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Fast and Reversible Photoswitching of the Fluorescent Protein Dronpa as Evidenced by Fluorescence Correlation Spectroscopy

机译:荧光相关光谱法证明荧光蛋白Dronpa的快速和可逆光开关

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摘要

Controlling molecular properties through photoirradiation holds great promise for its potential for noninvasive and selective manipulation of matter. Photochromism has been observed for several different molecules, including green fluorescent proteins, and recently the discovery of a novel photoswitchable green fluorescent protein called Dronpa was reported. Dronpa displays reversible and highly efficient on/off photoswitching of its fluorescence emission, and reversible switching of immobilized single molecules of Dronpa with response times faster than 20 ms was demonstrated. In this Letter, we expand these observations to freely diffusing molecules by using fluorescence correlation spectroscopy with simultaneous excitation at 488 and 405 nm. By varying the intensity of irradiation at 405 nm, we demonstrate the reversible photoswitching of Dronpa under these conditions, and from the obtained autocorrelation functions we conclude that this photoswitching can occur within tens of microseconds.
机译:通过光辐照控制分子性质为其无创和选择性处理物质的潜力具有广阔的前景。已经观察到包括绿色荧光蛋白在内的几种不同分子的光致变色现象,并且最近发现了一种称为Dronpa的新型可光开关的绿色荧光蛋白的发现。 Dronpa展示了其荧光发射的可逆且高效的开/关光电开关,并证明了响应时间快于20 ms的Dronpa固定化单分子的可逆开关。在这封信中,我们通过使用在488和405 nm处同时激发的荧光相关光谱,将这些观察结果扩展为自由扩散分子。通过改变在405 nm处的照射强度,我们证明了Dronpa在这些条件下可逆的光开关,并且根据获得的自相关函数,我们得出结论,该光开关可以在数十微秒内发生。

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