Andolfi L, Cannistraro S, Canters G W, Facci P, Ficca A G, Van Amsterdam I M C, Verbeet M Ph
INFM, Università della Tuscia, Viterbo, I-01100, Italy.
Arch Biochem Biophys. 2002 Mar 1;399(1):81-8. doi: 10.1006/abbi.2001.2735.
Aiming to achieve stable immobilization for a redox-active cupredoxin protein onto a gold substrate and its consequent molecular level monitoring by Scanning Tunnelling Microscopy (STM), we introduced a disulphide bridge within poplar plastocyanin, while avoiding the perturbation of its active site. We selected and modified residues Ile-21 to Cys and Glu-25 to Cys by structurally conservative mutagenesis. Optical absorption spectroscopy (UV-Vis), electron paramagnetic resonance (EPR), and resonance raman scattering (RRS) results indicate that the active site of the Ile21Cys, Glu25Cys plastocyanin (PCSS) to a large extent retains the spectroscopic properties of the wild-type protein. Furthermore, the redox midpoint potential of the couple CuII/CuI in PCSS, determined by cyclic voltammetry was found to be +348 mV close to the wild-type value. The STM images display self-assembled PCSS molecules immobilised onto gold substrate. Moreover, the full potentiostatic control of the electron transfer reaction during STM imaging, suggests that the adsorbed molecule maintains essentially its native redox properties.
为了实现氧化还原活性铜蓝蛋白在金基底上的稳定固定,并通过扫描隧道显微镜(STM)对其进行后续的分子水平监测,我们在杨树质体蓝素中引入了二硫键,同时避免对其活性位点造成干扰。我们通过结构保守诱变将Ile-21和Glu-25残基分别选定并修饰为Cys。紫外可见吸收光谱(UV-Vis)、电子顺磁共振(EPR)和共振拉曼散射(RRS)结果表明,Ile21Cys、Glu25Cys质体蓝素(PCSS)的活性位点在很大程度上保留了野生型蛋白的光谱特性。此外,通过循环伏安法测定发现,PCSS中CuII/CuI电对的氧化还原中点电位为+348 mV,接近野生型值。STM图像显示了自组装在金基底上的PCSS分子。此外,STM成像过程中对电子转移反应的完全恒电位控制表明,吸附的分子基本保持了其天然的氧化还原特性。