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通过向衰老小鼠转染微小RNA(miRNA)来逆转衰老相关分子的表达。

Reverse Expression of Aging-Associated Molecules through Transfection of miRNAs to Aged Mice.

作者信息

Kim Jung-Hee, Lee Bo-Ram, Choi Eun-Sook, Lee Kyeong-Min, Choi Seong-Kyoon, Cho Jung Hoon, Jeon Won Bae, Kim Eunjoo

机构信息

Division of Nano & Energy Convergence Research, Daegu Gyeongbuk Institute of Science and Technology (DGIST), Daegu 711-873, Republic of Korea.

School of Interdisciplinary Bioscience and Bioengineering, Pohang University of Science and Technology, Pohang 790-784, Republic of Korea.

出版信息

Mol Ther Nucleic Acids. 2017 Mar 17;6:106-115. doi: 10.1016/j.omtn.2016.11.005. Epub 2016 Dec 10.

Abstract

Molecular changes during aging have been studied to understand the mechanism of aging progress. Herein, changes in microRNA (miRNA) expression in the whole blood of mice were studied to systemically reverse aging and propose them as non-invasive biomarkers. Through next-generation sequencing analysis, we selected 27 differentially expressed miRNAs during aging. The most recognized function involved was liver steatosis, a type of non-alcoholic fatty liver disease (NAFLD). Among 27 miRNAs, six were predicted to be involved in NAFLD, miR-16-5p, miR-17-5p, miR-21a-5p, miR-30c-5p, miR-103-3p, and miR-130a-3p; alterations in their blood and liver levels were confirmed by real-time qPCR. The expression of the genes associated in the network of these miRNAs, Bcl2, Ppara, E2f1, E2f2, Akt, Ccnd1, and Smad2/3, also was altered in the liver of aged mice. Following transfection of these miRNAs into 18-month-old mice, levels of miR-21a-5p, miR-103-3p, and miR-30c-5p increased, and their related genes exhibited a reversed expression in the liver. Expression of Mre11a, p16INK4a, and Mtor, reported to be aging-associated molecules, also was reversed in the livers of miRNA-transfected mice. These miRNAs could be non-invasive biomarkers for aging, and they might induce a reverse regulation of aging-associated pathways. This study provides preliminary data on reverse aging, which could be applied further for treatments of adult diseases.

摘要

为了解衰老进程的机制,人们对衰老过程中的分子变化进行了研究。在此,研究了小鼠全血中微小RNA(miRNA)表达的变化,以系统性地逆转衰老,并将其作为非侵入性生物标志物。通过下一代测序分析,我们筛选出了27种在衰老过程中差异表达的miRNA。其中最受认可的功能涉及肝脂肪变性,这是一种非酒精性脂肪性肝病(NAFLD)。在这27种miRNA中,有6种被预测与NAFLD有关,即miR-16-5p、miR-17-5p、miR-21a-5p、miR-30c-5p、miR-103-3p和miR-130a-3p;通过实时定量PCR证实了它们在血液和肝脏中的水平变化。这些miRNA网络中相关基因Bcl2、Ppara、E2f1、E2f2、Akt、Ccnd1和Smad2/3的表达在老年小鼠肝脏中也发生了改变。将这些miRNA转染到18月龄小鼠体内后,miR-21a-5p、miR-103-3p和miR-30c-5p的水平升高,其相关基因在肝脏中呈现出表达逆转。据报道与衰老相关的分子Mre11a、p16INK4a和Mtor的表达在转染miRNA的小鼠肝脏中也出现了逆转。这些miRNA可能是衰老的非侵入性生物标志物,它们可能诱导衰老相关途径的反向调节。本研究提供了关于逆转衰老的初步数据,可进一步应用于成人疾病的治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5199/5363412/c4d0b7e46585/gr1.jpg

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