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结合近红外荧光和 Brainbow 可视化多色背景下特定基因的表达。

Combining near-infrared fluorescence with Brainbow to visualize expression of specific genes within a multicolor context.

机构信息

Biology Department, Lewis and Clark College, Portland, OR 97219.

出版信息

Mol Biol Cell. 2019 Feb 15;30(4):491-505. doi: 10.1091/mbc.E18-06-0340. Epub 2018 Dec 26.

Abstract

Fluorescent proteins are a powerful experimental tool, allowing the visualization of gene expression and cellular behaviors in a variety of systems. Multicolor combinations of fluorescent proteins, such as Brainbow, have expanded the range of possible research questions and are useful for distinguishing and tracking cells. The addition of a separately driven color, however, would allow researchers to report expression of a manipulated gene within the multicolor context to investigate mechanistic effects. A far-red or near-infrared protein could be particularly suitable in this context, as these can be distinguished spectrally from Brainbow. We investigated five far-red/near-infrared proteins in zebrafish: TagRFP657, mCardinal, miRFP670, iRFP670, and mIFP. Our results show that both mCardinal and iRFP670 are useful fluorescent proteins for zebrafish expression. We also introduce a new transgenic zebrafish line that expresses Brainbow under the control of the neuroD promoter. We demonstrate that mCardinal can be used to track the expression of a manipulated bone morphogenetic protein receptor within the Brainbow context. The overlay of near-infrared fluorescence onto a Brainbow background defines a clear strategy for future research questions that aim to manipulate or track the effects of specific genes within a population of cells that are delineated using multicolor approaches.

摘要

荧光蛋白是一种强大的实验工具,可用于在多种系统中可视化基因表达和细胞行为。荧光蛋白的多色组合,如 Brainbow,已经扩展了可能的研究问题的范围,并且对于区分和跟踪细胞非常有用。然而,添加一个单独驱动的颜色将允许研究人员在多色背景下报告操纵基因的表达,以研究机械效应。远红色或近红外蛋白在这种情况下可能特别合适,因为这些蛋白可以与 Brainbow 在光谱上区分开来。我们在斑马鱼中研究了五种远红色/近红外蛋白:TagRFP657、mCardinal、miRFP670、iRFP670 和 mIFP。我们的结果表明,mCardinal 和 iRFP670 都是适合斑马鱼表达的有用荧光蛋白。我们还引入了一种新的转基因斑马鱼品系,该品系在神经 D 启动子的控制下表达 Brainbow。我们证明 mCardinal 可用于在 Brainbow 背景下追踪操纵的骨形态发生蛋白受体的表达。近红外荧光与 Brainbow 背景的叠加为未来的研究问题提供了明确的策略,这些问题旨在在使用多色方法划定的细胞群体中操纵或追踪特定基因的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9119/6594444/00adccf50c33/mbc-30-491-g001.jpg

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