Ems Star, Mohler William A
Department of Genetics and Developmental Biology, University of Connecticut Health Center, Farmington, CT, USA.
Methods Mol Biol. 2008;475:223-44. doi: 10.1007/978-1-59745-250-2_13.
Cell fusion is a very dynamic process in which the entire membrane and cellular contents of two or more cells merge into one. Strategies developed to understand the component processes that make up a full fusion event require imaging to be performed over a range of space and time scales. These strategies must cover detection of nanometer-sized pores, monitoring cytoplasmic diffusion and the dynamic localization of proteins that induce fusion competence, and three-dimensional reconstruction of multinucleated cells. Caenorhabditis elegans' small size, predictable development, and transparent body make this organism optimal for microscopic investigations. In this chapter, focus is placed on light microscopy techniques that have been used thus far to study developmental fusion events in C. elegans and the insights that have been gained from them. There is also a general overview of the developmental timing of the cell fusion events. Additionally, several protocols are described for preparing both fixed and live specimens at various developmental stages of C. elegans for examination via optical microscopy.
细胞融合是一个非常动态的过程,在此过程中,两个或更多细胞的整个细胞膜和细胞内容物融合为一个整体。为了解构成完整融合事件的组成过程而开发的策略需要在一系列空间和时间尺度上进行成像。这些策略必须涵盖纳米级孔隙的检测、细胞质扩散的监测以及诱导融合能力的蛋白质的动态定位,以及多核细胞的三维重建。秀丽隐杆线虫体型小、发育可预测且身体透明,使其成为微观研究的理想生物体。在本章中,重点关注迄今为止用于研究秀丽隐杆线虫发育融合事件的光学显微镜技术以及从中获得的见解。此外,还对细胞融合事件的发育时间进行了概述。此外,还描述了几个方案,用于制备处于秀丽隐杆线虫不同发育阶段的固定和活标本,以便通过光学显微镜进行检查。