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RNA 测序揭示了糖尿病小鼠骨骼肌中转录组和非编码 RNA 组改变之间潜在的相互作用网络。

RNA sequencing reveals potential interacting networks between the altered transcriptome and ncRNome in the skeletal muscle of diabetic mice.

机构信息

CSIR-Institute of Genomics and Integrative Biology, Functional and Genomics Unit, Mall Road, Delhi, India.

Academy of Scientific and Innovative Research, CSIR-HRDC, Kamala Nehru Nagar, Ghaziabad 201002, Uttar Pradesh, India.

出版信息

Biosci Rep. 2021 Jul 30;41(7). doi: 10.1042/BSR20210495.

Abstract

For a global epidemic like Type 2 diabetes mellitus (T2DM), while impaired gene regulation is identified as a primary cause of aberrant cellular physiology; in the past few years, non-coding RNAs (ncRNAs) have emerged as important regulators of cellular metabolism. However, there are no reports of comprehensive in-depth cross-talk between these regulatory elements and the potential consequences in the skeletal muscle during diabetes. Here, using RNA sequencing, we identified 465 mRNAs and 12 long non-coding RNAs (lncRNAs), to be differentially regulated in the skeletal muscle of diabetic mice and pathway enrichment analysis of these altered transcripts revealed pathways of insulin, FOXO and AMP-activated protein kinase (AMPK) signaling to be majorly over-represented. Construction of networks showed that these pathways significantly interact with each other that might underlie aberrant skeletal muscle metabolism during diabetes. Gene-gene interaction network depicted strong interactions among several differentially expressed genes (DEGs) namely, Prkab2, Irs1, Pfkfb3, Socs2 etc. Seven altered lncRNAs depicted multiple interactions with the altered transcripts, suggesting possible regulatory roles of these lncRNAs. Inverse patterns of expression were observed between several of the deregulated microRNAs (miRNAs) and the differentially expressed transcripts in the tissues. Towards validation, overexpression of miR-381-3p and miR-539-5p in skeletal muscle C2C12 cells significantly decreased the transcript levels of their targets, Nfkbia, Pik3r1 and Pi3kr1, Cdkn2d, respectively. Collectively, the findings provide a comprehensive understanding of the interactions and cross-talk between the ncRNome and transcriptome in the skeletal muscle during diabetes and put forth potential therapeutic options for improving insulin sensitivity.

摘要

对于 2 型糖尿病(T2DM)等全球性疾病,虽然基因调控受损被认为是细胞生理异常的主要原因;但在过去几年中,非编码 RNA(ncRNA)已成为细胞代谢的重要调节剂。然而,目前还没有关于这些调节因子与糖尿病期间骨骼肌中潜在后果之间的全面深入交叉对话的报道。在这里,我们使用 RNA 测序鉴定了 465 个 mRNA 和 12 个长非编码 RNA(lncRNA),这些在糖尿病小鼠骨骼肌中差异调节,对这些改变的转录本的通路富集分析显示胰岛素、FOXO 和 AMP 激活蛋白激酶(AMPK)信号通路是主要过度表达的通路。网络构建显示这些通路之间存在显著的相互作用,这可能是糖尿病期间骨骼肌代谢异常的基础。基因-基因相互作用网络显示几个差异表达基因(DEG)之间存在强烈的相互作用,即 Prkab2、Irs1、Pfkfb3、SocS2 等。七个改变的 lncRNA 与改变的转录本之间显示出多种相互作用,表明这些 lncRNA 可能具有调节作用。几种失调的 microRNA(miRNA)与组织中差异表达的转录本之间观察到相反的表达模式。为了验证,miR-381-3p 和 miR-539-5p 在骨骼肌 C2C12 细胞中的过表达显著降低了它们的靶基因 Nfkbia、Pik3r1 和 Pi3kr1、Cdkn2d 的转录本水平。总之,这些发现提供了对糖尿病期间骨骼肌中 ncRNA 组和转录组之间相互作用和交叉对话的全面理解,并提出了改善胰岛素敏感性的潜在治疗选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d81/8276098/5b0f775ce761/bsr-41-bsr20210495-g1.jpg

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