transfer. These results may help guide controlled nanostructure-biomolecular interactions and prove beneficial for developing novel drug delivery systems, biomedical devices and engineering of safe nanomaterials.
机译:蛋白质与纳米结构的结合通常会改变蛋白质的二级和三级结构。然而,在纳米结构存在下引起蛋白质构象变化的主要物理机制尚未完全建立。在这里,我们进行了全面的光谱研究,以探讨牛血清白蛋白(BSA)与石墨烯和单壁碳纳米管(SWNTs)的碳基纳米结构之间的相互作用。我们的结果表明,BSA“电晕”充当弱受体,促进电荷从碳纳米结构转移。值得注意的是,我们观察到电荷转移仅在单壁碳纳米管的情况下发生,而在石墨烯中则不发生,这是由于前者的态具有尖锐和离散的电子密度。此外,BSA二级结构中外部α螺旋的弛豫随电荷转移而增加。这些结果可能有助于指导受控的纳米结构与生物分子的相互作用,并证明对开发新型药物输送系统,生物医学设备和安全纳米材料的工程设计有益。

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