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首页> 外文期刊>Journal of the American Chemical Society >Reversible pH-driven conformational switching of tethered superoxide dismutase with gold nanoparticle enhanced surface plasmon resonance spectroscopy
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Reversible pH-driven conformational switching of tethered superoxide dismutase with gold nanoparticle enhanced surface plasmon resonance spectroscopy

机译:束缚超氧化物歧化酶的可逆pH驱动构象转换与金纳米粒子增强的表面等离子体共振光谱

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摘要

A new class of surface-immobilized protein nanomachines can be reversibly actuated by cycling the solution pH between 2.5 and 12.3, which induces a conformational change, thereby modulating the thickness of superoxide dismutase (SOD1) tethered to the Au thin film. By placing Au nanoparticles (AuNP) atop the immobilized SOD1 by means of a gold-thiol assembly, the nanoscale motion of SOD1 at the interface produces mechanical work to lift and then lower the AuNP from the Au substrate by a distance of ca. 3 nm and transduces this motion into an easily measurable reflectivity change in the surface plasmon resonance (SPR) spectrum. As-made supported conjugate consisting of SOD1 and AuNP is quite robust and stable, and its operation in response to pH variations, which mirrors the conformational changes of responsive SOD1 at the interface, is found to be highly reversible and reproducible. This is the first demonstration of the development of novel solid-state sensors and/or switching devices based on substrate-bound protein conformational changes and AuNP enhanced SPR spectroscopy.
机译:可以通过在2.5和12.3之间循环溶液的pH值来可逆地激活一类新型的表面固定蛋白纳米机械,这引起构象变化,从而调节与Au薄膜相连的超氧化物歧化酶(SOD1)的厚度。通过金-硫醇组件将Au纳米颗粒(AuNP)放置在固定的SOD1之上,界面上SOD1的纳米级运动产生了机械功,以将AuNP从Au基材上提起然后降低约200毫米的距离。 3 nm,并将这种运动转换为表面等离振子共振(SPR)光谱中易于测量的反射率变化。由SOD1和AuNP组成的制成的负载型共轭物非常坚固且稳定,并且发现其响应pH值变化的操作具有高度可逆性和可复制性,该操作反映了界面上响应型SOD1的构象变化。这是基于底物结合的蛋白质构象变化和AuNP增强SPR光谱学开发新型固态传感器和/或开关设备的首次演示。

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