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Retrospective on the development of aequorin and aequorin-based imaging to visualize changes in intracellular free [Ca2+]

机译:回顾水母发光蛋白和基于水母发光蛋白的成像的发展,以可视化细胞内游离[Ca2 +]的变化

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In this review, we take a retrospective look at the discovery and utilization of the Ca2+-sensitive bioluminescent protein complex, aequorin. We do consider the contribution it has made to our understanding of the natural phenomenon of bioluminescence, but it is in the application of extracted and purified aequorin as a reporter of Ca2+ dynamics in living cells, which is arguably its major contribution to biological and biomedical science. Following its extraction, purification, and subsequent availability in the mid-1960s, aequorin became the intracellular reporter of choice until it was replaced in the late 1970s by easier-to-use fluorescence-based reporters. From the mid-1980s onwards, however, aequorin-based Ca2+ imaging underwent a renaissance following the cloning of the aequorin gene and the emergence of routine techniques to target and express it exogenously in plant and animal systems. The development of aequorin as a tool continues as spectral varieties are being developed that allow simultaneous imaging of Ca2+ dynamics in different cellular organelles and microdomains. We predict that further developments in the use of aequorin, as well as other bioluminescent proteins, will continue, especially in the areas of regenerative medicine and whole organism imaging. Mol. Reprod. Dev. 82: 563-586, 2015. (c) 2014 Wiley Periodicals, Inc.
机译:在这篇综述中,我们回顾了对Ca2 +敏感的生物发光蛋白复合物水母发光蛋白的发现和利用。我们确实考虑了它对我们了解生物发光自然现象所做的贡献,但是它是在提取和纯化的水母发光蛋白作为活细胞中Ca2 +动力学的报告者中的应用,可以说这是其对生物和生物医学科学的主要贡献。在其提取,纯化和随后在1960年代中期上市之后,水母发光蛋白成为细胞内报道分子的选择,直到1970年代末被易于使用的基于荧光的报道基因所取代。然而,从1980年代中期开始,基于水母发光蛋白的Ca2 +成像在克隆了水母发光蛋白基因之后出现了复兴,并且出现了常规的在植物和动物系统中靶向和表达该基因的常规技术。随着光谱种类的发展,水母发光蛋白作为一种工具的发展继续发展,可以同时成像不同细胞器和微区中Ca2 +的动态。我们预测,水母发光蛋白以及其他生物发光蛋白的使用将继续发展,特别是在再生医学和全生物成像领域。大声笑责备。开发人员82:563-586,2015。(c)2014 Wiley Periodicals,Inc.

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