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Evolving systems biology approaches to understanding non-coding RNAs in pulmonary hypertension

机译:不断发展的系统生物学方法,以了解肺动脉高压下的非编码RNA

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摘要

Our appreciation of the roles of non-coding RNAs, in particular microRNAs, in the manifestation of pulmonary hypertension (PH) has advanced considerably over the past decade. Comprised of small nucleotide sequences, microRNAs have demonstrated critical and broad regulatory roles in the pathogenesis of PH via the direct binding to messenger RNA transcripts for degradation or inhibition of translation, thereby exerting a profound influence on cellular activity. Yet, as inherently pleiotropic molecules, microRNAs have been difficult to study using traditional, reductionist approaches alone. With the advent of high-throughput -omics technologies and more advanced computational modelling, the study of microRNAs and their multi-faceted and complex functions in human disease serves as a fertile platform for the application of systems biology methodologies in combination with traditional experimental techniques. Here, we offer our viewpoint of past successes of systems biology in elucidating the otherwise hidden actions of microRNAs in PH, as well as areas for future development to integrate these strategies into the discovery of RNA pathobiology in this disease. We contend that such successful applications of systems biology in elucidating the functional architecture of microRNA regulation will further reveal the molecular mechanisms of disease, while simultaneously revealing potential diagnostic and therapeutic strategies in disease amelioration.
机译:我们的非编码RNA的作用表示赞赏,特别是微小RNA,肺动脉高压(PH)的表现已经相当先进,在过去的十年。由小核苷酸序列组成,MicroRNA通过与通信RNA转录物的直接结合在pH值的转化或抑制翻译的转化或抑制中表现出临界和宽的调节作用,从而对细胞活性产生深远的影响。然而,作为固有的脂肪分子,MicroRNAS难以使用传统的传统研究,单独使用传统的方法。随着高吞吐量的技术和更先进的计算建模的出现,MicroRNA的研究及其在人类疾病中的多方面和复杂功能是一种肥沃的平台,用于与传统的实验技术相结合应用系统生物学方法。在这里,我们提供了对系统生物学的过去成功的观点,以阐明PH值中的MicroRNA的其他隐藏的行为,以及未来发展的领域,以将这些策略整合到该疾病中的RNA病理学生物学中的发现。我们争辩说,在阐明MicroRNA调节功能阐释的系统生物学中的这种成功应用将进一步揭示疾病的分子机制,同时揭示疾病改善的潜在诊断和治疗策略。

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