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Electrochemical Field-Effect Transistor Utilization to Study the Coupling Success Rate of Photosynthetic Protein Complexes to Cytochrome c

机译:利用电化学场效应晶体管研究光合蛋白复合物与细胞色素c的偶联成功率

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摘要

Due to the high internal quantum efficiency, reaction center (RC) proteins from photosynthetic organisms have been studied in various bio-photoelectrochemical devices for solar energy harvesting. In vivo, RC and cytochrome c (cyt c; a component of the biological electron transport chain) can form a cocomplex via interprotein docking. This mechanism can be used in vitro for efficient electron transfer from an electrode to the RC in a bio-photoelectrochemical device. Hence, the success rate in coupling RCs to cyt c is of great importance for practical applications in the future. In this work, we use an electrochemical transistor to study the binding of the RC to cytochrome. The shift in the transistor threshold voltage was measured in the dark and under illumination to estimate the density of cytochrome and coupled RCs on the gate of the transistor. The results show that ~33% of the cyt cs on the transistor gate were able to effectively couple with RCs. Due to the high sensitivity of the transistor, the approach can be used to make photosensors for detecting low light intensities.
机译:由于高的内部量子效率,已经在各种用于收集太阳能的生物光电化学装置中研究了来自光合生物的反应中心(RC)蛋白。在体内,RC和细胞色素c(cyt c;生物电子传输链的组成部分)可以通过蛋白对接形成复合物。该机制可在体外用于生物光电化学装置中从电极到RC的有效电子转移。因此,将RCs耦合到cyt c的成功率对于将来的实际应用非常重要。在这项工作中,我们使用电化学晶体管来研究RC与细胞色素的结合。在黑暗和光照下测量晶体管阈值电压的偏移,以估算细胞色素和晶体管栅极上耦合的RC的密度。结果表明,晶体管栅极上约33%的cyt cs能够有效地与RC耦合。由于晶体管的高灵敏度,该方法可用于制造用于检测低光强度的光电传感器。

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