Vorvis Christina, Markus Steven M, Lee Wei-Lih
Biology Department, University of Massachusetts at Amherst, 221 Morrill South, 611 North Pleasant Street, Amherst, MA 01003, USA.
Yeast. 2008 Sep;25(9):651-9. doi: 10.1002/yea.1611.
Yeast cell biologists use a variety of fluorescent protein tags for determining protein localization and for measuring protein dynamics using fluorescence recovery after photobleaching (FRAP). Although many modern fluorescent proteins, such as those with photoactivatable and photoconvertible characteristics, have been developed, none has been exploited for studies in budding yeast. We describe here the construction of yeast-tagging vectors containing photoactivatable green fluorescent protein (PA-GFP) for analysis of protein behaviour. We tagged two yeast proteins, Erg6p and Num1p, with PA-GFP and demonstrated specific photoactivation of the fusion proteins in live cells. Fluorescence intensity measurements showed that a short 5 s exposure to 413 nm light is sufficient to produce the maximum level of activated GFP fluorescence. Local photoactivation of cortical Num1p-PA-GFP showed movement of the marked proteins, providing new insights into the behaviour of Num1p at the cell cortex. Since photoactivation can be achieved using standard mercury arc illumination, the PA-GFP tag represents a convenient and economical way to determine protein dynamics in the cell. Thus, the tagging modules should facilitate protein-tracking studies in a wide variety of cell biological processes in yeast.
酵母细胞生物学家使用多种荧光蛋白标签来确定蛋白质的定位,并通过光漂白后荧光恢复(FRAP)技术来测量蛋白质动力学。尽管已经开发出许多现代荧光蛋白,如具有光激活和光转换特性的荧光蛋白,但尚未有用于芽殖酵母研究的此类蛋白。我们在此描述了构建含有光激活绿色荧光蛋白(PA-GFP)的酵母标签载体,用于分析蛋白质行为。我们用PA-GFP标记了两种酵母蛋白,即Erg6p和Num1p,并在活细胞中证明了融合蛋白的特异性光激活。荧光强度测量表明,短时间(5秒)暴露于413nm光下足以产生最大水平的激活GFP荧光。皮层Num1p-PA-GFP的局部光激活显示了标记蛋白的移动,为Num1p在细胞皮层的行为提供了新的见解。由于使用标准汞弧照明即可实现光激活,PA-GFP标签是一种确定细胞内蛋白质动力学的便捷且经济的方法。因此,这些标签模块应有助于在酵母的多种细胞生物学过程中进行蛋白质追踪研究。