A toolkit for DNA assembly, genome engineering and multicolor imaging for C. elegans

Bryan Sands, Nikolay Burnaevskiy, Soo R. Yun, Matthew M. Crane, Matt Kaeberlein, Alexander Mendenhall
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引用次数: 16

Abstract

One way scientists can observe and quantify processes in living cells is to engineer the genomes of animals to express multiple fluorescent proteins and then quantify those signals by various imaging techniques. To allow our laboratories to confidently quantify mixed (overlapping) fluorescent signals for our studies in the basic biology of gene expression and aging in C. elegans, we developed a comprehensive toolkit for C. elegans that we describe here. The Toolkit consists of two components: 1) a series of vectors for DNA assembly by homologous recombination (HR) in the yeast, Saccharomyces cerevisiae, and 2) a set of ten worm strains that each express a single, spectrally distinct fluorescent protein, under control of either the daf-21 or eft-3 promoters. We measured the in vivo emission spectrum (3 nm resolution) for each fluorescent protein in live C. elegans and showed that we can use those pure spectra to unmix overlapping fluorescent signals in spectral images of intestine cells. Seven of ten fluorescent proteins had signals that appeared to be localized in vesicular/elliptical foci or tubules in the hypodermis. We conducted fluorescence recovery after photobleaching (FRAP) experiments and showed that these structures have recovery kinetics more consistent with freely diffusing protein than aggregates (Q35:YFP). This toolkit will allow researchers to quickly and efficiently generate mutlti-fragment DNA assemblies for genome editing in C. elegans. Additionally, the transgenic C. elegans and the measured emission spectra should serve as a resource for scientists seeking to perform, or test their ability to perform, multidimensional (multi-color) imaging experiments.

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一个用于秀丽隐杆线虫DNA组装、基因组工程和多色成像的工具包
科学家们观察和量化活细胞过程的一种方法是设计动物基因组来表达多种荧光蛋白,然后通过各种成像技术量化这些信号。为了使我们的实验室能够自信地量化混合(重叠)荧光信号,以用于我们在秀丽隐杆线虫基因表达和衰老的基础生物学研究,我们开发了一个全面的秀丽隐杆线虫工具包,我们在这里描述。该工具包由两部分组成:1)在酵母、酿酒酵母(Saccharomyces cerevisiae)中通过同源重组(HR)进行DNA组装的一系列载体,2)在daf-21或eft-3启动子的控制下,每一种表达一种光谱上不同的荧光蛋白的10种蠕虫菌株。我们测量了线虫活体中每种荧光蛋白的体内发射光谱(3nm分辨率),并表明我们可以使用这些纯光谱来解混肠道细胞光谱图像中的重叠荧光信号。十个荧光蛋白中有七个的信号似乎定位于皮下的水泡/椭圆灶或小管。我们进行了光漂白后荧光恢复(FRAP)实验,发现这些结构的恢复动力学更符合自由扩散的蛋白质而不是聚集体(Q35:YFP)。该工具包将使研究人员能够快速有效地生成用于秀丽隐杆线虫基因组编辑的多片段DNA组装。此外,转基因秀丽隐杆线虫和测量的发射光谱应该作为科学家寻求执行或测试他们执行多维(多色)成像实验的能力的资源。
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来源期刊
Translational Medicine of Aging
Translational Medicine of Aging Medicine-Geriatrics and Gerontology
CiteScore
5.30
自引率
0.00%
发文量
2
审稿时长
103 days
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