Integrated transcriptomic and regulatory network analyses identify microRNA-200c as a novel repressor of human pluripotent stem cell-derived cardiomyocyte differentiation and maturation
Cardiovascular Research

Abstract
MicroRNAs (miRNAs) are crucial for the post-transcriptional control of protein-encoding genes and together with transcription factors (TFs) regulate gene expression; however, the regulatory activities of miRNAs during cardiac development are only partially understood. In this study, we tested the hypothesis that integrative computational approaches could identify miRNAs that experimentally could be shown to regulate cardiomyogenesis.
We integrated expression profiles with bioinformatics analyses of miRNA and TF regulatory programs to identify candidate miRNAs involved with cardiac development. Expression profiling showed that miR-200c, which is not normally detected in adult heart, is progressively down-regulated both during cardiac development and
Our analyses demonstrate that miR-200c represses hESC-CM differentiation and maturation. The integrative computation and experimental approaches described here, when applied more broadly, will enhance our understanding of the interplays between miRNAs and TFs in controlling cardiac development and disease processes.
Contributors

Ellen Ngar-yun Poon
Author

Baixia Hao
Author

Daogang Guan
Author

Mulin Jun Li
Author

Jun Lu
Author

Yong Yang
Author

Binbin Wu
Author

Stanley Chun-ming Wu
Author

Sarah E Webb
Author

Yan Liang
Author

Andrew L Miller
Author

Xiaoqiang Yao
Author

Junwen Wang
Author

Bin Yan
Author

Kenneth R Boheler
Author
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