LIAN-CONICET, FLENI - Ruta 9 km 52.5, Belen de Escobar, Provincia de Buenos Aires, Argentina.
Sci Rep. 2018 May 23;8(1):8072. doi: 10.1038/s41598-018-26156-3.
MicroRNAs are small non-coding RNAs involved in post-transcriptional regulation of gene expression related to many cellular functions. We performed a small-RNAseq analysis of cardiac differentiation from pluripotent stem cells. Our analyses identified some new aspects about microRNA expression in this differentiation process. First, we described a dynamic expression profile of microRNAs where some of them are clustered according to their expression level. Second, we described the extensive network of isomiRs and ADAR modifications. Third, we identified the microRNAs families and clusters involved in the establishment of cardiac lineage and define the mirRNAome based on these groups. Finally, we were able to determine a more accurate miRNAome associated with cardiomyocytes by comparing the expressed microRNAs with other mature cells. MicroRNAs exert their effect in a complex and interconnected way, making necessary a global analysis to better understand their role. Our data expands the knowledge of microRNAs and their implications in cardiomyogenesis.
微 RNA 是参与与许多细胞功能相关的基因表达的转录后调控的小非编码 RNA。我们对多能干细胞的心脏分化进行了小 RNA-seq 分析。我们的分析确定了这个分化过程中微 RNA 表达的一些新方面。首先,我们描述了微 RNA 的动态表达谱,其中一些根据其表达水平聚类。其次,我们描述了广泛的 isomiR 和 ADAR 修饰网络。第三,我们鉴定了参与心脏谱系建立的 microRNA 家族和簇,并基于这些簇定义 mirRNAome。最后,我们通过将表达的 microRNA 与其他成熟细胞进行比较,确定了与心肌细胞相关的更准确的 miRNAome。微 RNA 以复杂和相互关联的方式发挥作用,因此需要进行全面分析以更好地理解它们的作用。我们的数据扩展了 microRNA 的知识及其在心肌发生中的意义。