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首页> 外文期刊>Chemistry: A European journal >Confinement effect of organic nanotubes toward green fluorescent protein (GFP) depending on the inner diameter size
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Confinement effect of organic nanotubes toward green fluorescent protein (GFP) depending on the inner diameter size

机译:取决于内径尺寸,有机纳米管对绿色荧光蛋白(GFP)的限制作用

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摘要

Transportation, release behavior, and stability of a green fluorescent protein (GFP, 3x4nm) in self-assembled organic nanotubes with three different inner diameters (10, 20, and 80 nm) have been studied in terms of novel nanocontainers. Selective immobilization of a fluorescent acceptor dye on the inner surface enabled us to not only visualize the transportation of GFP in the nanochannels but to also detect release of the encapsulated GFP to the bulk solution in real time, based on fluorescence resonance energy transfer (FRET). Obtained diffusion constants and release rates of GFP markedly decreased as the inner diameter of the nanotubes was decreased. An endo-sensing procedure also clarified the dependence of the thermal and chemical stabilities of the GFP on the inner diameters. The GFP encapsulated in the 10 nm nanochannel showed strong resistance to heat and to a denaturant. On the other hand, the 20 nm nanochannel accelerated the denaturation of the encapsulated GFP compared with the rate of denaturation of the free GFP in bulk and the encapsulated GFP in the 80 nm nanochannels. The confinement effect based on rational fitting of the inner diameter to the size of GFP allowed us to store it stably and without denaturation under high temperatures and high denaturant concentrations.
机译:根据新型纳米容器,已经研究了具有三种不同内径(10、20和80 nm)的自组装有机纳米管中绿色荧光蛋白(GFP,3x4nm)的运输,释放行为和稳定性。选择性地将荧光受体染料固定在内表面上,使我们不仅可以可视化GFP在纳米通道中的转运,还可以基于荧光共振能量转移(FRET)实时检测封装的GFP释放到本体溶液中。 。随着纳米管的内径减小,获得的扩散常数和GFP的释放速率显着降低。内在传感程序还阐明了GFP的热稳定性和化学稳定性对内径的依赖性。封装在10 nm纳米通道中的GFP对热和变性剂具有很强的抵抗力。另一方面,与散装的游离GFP和80nm的纳米通道中的GFP的变性速度相比,20nm的纳米通道加速了GFP的变性。基于内径与GFP大小的合理拟合的限制效应使我们能够在高温和高变性剂浓度下稳定且无变性地储存它。

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