Habuchi Satoshi, Ando Ryoko, Dedecker Peter, Verheijen Wendy, Mizuno Hideaki, Miyawaki Atsushi, Hofkens Johan
Department of Chemistry, Katholieke Universiteit Leuven, Celestijnenlaan 200F, 3001 Heverlee, Belgium.
Proc Natl Acad Sci U S A. 2005 Jul 5;102(27):9511-6. doi: 10.1073/pnas.0500489102. Epub 2005 Jun 22.
Reversible photoswitching of individual molecules has been demonstrated for a number of mutants of the green fluorescent protein (GFP). To date, however, a limited number of switching events with slow response to light have been achieved at the single-molecule level. Here, we report reversible photoswitching characteristics observed in individual molecules of Dronpa, a mutant of a GFP-like fluorescent protein that was cloned from a coral Pectiniidae. Ensemble spectroscopy shows that intense irradiation at 488 nm changes Dronpa to a dim protonated form, but even weak irradiation at 405 nm restores it to the bright deprotonated form. Although Dronpa exists in an acid-base equilibrium, only the photoinduced protonated form shows the switching behavior. At the single-molecule level, 488- and 405-nm lights can be used to drive the molecule back and forth between the bright and dim states. Such reversible photoswitching could be repeated >100 times. The response speed to irradiation depends almost linearly on the irradiation power, with the response time being in the order of milliseconds. The perfect reversibility of the Dronpa photoswitching allows us to propose a detailed model, which quantitatively describes interconversion among the various states. The fast response of Dronpa to light holds great promise for following fast diffusion or transport of signaling molecules in live cells.
绿色荧光蛋白(GFP)的多个突变体已被证明存在单个分子的可逆光开关现象。然而,迄今为止,在单分子水平上仅实现了有限数量的光开关事件,且对光的响应较慢。在此,我们报告了在Dronpa单个分子中观察到的可逆光开关特性,Dronpa是一种从珊瑚海菊蛤科克隆的类GFP荧光蛋白的突变体。总体光谱表明,488nm的强辐照会使Dronpa转变为暗的质子化形式,但即使是405nm的弱辐照也会将其恢复为亮的去质子化形式。尽管Dronpa存在酸碱平衡,但只有光诱导的质子化形式表现出开关行为。在单分子水平上,488nm和405nm的光可用于驱使分子在亮态和暗态之间来回转换。这种可逆光开关可重复>100次。对辐照的响应速度几乎与辐照功率呈线性关系,响应时间约为毫秒级。Dronpa光开关的完美可逆性使我们能够提出一个详细模型,该模型定量描述了各种状态之间的相互转换。Dronpa对光的快速响应对于追踪活细胞中信号分子的快速扩散或运输具有巨大潜力。