Comparative Analyses of MicroRNA Microarrays during Cardiogenesis: Functional Perspectives.

Fernando Bonet, Francisco Hernandez-Torres, Franciso J Esteban, Amelia Aranega, Diego Franco
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引用次数: 8

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.

Abstract Image

Abstract Image

MicroRNA微阵列在心脏发生过程中的比较分析:功能视角。
心血管发育是一个复杂的过程,在这个过程中,多种转录途径同时起作用,为发育中的心肌细胞提供指令,同时应对收缩和形态发生运动,形成成熟的心脏。microrna的发现为控制心脏形成的分子机制增加了一层新的复杂性。microRNAs加工酶(如Dicer和Drosha)的离散遗传消融已经突出了microRNAs在心脏发育中的功能作用。重要的是,单个microRNA miR-1-2的选择性缺失会导致胚胎致死表型,其中可以观察到形态发生和传导受损的表型。为了掌握microRNA在心脏形态发生过程中的表达变异性,我们最近报道了心室发育过程中的动态表达谱,强调了miR-27在心脏关键转录因子Mef2c调控中的重要性。在这篇综述中,我们比较了microRNA在不同的心脏发生模型中的表达谱,如心室发育、诱导多能干细胞(iPS)衍生的心肌细胞和衰老的心脏。重要的是,在发育中的心脏中评估的486个microrna中,11%(55个)的表达增加,其中许多在不同的心脏发生实验模型中也有差异表达,包括ips衍生的心肌细胞。在心脏发育的背景下,将对这些差异表达的microrna的功能分析进行回顾,强调微阵列分析在破译发育、衰老和患病心脏中最相关的microrna方面的分辨率和能力。
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来源期刊
自引率
0.00%
发文量
0
审稿时长
11 weeks
期刊介绍: High-Throughput (formerly Microarrays, ISSN 2076-3905) is a multidisciplinary peer-reviewed scientific journal that provides an advanced forum for the publication of studies reporting high-dimensional approaches and developments in Life Sciences, Chemistry and related fields. Our aim is to encourage scientists to publish their experimental and theoretical results based on high-throughput techniques as well as computational and statistical tools for data analysis and interpretation. The full experimental or methodological details must be provided so that the results can be reproduced. There is no restriction on the length of the papers. High-Throughput invites submissions covering several topics, including, but not limited to: Microarrays, DNA Sequencing, RNA Sequencing, Protein Identification and Quantification, Cell-based Approaches, Omics Technologies, Imaging, Bioinformatics, Computational Biology/Chemistry, Statistics, Integrative Omics, Drug Discovery and Development, Microfluidics, Lab-on-a-chip, Data Mining, Databases, Multiplex Assays.
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