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High-resolution analysis of the human retina miRNome reveals isomiR variations and novel microRNAs

机译:对人类视网膜miRNome的高分辨率分析揭示了isoomiR变异和新颖的microRNA

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MicroRNAs play a fundamental role in retinal development and function. To characterise the miRNome of the human retina, we carried out deep sequencing analysis on sixteen individuals. We established the catalogue of retina-expressed miRNAs, determined their relative abundance and found that a small number of miRNAs accounts for almost 90% of the retina miRNome. We discovered more than 3000 miRNA variants (isomiRs), encompassing a wide range of sequence variations, which include seed modifications that are predicted to have an impact on miRNA action. We demonstrated that a seed-modifying isomiR of the retina-enriched miR-124-3p was endowed with different targeting properties with respect to the corresponding canonical form. Moreover, we identified 51 putative novel, retina-specific miRNAs and experimentally validated the expression for nine of them. Finally, a parallel analysis of the human Retinal Pigment Epithelium (RPE)/choroid, two tissues that are known to be crucial for retina homeostasis, yielded notably distinct miRNA enrichment patterns compared to the retina. The generated data are accessible through an ad hoc database. This study is the first to reveal the complexity of the human retina miRNome at nucleotide resolution and constitutes a unique resource to assess the contribution of miRNAs to the pathophysiology of the human retina.
机译:MicroRNA在视网膜发育和功能中起基本作用。为了表征人类视网膜的miRNome,我们对16个人进行了深度测序分析。我们建立了视网膜表达的miRNA的目录,确定了它们的相对丰度,发现少量的miRNA几乎占视网膜miRNome的90%。我们发现了3000多种miRNA变体(isomiRs),涵盖了广泛的序列变异,其中包括种子修饰,预计会对miRNA的作用产生影响。我们证明,相对于相应的规范形式,富含视网膜的miR-124-3p的种子修饰isomiR具有不同的靶向特性。此外,我们鉴定了51种假定的新型视网膜特异性miRNA,并通过实验验证了其中9种的表达。最后,对视网膜色素上皮(RPE)/脉络膜(一种对视网膜稳态至关重要的组织)的平行分析产生了与视网膜相比明显不同的miRNA富集模式。生成的数据可通过临时数据库访问。这项研究首次揭示了核苷酸分辨率下人类视网膜miRNome的复杂性,并且构成了评估miRNA对人类视网膜病理生理学贡献的独特资源。

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