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Characteristics of microRNAs enriched in specific cell types and primary tissue types in solid organs

机译:实体器官中富含特定细胞类型和主要组织类型的microRNA的特征

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摘要

Knowledge of miRNA expression and function in specific cell types in solid organs is limited because of difficulty in obtaining appropriate specimens. We used laser capture microdissection to obtain nine tissue regions from rats, including the nucleus of the solitary tract, hypoglossal motor nucleus, ventral respiratory column/pre-Bötzinger complex, and midline raphe nucleus from the brain stem, myocardium and coronary artery from the heart, and glomerulus, proximal convoluted tubule, and medullary thick ascending limb from the kidney. Each tissue region consists of or is enriched for a specific cell type. Differential patterns of miRNA expression obtained by deep sequencing of minute amounts of laser-captured cells were highly consistent with data obtained from real-time PCR analysis. miRNA expression patterns correctly clustered the specimens by tissue regions and then by primary tissue types (neural, muscular, or epithelial). The aggregate difference in miRNA profiles between tissue regions that contained the same primary tissue type was as large as one-half of the aggregate difference between primary tissue types. miRNAs differentially expressed between primary tissue types are more likely to be abundant miRNAs, while miRNAs differentially expressed between tissue regions containing the same primary tissue type were distributed evenly across the abundance spectrum. The tissue type-enriched miRNAs were more likely to target genes enriched for specific functional categories compared with either cell type-enriched miRNAs or randomly selected miRNAs. These data indicate that the role of miRNAs in determining characteristics of primary tissue types may be different than their role in regulating cell type-specific functions in solid organs.
机译:由于难以获得合适的标本,因此在实体器官中特定细胞类型中miRNA表达和功能的知识受到限制。我们使用激光捕获显微切割术从大鼠中获得了9个组织区域,包括孤立道的核,舌下运动核,腹侧呼吸柱/伯森格复合体以及来自脑干的中线网状核,来自心脏的心肌和冠状动脉肾小球,肾小管近曲,肾的髓质粗大上升肢。每个组织区域由特定的细胞类型组成或富含特定的细胞类型。通过对微量的激光捕获细胞进行深度测序获得的miRNA表达差异模式与实时PCR分析获得的数据高度一致。 miRNA的表达模式正确地按组织区域和主要组织类型(神经,肌肉或上皮)将标本聚集在一起。在包含相同主要组织类型的组织区域之间,miRNA分布的总差异与主要组织类型之间的总差异的一半一样大。在主要组织类型之间差异表达的miRNA更有可能是丰富的miRNA,而在包含相同主要组织类型的组织区域之间差异表达的miRNA则在丰度谱中均匀分布。与富含细胞类型的miRNA或随机选择的miRNA相比,富含组织类型的miRNA更有可能靶向针对特定功能类别富集的基因。这些数据表明,miRNA在确定主要组织类型特征中的作用可能不同于它们在调节实体器官中细胞类型特异性功能中的作用。

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