Center for Stem Cell Biology, Vanderbilt University Medical Center, Nashville, TN 37232-0494, USA.
Dis Model Mech. 2011 Jul;4(4):537-47. doi: 10.1242/dmm.006569. Epub 2011 Feb 14.
Fluorescent proteins (FPs) have great utility in identifying specific cell populations and in studying cellular dynamics in the mouse. To quantify the factors that determine both the expression and relative brightness of FPs in mouse embryonic stem cells (mESCs) and in mice, we generated eight different FP-expressing ROSA26 alleles using recombinase-mediated cassette exchange (RMCE). These alleles enabled us to analyze the effects on FP expression of a translational enhancer and different 3'-intronic and/or polyadenylation sequences, as well as the relative brightness of five different FPs, without the confounding position and copy number effects that are typically associated with randomly inserted transgenes. We found that the expression of a given FP can vary threefold or more depending on the genetic features present in the allele. The optimal FP expression cassette contained both a translational enhancer sequence in the 5'-untranslated region (UTR) and an intron-containing rabbit β-globin sequence within the 3'-UTR. The relative expressed brightness of individual FPs varied up to tenfold. Of the five different monomeric FPs tested, Citrine (YFP) was the brightest, followed by Apple, eGFP, Cerulean (CFP) and Cherry. Generation of a line of Cherry-expressing mice showed that there was a 30-fold variation of Cherry expression among different tissues and that there was a punctate expression pattern within cells of all tissues examined. This study should help investigators make better-informed design choices when expressing FPs in mESCs and mice.
荧光蛋白(FPs)在鉴定特定细胞群体和研究小鼠细胞动力学方面具有很大的用途。为了量化决定 FP 在小鼠胚胎干细胞(mESCs)和小鼠中的表达和相对亮度的因素,我们使用重组酶介导的盒交换(RMCE)生成了八个不同的 FP 表达 ROSA26 等位基因。这些等位基因使我们能够分析翻译增强子和不同 3'-内含子和/或多聚腺苷酸化序列对 FP 表达的影响,以及五种不同 FP 的相对亮度,而不会产生通常与随机插入的转基因相关的位置和拷贝数效应。我们发现,给定 FP 的表达可以根据等位基因中存在的遗传特征变化三倍或更多。最佳的 FP 表达盒包含 5'-非翻译区(UTR)中的翻译增强子序列和 3'-UTR 中的内含子包含的兔β-珠蛋白序列。单个 FP 的相对表达亮度差异可达十倍。在测试的五种不同的单体 FP 中,Citrine(YFP)最亮,其次是 Apple、eGFP、Cerulean(CFP)和 Cherry。表达 Cherry 的小鼠系的产生表明,Cherry 在不同组织中的表达存在 30 倍的差异,并且在所有检查的组织细胞中存在点状表达模式。这项研究应该有助于研究人员在 mESCs 和小鼠中表达 FP 时做出更明智的设计选择。