| Literature DB >> 27605182 |
Fernando Bonet1, Francisco Hernandez-Torres2, Franciso J Esteban3, Amelia Aranega4, Diego Franco5.
Abstract
Cardiovascular development is a complex process in which several transcriptional pathways are operative, providing instructions to the developing cardiomyocytes, while coping with contraction and morphogenetic movements to shape the mature heart. The discovery of microRNAs has added a new layer of complexity to the molecular mechanisms governing the formation of the heart. Discrete genetic ablation of the microRNAs processing enzymes, such as Dicer and Drosha, has highlighted the functional roles of microRNAs during heart development. Importantly, selective deletion of a single microRNA, miR-1-2, results in an embryonic lethal phenotype in which both morphogenetic, as well as impaired conduction, phenotypes can be observed. In an effort to grasp the variability of microRNA expression during cardiac morphogenesis, we recently reported the dynamic expression profile during ventricular development, highlighting the importance of miR-27 on the regulation of a key cardiac transcription factor, Mef2c. In this review, we compare the microRNA expression profile in distinct models of cardiogenesis, such as ventricular chamber development, induced pluripotent stem cell (iPS)-derived cardiomyocytes and the aging heart. Importantly, out of 486 microRNAs assessed in the developing heart, 11% (55) displayed increased expression, many of which are also differentially expressed in distinct cardiogenetic experimental models, including iPS-derived cardiomyocytes. A review on the functional analyses of these differentially expressed microRNAs will be provided in the context of cardiac development, highlighting the resolution and power of microarrays analyses on the quest to decipher the most relevant microRNAs in the developing, aging and diseased heart.Entities:
Keywords: cardiac development; meta-analyses; microRNAs; microarrays
Year: 2013 PMID: 27605182 PMCID: PMC5003481 DOI: 10.3390/microarrays2020081
Source DB: PubMed Journal: Microarrays (Basel) ISSN: 2076-3905
List of differentially expressed microRNAs during ventricular chamber development [14]. Several of them display a reported cardiovascular role (highlighted in the first column), and several validated targets have been reported, among which those with a cardiovascular role are highlighted. * MicroRNAs reported in humans (hsa-tagged), but not in mice. ** microRNAs reported in mice (mmu-tagged), but not in humans. Note that more that 85% (48/55) of the differentially expressed microRNAs are conserved in both species. iPS, pluripotent stem cell; na, not applicable.
| Differentially expressed microRNAs | Cardio-vascular role | Validated targets (cardiovascular role) | Cardiac formation | iPS cardio-myogenesis | Cardiac aging | References |
|---|---|---|---|---|---|---|
| nras, kras, hmga2 | up | up | down | [ | ||
| up | up | na | ||||
| up | up | na | ||||
| up | up | na | ||||
| up | up | na | ||||
| miR-15 | dmtf1, c22orf5, bcl-2, Chek1 | up | down | na | [ | |
| miR-17 | rbl2-p130, ncoa3, e2f1, adkcnna-p21, | up | na | na | [ | |
| miR-23 | pou4f2, hes1, | up | up | na | [ | |
| miR-24 | notch1,mapk14, kiaa0152, dhfr, cdkn2a-p16, alk4, | up | up | na | [ | |
| miR-25 | na | up | down | na | ||
| miR-26a | up | up | na | |||
| miR-30 | up | na | na | [ | ||
| up | up | na | ||||
| miR-93 | na | up | down | na | ||
| up | up | up | ||||
| up | up | na | ||||
| miR-103 | up | down | na | |||
| miR-106a | up | down | down | |||
| miR-122 | trpr6, ndrg3, cd320, bckdk, aldoa, | up | na | na | [ | |
| miR-125a | miR-125 | Lin28, erbb2, erbb3, zfp385, tor2a, rhebl1, ppt2, mkk7, lin28, jub, entpd4, dus11, ddx19b, arid3b, arid3a, apln, abtb1 | up | na | na | [ |
| miR-125b | up | up | na | |||
| miR-126 | up | down | na | [ | ||
| miR-130a | up | down | na | |||
| miR-130b | up | down | na | |||
| miR-133 | up | up | na | [ | ||
| up | up | na | ||||
| miR-140 | up | na | na | |||
| miR-143 | mapk7, mapk12, | up | up | na | [ | |
| miR-145 | irs-1, flj21308, | up | up | na | [ | |
| miR-181a | up | up | na | |||
| miR-181b | up | up | na | |||
| miR-183 | up | up | na | |||
| miR-190 | up | up | na | |||
| miR-191 | up | up | na | |||
| miR-198 * | up | up | na | |||
| miR-202 | up | up | na | |||
| miR-210 | efna3 | up | up | na | [ | |
| miR-298 | up | na | equal | |||
| miR-320 | up | na | na | |||
| miR-322 ** | miR-322 | na | up | na | up | |
| miR-324 | up | down | na | |||
| miR-351 ** | up | na | equal | |||
| miR-373 * | up | down | na | |||
| miR-422b | up | na | na | |||
| miR-453 | up | up | na | |||
| miR-455 | up | na | na | |||
| miR-494 | na | up | up | down | ||
| miR-494 | up | na | na | |||
| miR-503 | up | na | down | |||
| miR-513 ** | up | na | na | |||
| miR-517 ** | up | na | na | |||
| miR-518c | up | na | na | |||
| miR-546 * | up | na | equal |
Figure 1A meta-analyses of microRNA microarrays during in the developing and aging cardiogenesis. Panel A illustrates the heatmap of the differentially expressed microRNAs during mouse ventricular development, as described by Chinchilla et al. [14]. Panel B illustrates the heatmap of the comparative analyses of the differentially expressed microRNAs in the developing and aging mouse heart. Observe that while those differentially expressed during cardiogenesis display increasing expression trends, the young and adult heart display no significant trends. In contrast, comparative analyses of the differentially expressed microRNAs in the developing heart and induced pluripotent stem cell-derived cardiomyocytes, over a maturation period ranging incipient cardiomyocytes (day zero) to 120 days after differentiation, nicely show subset of microRNAs with similar trends (i.e., let7 cluster) or opposite trends (see, for example, miR-103 and miR-106b), as illustrated in this heatmap on panel C. Panels A. B, C and C are graphical illustrations of microRNA representative expression trends as depicted in heatmaps on panels A, B and C, respectively. Panel A displays only a small representation of the full list of microRNAS represented in heatmap of panel A. More detailed information can be found in Chinchilla et al. [14]. Panel C represents a subset of panel C microRNAs displaying increased expression levels in both ventricular maturation and iPS-cardiomyogenesis, while panel C represents a microRNA subset display increasing expression levels during ventricular maturation, but decreasing expression levels in iPS-cardiomyogenesis.