Division of Immunobiology and Center for Systems Immunology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio.
Division of Developmental Biology, Perinatal Institute Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio.
Cytometry A. 2018 May;93(5):556-562. doi: 10.1002/cyto.a.23360. Epub 2018 Mar 13.
The advent of facile genome engineering technologies has made the generation of knock-in gene-expression or fusion-protein reporters more tractable. Fluorescent protein labeling of specific genes combined with surface marker profiling can more specifically identify a cell population. However, the question of which fluorescent proteins to utilize to generate reporter constructs is made difficult by the number of candidate proteins and the lack of updated experimental data on newer fluorescent proteins. Compounding this problem, most fluorescent proteins are designed and tested for use in microscopy. To address this, we cloned and characterized the detection sensitivity, spectral overlap, and spillover spreading of 13 monomeric fluorescent proteins to determine utility in multicolor panels. We identified a group of five fluorescent proteins with high signal to noise ratio, minimal spectral overlap, and low spillover spreading making them compatible for multicolor experiments. Specifically, generating reporters with combinations of three of these proteins would allow efficient measurements even at low-level expression. Because the proteins are monomeric, they could function either as gene-expression or as fusion-protein reporters. Additionally, this approach can be generalized as new fluorescent proteins are developed to determine their usefulness in multicolor panels. © 2018 International Society for Advancement of Cytometry.
易于使用的基因组工程技术的出现使得基因表达或融合蛋白报告基因的敲入变得更加可行。特定基因的荧光蛋白标记与表面标志物分析相结合,可以更准确地鉴定细胞群体。然而,由于候选蛋白的数量众多,以及缺乏关于新型荧光蛋白的最新实验数据,因此选择哪种荧光蛋白来生成报告基因构建体成为一个难题。更糟糕的是,大多数荧光蛋白都是为显微镜使用而设计和测试的。为了解决这个问题,我们克隆并分析了 13 种单体荧光蛋白的检测灵敏度、光谱重叠和溢出扩散,以确定它们在多色面板中的实用性。我们确定了一组具有高信噪比、最小光谱重叠和低溢出扩散的五种荧光蛋白,它们适用于多色实验。具体来说,使用这三种蛋白质中的任意三种进行报告基因的组合,即使在低表达水平下也能进行有效的测量。由于这些蛋白是单体,它们可以作为基因表达或融合蛋白报告基因。此外,随着新的荧光蛋白的开发,这种方法可以推广应用于确定它们在多色面板中的实用性。©2018 国际细胞分析学会。