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Light-Triggered Electron Transfer between a Conjugated Polymer and Cytochrome C for Optical Modulation of Redox Signaling

机译:共轭聚合物与细胞色素C之间的光触发电子转移用于氧化还原信号的光调制。

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摘要

Protein reduction/oxidation processes trigger and finely regulate a myriad of physiological and pathological cellular functions. Many biochemical and biophysical stimuli have been recently explored to precisely and effectively modulate intracellular redox signaling, due to the considerable therapeutic potential. Here, we propose a first step toward an approach based on visible light excitation of a thiophene-based semiconducting polymer (P3HT), demonstrating the realization of a hybrid interface with the Cytochrome protein (CytC), in an extracellular environment. By means of scanning electrochemical microscopy and spectro-electrochemistry measurements, we demonstrate that, upon optical stimulation, a functional interaction between P3HT and CytC is established. Polymer optical excitation locally triggers photoelectrochemical reactions, leading to modulation of CytC redox activity, either through an intermediate step, involving reactive oxygen species formation, or via a direct photoreduction process. Both processes are triggered by light, thus allowing excellent spatiotemporal resolution, paving the way to precise modulation of protein redox signaling.
机译:蛋白质的还原/氧化过程可触发并精细调节多种生理和病理细胞功能。由于相当大的治疗潜力,最近已经探索了许多生化和生物物理刺激来精确和有效地调节细胞内氧化还原信号传导。在这里,我们提出了迈向基于噻吩基半导体聚合物(P3HT)可见光激发的方法的第一步,这表明在细胞外环境中实现了与细胞色素蛋白(CytC)的混合界面。通过扫描电化学显微镜和光谱电化学测量,我们证明,在光刺激下,P3HT和CytC之间建立了功能相互作用。聚合物光激发在局部过程中触发光电化学反应,从而导致CytC氧化还原活性的调节,这一过程可通过中间步骤(包括形成活性氧)或通过直接光还原过程进行。这两个过程都是由光触发的,因此可以实现出色的时空分辨率,从而为精确调节蛋白质氧化还原信号传导铺平了道路。

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