Wong Queenie Wing-Lei, Vaz Candida, Lee Qian Yi, Zhao Tian Yun, Luo Raymond, Archer Stuart K, Preiss Thomas, Tanavde Vivek, Vardy Leah A
Institute of Medical Biology, A*STAR, 8A Biomedical Grove, Immunos, 138648, Singapore, Singapore.
Bioinformatics Institute, A*STAR, 30 Biopolis Street, 138671, Singapore, Singapore.
PLoS One. 2016 Jan 22;11(1):e0143235. doi: 10.1371/journal.pone.0143235. eCollection 2016.
The presence of multiple variants for many mRNAs is a major contributor to protein diversity. The processing of these variants is tightly controlled in a cell-type specific manner and has a significant impact on gene expression control. Here we investigate the differential translation rates of individual mRNA variants in embryonic stem cells (ESCs) and in ESC derived Neural Precursor Cells (NPCs) using polysome profiling coupled to RNA sequencing. We show that there are a significant number of detectable mRNA variants in ESCs and NPCs and that many of them show variant specific translation rates. This is correlated with differences in the UTRs of the variants with the 5'UTR playing a predominant role. We suggest that mRNA variants that contain alternate UTRs are under different post-transcriptional controls. This is likely due to the presence or absence of miRNA and protein binding sites that regulate translation rate. This highlights the importance of addressing translation rate when using mRNA levels as a read out of protein abundance. Additional analysis shows that many annotated non-coding mRNAs are present on the polysome fractions in ESCs and NPCs. We believe that the use of polysome fractionation coupled to RNA sequencing is a useful method for analysis of the translation state of many different RNAs in the cell.
许多mRNA存在多种变体是蛋白质多样性的主要贡献因素。这些变体的加工过程以细胞类型特异性方式受到严格控制,并对基因表达调控产生重大影响。在这里,我们使用多核糖体谱分析结合RNA测序,研究胚胎干细胞(ESC)和ESC衍生的神经前体细胞(NPC)中单个mRNA变体的差异翻译速率。我们表明,ESC和NPC中存在大量可检测到的mRNA变体,其中许多显示出变体特异性翻译速率。这与变体UTR的差异相关,5'UTR起主要作用。我们认为,含有替代UTR的mRNA变体受到不同的转录后控制。这可能是由于调节翻译速率的miRNA和蛋白质结合位点的存在或缺失。这突出了在将mRNA水平用作蛋白质丰度读数时考虑翻译速率的重要性。进一步分析表明,ESC和NPC中的多核糖体组分上存在许多注释的非编码mRNA。我们认为多核糖体分级分离结合RNA测序是分析细胞中许多不同RNA翻译状态的有用方法。