Mok Jung-Wan, Choi Kwang-Wook
Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 34141, Korea.
Bio Protoc. 2021 Dec 5;11(23):e4241. doi: 10.21769/BioProtoc.4241.
Regulation of microtubule stability is crucial for diverse biological processes, including cell division, morphogenesis, and signaling. Various assays for microtubule stability have been developed to identify and characterize proteins involved in controlling microtubule stability. Here, we introduce a simple assay for identifying potential microtubule regulators in the wing imaginal disc of . This assay utilizes silicon rhodamine-tubulin (SiR-Tub) as a cell-permeable fluorogenic dye for labeling microtubules. In an attempt to increase the sensitivity of the screen, we designed an assay using a sensitized microtubule condition. Wing discs are treated with SiR-Tub followed by demecolcine, a microtubule inhibitor, to partially label impaired microtubules. Under this sensitized condition, we can test whether overexpression or downregulation of a gene can enhance or suppress the weakened SiR-Tub labeling. This assay allows highly sensitive detection of microtubules in developing larval tissues. Hence, it provides a useful tool for identifying new microtubule regulators in both unfixed and fixed imaginal discs in . This strategy may also be applied to characterize microtubule regulators in tissues from other model organisms. Graphic abstract: Graphical summary of microtubule stability assay using wing disc.
微管稳定性的调控对于包括细胞分裂、形态发生和信号传导在内的多种生物学过程至关重要。已经开发了各种用于微管稳定性的检测方法,以鉴定和表征参与控制微管稳定性的蛋白质。在这里,我们介绍一种用于鉴定果蝇翅成虫盘潜在微管调节因子的简单检测方法。该检测方法利用硅罗丹明 - 微管蛋白(SiR - Tub)作为一种可穿透细胞的荧光染料来标记微管。为了提高筛选的灵敏度,我们设计了一种使用敏化微管条件的检测方法。先用SiR - Tub处理翅成虫盘,然后用微管抑制剂秋水仙碱处理,以部分标记受损微管。在这种敏化条件下,我们可以测试基因的过表达或下调是否能增强或抑制减弱的SiR - Tub标记。该检测方法能够高度灵敏地检测发育中的幼虫组织中的微管。因此,它为在未固定和固定的果蝇成虫盘中鉴定新的微管调节因子提供了一个有用的工具。这种策略也可用于表征来自其他模式生物组织中的微管调节因子。图形摘要:使用果蝇翅成虫盘进行微管稳定性检测的图形总结。