Mavrakis Manos, Rikhy Richa, Lilly Mary, Lippincott-Schwartz Jennifer
Institute of Developmental Biology of Marseille-Luminy, UMR6216 CNRS-Université de la Méditerranée, Marseille, France.
Curr Protoc Cell Biol. 2008 Jun;Chapter 4:Unit 4.18. doi: 10.1002/0471143030.cb0418s39.
This unit describes fluorescence-based techniques for noninvasive imaging of development in living Drosophila embryos, discussing considerations for fluorescent imaging within living embryos and providing protocols for generation of flies expressing fluorescently tagged proteins and for preparation of embryos for fluorescent imaging. The unit details time-lapse confocal imaging of live embryos and discusses optimizing image acquisition and performing three-dimensional imaging. Finally, the unit provides a variety of specific methods for optical highlighting of specific subsets of fluorescently tagged proteins and organelles in the embryo, including fluorescence recovery after photobleaching (FRAP), fluorescence loss in photobleaching (FLIP), and photoactivation techniques, permitting analysis of specific movements of fluorescently tagged proteins within cells. These protocols, together with the relative ease of generating transgenic animals and the ability to express tagged proteins in specific tissues or at specific developmental times, provide powerful means for examining in vivo behavior of any tagged protein in embryos in myriad mutant backgrounds.
本单元介绍了用于对活体果蝇胚胎发育进行无创成像的基于荧光的技术,讨论了活体胚胎内荧光成像的注意事项,并提供了生成表达荧光标记蛋白的果蝇以及制备用于荧光成像的胚胎的方案。本单元详细介绍了活胚胎的延时共聚焦成像,并讨论了优化图像采集和进行三维成像的方法。最后,本单元提供了多种用于光学突出胚胎中荧光标记蛋白和细胞器特定子集的具体方法,包括光漂白后荧光恢复(FRAP)、光漂白荧光损失(FLIP)和光激活技术,从而能够分析荧光标记蛋白在细胞内的特定运动。这些方案,再加上生成转基因动物相对容易以及能够在特定组织或特定发育时期表达标记蛋白的能力,为在无数突变背景下检查胚胎中任何标记蛋白的体内行为提供了强大手段。