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首页> 外文期刊>Journal of cellular biochemistry. >Deep sequencing reveals predominant expression of miR-21 amongst the small non-coding RNAs in retinal microvascular endothelial cells
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Deep sequencing reveals predominant expression of miR-21 amongst the small non-coding RNAs in retinal microvascular endothelial cells

机译:深度测序揭示了视网膜微血管内皮细胞中小分子非编码RNA中miR-21的主要表达

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摘要

The retinal vascular endothelium is essential for angiogenesis and is involved in maintaining barrier selectivity and vascular tone. The aim of this study was to identify and quantify microRNAs and other small regulatory non-coding RNAs (ncRNAs) which may regulate these crucial functions. Primary bovine retinal microvascular endothelial cells (RMECs) provide a well-characterized in vitro system for studying angiogenesis. RNA extracted from RMECs was used to prepare a small RNA library for deep sequencing (Illumina Genome Analyzer). A total of 6.8 million reads were mapped to 250 known microRNAs in miRBase (release 16). In many cases, the most frequent isomiR differed from the sequence reported in miRBase. In addition, five novel microRNAs, 13 novel bovine orthologs of known human microRNAs and multiple new members of the miR-2284/2285 family were detected. Several ~30 nucleotide sno-miRNAs were identified, with the most highly expressed being derived from snoRNA U78. Highly expressed microRNAs previously associated with endothelial cells included miR-126 and miR-378, but the most highly expressed was miR-21, comprising more than one-third of all mapped reads. Inhibition of miR-21 with an LNA inhibitor significantly reduced proliferation, migration, and tube-forming capacity of RMECs. The independence from prior sequence knowledge provided by deep sequencing facilitates analysis of novel microRNAs and other small RNAs. This approach also enables quantitative evaluation of microRNA expression, which has highlighted the predominance of a small number of microRNAs in RMECs. Knockdown of miR-21 suggests a role for this microRNA in regulation of angiogenesis in the retinal microvasculature.
机译:视网膜血管内皮对于血管生成必不可少,并参与维持屏障选择性和血管张力。这项研究的目的是鉴定和定量可能调节这些关键功能的microRNA和其他小型调节性非编码RNA(ncRNA)。原发性牛视网膜微血管内皮细胞(RMEC)为研究血管生成提供了特征明确的体外系统。从RMEC中提取的RNA用于制备用于深度测序的小型RNA库(Illumina基因组分析仪)。总共680万条读数被定位到miRBase(版本16)中的250个已知的microRNA。在许多情况下,最常见的isomiR与miRBase中报道的序列不同。此外,还检测到五个新的microRNA,13个已知的人类microRNA的牛直系同源物以及miR-2284 / 2285家族的多个新成员。鉴定出了约30个核苷酸的sno-miRNA,其中表达最高的是snoRNA U78。先前与内皮细胞相关的高表达microRNA包括miR-126和miR-378,但表达最高的是miR-21,占所有作图读物的三分之一以上。用LNA抑制剂抑制miR-21可显着降低RMEC的增殖,迁移和成管能力。深度测序提供的与先验序列知识的独立性,有助于分析新型microRNA和其他小RNA。这种方法还可以定量评估microRNA的表达,这突出了RMEC中少数microRNA的优势。 miR-21的敲低表明此microRNA在调节视网膜微脉管系统中血管生成中的作用。

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