Sladitschek Hanna L, Neveu Pierre A
Cell Biology and Biophysics Unit, European Molecular Biology Laboratory, Heidelberg, Baden-Württemberg, Germany.
PLoS One. 2016 May 6;11(5):e0155177. doi: 10.1371/journal.pone.0155177. eCollection 2016.
MicroRNAs have emerged as important markers and regulators of cell identity. Precise measurements of cellular miRNA levels rely traditionally on RNA extraction and thus do not allow to follow miRNA expression dynamics at the level of single cells. Non-invasive miRNA sensors present an ideal solution but they critically depend on the performance of suitable ubiquitous promoters that reliably drive expression both in pluripotent and differentiated cell types. Here we describe the engineering of bidirectional promoters that drive the expression of precise ratiometric fluorescent miRNA sensors in single mouse embryonic stem cells (mESCs) and their differentiated derivatives. These promoters are based on combinations of the widely used CAG, EF1α and PGK promoters as well as the CMV and PGK enhancers. miR-142-3p, which is known to be bimodally expressed in mESCs, served as a model miRNA to gauge the precision of the sensors. The performance of the resulting miRNA sensors was assessed by flow cytometry in single stable transgenic mESCs undergoing self-renewal or differentiation. EF1α promoters arranged back-to-back failed to drive the robustly correlated expression of two transgenes. Back-to-back PGK promoters were shut down during mESC differentiation. However, we found that a back-to-back arrangement of CAG promoters with four CMV enhancers provided both robust expression in mESCs undergoing differentiation and the best signal-to-noise for measurement of miRNA activity in single cells among all the sensors we tested. Such a bidirectional promoter is therefore particularly well suited to study the dynamics of miRNA expression during cell fate transitions at the single cell level.
微小RNA已成为细胞身份的重要标志物和调节因子。传统上,细胞微小RNA水平的精确测量依赖于RNA提取,因此无法在单细胞水平追踪微小RNA的表达动态。非侵入性微小RNA传感器提供了一个理想的解决方案,但它们严重依赖于合适的遍在启动子的性能,这些启动子能在多能和分化细胞类型中可靠地驱动表达。在这里,我们描述了双向启动子的构建,该启动子可在单个小鼠胚胎干细胞(mESC)及其分化衍生物中驱动精确的比率荧光微小RNA传感器的表达。这些启动子基于广泛使用的CAG、EF1α和PGK启动子以及CMV和PGK增强子的组合。已知在mESC中呈双峰表达的miR-142-3p用作模型微小RNA来评估传感器的精度。通过流式细胞术在经历自我更新或分化的单个稳定转基因mESC中评估所得微小RNA传感器的性能。背靠背排列的EF1α启动子无法驱动两个转基因的强相关表达。背靠背的PGK启动子在mESC分化过程中被关闭。然而,我们发现带有四个CMV增强子的背靠背CAG启动子在经历分化的mESC中提供了强大的表达,并且在我们测试的所有传感器中,在单细胞中测量微小RNA活性时具有最佳的信噪比。因此,这样的双向启动子特别适合在单细胞水平研究细胞命运转变过程中微小RNA表达的动态变化。