Müller H-Arno J
Division of Cell and Developmental Biology, College of Life Sciences, University of Dundee, Scotland UK.
Methods Mol Biol. 2008;420:207-18. doi: 10.1007/978-1-59745-583-1_12.
The molecular mechanisms controlling Drosophila embryogenesis are among the best-studied examples in animal development. Whereas the formation of developmental pattern in embryos was intensely examined in the past three decades, the cell biological basis of morphogenesis is now entering the center stage of the research on fly embryos. A fundamentally important procedure has always been to determine the subcellular localization of proteins in embryos by immunolabeling. The challenge of the commonly used whole mount-staining procedures is to balance a good structural preservation during fixation and allow at the same time the penetration of the antibodies through the tissue. Different procedures have been developed that allow the preservation of distinct compartments of the cell and thus, optimize for the specific subcellular localization of proteins. This chapter provides a general immunolabeling protocol with variations suitable for a broad panel of antigens.
控制果蝇胚胎发育的分子机制是动物发育领域中研究最为深入的实例之一。在过去三十年里,胚胎发育模式的形成受到了深入研究,而形态发生的细胞生物学基础如今正步入果蝇胚胎研究的核心阶段。一个至关重要的基本步骤一直是通过免疫标记来确定胚胎中蛋白质的亚细胞定位。常用的整体染色方法面临的挑战在于,要在固定过程中保持良好的结构保存,同时又要让抗体穿透组织。人们已经开发出不同的方法,能够保存细胞的不同区室,从而针对蛋白质的特定亚细胞定位进行优化。本章提供了一种通用的免疫标记方案,并给出了适用于多种抗原的变体。