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Fluorescence imaging using a fluorescent protein with a large Stokes shift.

机译:使用具有较大斯托克斯位移的荧光蛋白进行荧光成像。

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摘要

Keima is a far-red fluorescent protein endowed with a large Stokes shift. It absorbs light maximally at around 440nm and emits maximally at around 620nm. While the original Keima is obligately tetrameric (tKeima), the dimeric and monomeric versions (mKeima and dKeima, respectively) have been generated. More recently, a tandem dimer of Keima (tdKeima) has been developed as the brightest version. Here we describe examples, which show the usefulness of Keima for dual-color fluorescence imaging technologies, such as fluorescence cross-correlation spectroscopy (FCCS) and two-photon laser scanning microscopy (TPLSM). Keima can be used in conjunction with existing fluorescent proteins in which the Stokes shift is much smaller, with the idea that while two fluorescent proteins are excited by a single laser each will fluoresce a different color.
机译:凯玛(Keima)是一种远红色荧光蛋白,具有较大的斯托克斯位移。它最大吸收440nm左右的光,最大吸收620nm左右的光。虽然原始的Keima专为四聚体(tKeima),但已经生成了二聚体和单体形式(分别为mKeima和dKeima)。最近,已开发出串联的Keima二聚体(tdKeima)作为最亮的版本。在这里,我们描述了一些示例,这些示例显示了Keima对于双色荧光成像技术的有用性,例如荧光互相关光谱(FCCS)和双光子激光扫描显微镜(TPLSM)。 Keima可以与现有的荧光蛋白结合使用,在这种荧光蛋白中,斯托克斯位移要小得多,这种想法是,虽然两个荧光蛋白被单个激光激发,但每个荧光蛋白都会发出不同的颜色。

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