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Identification of Expressed miRNAs in Human Rheumatoid Arthritis Using Computational Approach - Discovery of a New miR-7167 from Human

机译:使用计算方法鉴定人文湿润关节炎的表达miRNA - 发现新MIR-7167从人体发现

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Background: Rheumatoid Arthritis (RA) is a chronic inflammatory and autoimmune disease leading to bones and joints destruction. It is one of the major causes of lifetime disability and mortality among humans in the developing and developed countries. It was evident that epigenetic dysregulation is related to the pathogenesis of RA. MicroRNAs (miRNAs) are small non-coding RNAs that are epigenetic regulators for diverse biological processes and also provided novel molecular insights in the formation of arthritis. Objective: The influences of miRNAs in the alteration of gene regulation during the pathogenesis of arthritis were exposed in recent years. Method: The computational approach to identify miRNA through EST-based homology is more powerful, economical and time-efficient. In this study, we applied EST-based homology search to identify miRNAs responsible for the development of arthritis in human beings. Results: Our study on 36519 ESTs in human RA condition revealed the expression of four miRNAs, HSA-miR-198, HSA-miR-4647, has-miR-7167-5p and has-miR-7167-3p. The present study is the first report about has-miR-7167 that was homologous to Macaca mulatto. Conclusion: The predicted targets of these identified miRNAs revealed many biological functions in the pathogenesis of RA. Further elaborated studies on these miRNAs will help to understand their function in the development of RA and the use of miRNAs as therapeutic targets in the future.
机译:背景:类风湿性关节炎(RA)是一种慢性炎症和自身免疫疾病,导致骨骼和关节破坏。它是发展中国家和发达国家人类终身残疾和死亡率的主要原因之一。显而易见的是,表观遗传失调与RA的发病机制有关。 MicroRNA(miRNA)是小型非编码RNA,其是用于各种生物过程的表观遗传调节因子,并在关节炎的形成中提供了新的分子见解。目的:近年来暴露了MiRNA在关节炎发病机制过程中对基因调控改变的影响。方法:通过基于EST的同源性识别miRNA的计算方法更强大,经济和较少。在这项研究中,我们应用基于EST的同性恋搜索,以识别负责人类关节炎的发挥作用的miRNA。结果:我们对36519例人类RA病症的研究表明,四个miRNA,HSA-MIR-198,HSA-MIR-4647,HAS-MIR-7167-5P和Hase-MiR-7167-3P的表达。本研究是关于Hase-MiR-7167的第一个报告,其与Macaca Mulatto同源。结论:这些鉴定的miRNA的预测靶标在RA的发病机制中揭示了许多生物学功能。对这些MIRNA的进一步阐述的研究将有助于了解其在RA的发展中的功能以及将来使用MIRNA作为治疗目标的使用。

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