BioEmergences Unit (CNRS, USR3695), Université Paris-Saclay, Gif-sur-Yvette, France.
Centro Regional de Investigaciones Biomédicas (CRIB) and Facultad de Medicina de Albacete, Universidad de Castilla-La Mancha, Albacete, Spain.
Photochem Photobiol. 2017 Mar;93(2):448-465. doi: 10.1111/php.12682. Epub 2017 Jan 25.
Calcium-activated photoproteins, such as aequorin, have been used as luminescent Ca indicators since 1967. After the cloning of aequorin in 1985, microinjection was substituted by its heterologous expression, which opened the way for a widespread use. Molecular fusion of green fluorescent protein (GFP) to aequorin recapitulated the nonradiative energy transfer process that occurs in the jellyfish Aequorea victoria, from which these two proteins were obtained, resulting in an increase of light emission and a shift to longer wavelength. The abundance and location of the chimera are seen by fluorescence, whereas its luminescence reports Ca levels. GFP-aequorin is broadly used in an increasing number of studies, from organelles and cells to intact organisms. By fusing other fluorescent proteins to aequorin, the available luminescence color palette has been expanded for multiplexing assays and for in vivo measurements. In this report, we will attempt to review the various photoproteins available, their reported fusions with fluorescent proteins and their biological applications to image Ca dynamics in organelles, cells, tissue explants and in live organisms.
钙激活光蛋白,如发光蛋白,自 1967 年以来一直被用作发光 Ca 指示剂。1985 年发光蛋白被克隆后,其异源表达取代了微注射,这为广泛应用开辟了道路。绿色荧光蛋白 (GFP) 与发光蛋白的分子融合重现了水母 Aequorea victoria 中发生的非辐射能量转移过程,这两种蛋白就是从这里获得的,从而增加了光发射并转移到更长的波长。荧光可观察到嵌合体的丰度和位置,而其发光则报告 Ca 水平。GFP-发光蛋白广泛应用于越来越多的研究,从细胞器和细胞到完整的生物体。通过将其他荧光蛋白与发光蛋白融合,可以扩展可用的发光颜色范围,用于多重分析和体内测量。在本报告中,我们将尝试回顾各种可用的光蛋白、它们与荧光蛋白的报道融合及其在细胞器、细胞、组织外植体和活体生物中成像 Ca 动力学的生物学应用。