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Intrinsic Features in MicroRNA Transcriptomes Link Porcine Visceral Rather than Subcutaneous Adipose Tissues to Metabolic Risk

机译:MicroRNA转录组的内在特征将猪内脏而不是皮下脂肪组织与代谢风险联系起来

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摘要

MicroRNAs (miRNAs) are non-coding small RNA ∼22 nucleotides in length that can regulate the expression of a wide range of coding genes at the post-transcriptional level. Visceral adipose tissues (VATs) and subcutaneous adipose tissues (SATs), the two main fat compartments in mammals, are anatomically, physiologically, metabolically, and clinically distinct. Various studies of adipose tissues have focused mainly on DNA methylation, and mRNA and protein expression, nonetheless little research sheds directly light on the miRNA transcriptome differences between these two distinct adipose tissue types. Here, we present a comprehensive investigation of miRNA transcriptomes across six variant porcine adipose tissues by small RNA-sequencing. We identified 219 known porcine miRNAs, 97 novel miRNA*s, and 124 miRNAs that are conserved to other mammals. A set of universally abundant miRNAs (i.e., miR-148a-3p, miR-143-3p, miR-27b-3p, miR-let-7a-1-5p, and miR-let-7f-5p) across the distinct adipose tissues was found. This set of miRNAs may play important housekeeping roles that are involved in adipogenesis. Clustering analysis indicated significant variations in miRNA expression between the VATs and SATs, and highlighted the role of the greater omentum in responding to potential metabolic risk because of the observed enrichment in this tissue of the immune- and inflammation-related miRNAs, such as the members of miR-17-92 cluster and miR-181 family. Differential expression of the miRNAs between the VATs and SATs, and miRNA target prediction analysis revealed that the VATs-specific enriched miRNAs were associated mainly with immune and inflammation responses. In summary, the differences of miRNA expression between the VATs and SATs revealed some of their intrinsic differences and indicated that the VATs might be closely associated with increased risk of metabolic disorders.
机译:微小RNA(miRNA)是长度约为22个核苷酸的非编码小RNA,可以在转录后水平上调节多种编码基因的表达。内脏脂肪组织(VAT)和皮下脂肪组织(SATs)是哺乳动物中的两个主要脂肪区室,在解剖学,生理学,代谢和临床上是不同的。脂肪组织的各种研究主要集中在DNA甲基化,mRNA和蛋白质表达上,但是很少有研究直接阐明这两种不同脂肪组织类型之间的miRNA转录组差异。在这里,我们通过小RNA测序对横跨六个变异猪脂肪组织的miRNA转录组进行了全面的研究。我们确定了219个已知的猪miRNA,97个新颖的miRNA *和124个保守于其他哺乳动物的miRNA。一组跨越独特脂肪的普遍丰富的miRNA(即miR-148a-3p,miR-143-3p,miR-27b-3p,miR-let-7a-1-5p和miR-let-7f-5p)发现组织。这组miRNA可能扮演重要的管家角色,参与脂肪形成。聚类分析表明VAT和SAT之间miRNA表达存在显着差异,并强调了大网膜在应对潜在代谢风险中的作用,因为观察到免疫和炎症相关miRNA(例如成员)在该组织中的富集miR-17-92簇和miR-181家族。 VAT和SAT之间的miRNA差异表达以及miRNA靶标预测分析表明,富含VAT的miRNA主要与免疫和炎症反应相关。总之,VAT和SAT之间的miRNA表达差异揭示了它们的一些内在差异,并表明VAT可能与代谢紊乱的风险增加密切相关。

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