Department of Human Epigenetics, Mossakowski Medical Research Centre, Polish Academy of Sciences (PAS), 5 Pawinskiego Street, 02106 Warsaw, Poland.
Genomic Medicine, Medical University of Warsaw, 02097 Warsaw, Poland.
Int J Mol Sci. 2017 Dec 27;19(1):66. doi: 10.3390/ijms19010066.
Both obesity and weight loss may cause molecular changes in adipose tissue. This study aimed to characterize changes in adipose tissue miRNome in order to identify molecular pathways affected by obesity and weight changes. Next generation sequencing (NGS) was applied to identify microRNAs (miRNAs) differentially expressed in 47 samples of visceral (VAT) and subcutaneous (SAT) adipose tissues from normal-weight (N), obese (O) and obese after surgery-induced weight loss (PO) individuals. Subsequently miRNA expression was validated by real-time PCR in 197 adipose tissues and bioinformatics analysis performed to identify molecular pathways affected by obesity-related changes in miRNA expression. NGS identified 344 miRNAs expressed in adipose tissues with ≥5 reads per million. Using >2 and <-2 fold change as cut-offs we showed that the expression of 54 miRNAs differed significantly between VAT-O and SAT-O. Equally, between SAT-O and SAT-N, the expression of 20 miRNAs differed significantly, between SAT-PO and SAT-N the expression of 79 miRNAs differed significantly, and between SAT-PO and SAT-O, the expression of 61 miRNAs differed significantly. Ontological analyses disclosed several molecular pathways regulated by these miRNAs in adipose tissue. NGS-based miRNome analysis characterized changes of the miRNA profile of adipose tissue, which are associated with changes of weight possibly responsible for a differential regulation of molecular pathways in adipose tissue when the individual is obese and after the individual has lost weight.
肥胖和体重减轻都可能导致脂肪组织的分子变化。本研究旨在描述脂肪组织 microRNA 组的变化,以确定受肥胖和体重变化影响的分子途径。下一代测序(NGS)被应用于识别 47 个正常体重(N)、肥胖(O)和肥胖手术后体重减轻(PO)个体的内脏(VAT)和皮下(SAT)脂肪组织中差异表达的 microRNAs(miRNAs)。随后,通过实时 PCR 在 197 个脂肪组织中验证了 miRNA 的表达,并进行了生物信息学分析,以确定受肥胖相关 miRNA 表达变化影响的分子途径。NGS 鉴定了在每百万个读数中至少有 5 个读数的 344 种 miRNA。使用 >2 和 <-2 倍变化作为截止值,我们表明,54 种 miRNA 在 VAT-O 和 SAT-O 之间的表达差异显著。同样,在 SAT-O 和 SAT-N 之间,20 种 miRNA 的表达差异显著,在 SAT-PO 和 SAT-N 之间,79 种 miRNA 的表达差异显著,在 SAT-PO 和 SAT-O 之间,61 种 miRNA 的表达差异显著。本体分析揭示了这些 miRNA 在脂肪组织中调节的几个分子途径。基于 NGS 的 miRNome 分析描述了脂肪组织中 miRNA 谱的变化,这些变化与体重变化有关,可能导致个体肥胖时和个体减轻体重后脂肪组织中分子途径的差异调节。