| Literature DB >> 30622671 |
Xu Xiao1, Zhigang Lu2, Victor Lin2, Adam May2, Daniel H Shaw2,3, Zhihao Wang2, Briana Che2, Kyle Tran2, Hongjun Du4, Peter X Shaw2.
Abstract
In recent years, microRNAs (miRNAs) have received increasing attention for their role in ischemia/reperfusion injury (I/RI), and many miRNAs have been demonstrated to play a very important role in cardiac I/RI. The miRNA miR-24-3p is a tumor suppressor that regulates multiple tumors; however, it remains unclear whether the expression level of miR-24-3p is altered in cardiac cells under I/RI. In this study, we used mouse primary cardiomyocytes and the H9C2 cardiomyocyte cell line to perform in vitro stimulated ischemia/reperfusion (SI/R) and then detected miR-24-3p expression level using quantitative real-time PCR (qRT-PCR). We discovered that the expression of miR-24-3p was significantly increased in cardiomyocytes following SI/R, and that the miR-24-3p level was inversely correlated to the ischemia marker HIF-1a. Furthermore, we transfected cardiomyocytes with miR-24-3p mimic or inhibitor to explore the role of miR-24-3p in cardiomyocyte ischemia/reperfusion injury in vitro. We performed flow cytometry to detect the apoptotic rate of H9C2 cardiomyocytes and found that the transfection of miR-24-3p mimic resulted in the decrease of the apoptosis rate of cardiomyocytes after SI/R, whereas the transfection of miR-24-3p inhibitor increased the number of apoptotic cardiomyocytes. These data suggest that the overexpression of miR-24-3p could reduce in vitro myocardial cell apoptosis induced by I/R injury. Finally, we applied the dual luciferase reporter gene system to verify whether miR-24-3p targets the Keap1 gene, and found that the luciferase signal intensity from a vector carrying the Keap1 wild-type reporter gene was significantly reduced after transfection with miR-24-3p mimic. The Keap1 protein level was also reduced following the transfection of miR-24-3p. The results from this study suggest a novel function of miR-24-3p in protecting cardiomyocytes from ischemia/reperfusion injury by the activation of the Nrf2-Keap1 pathway.Entities:
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Year: 2018 PMID: 30622671 PMCID: PMC6304907 DOI: 10.1155/2018/7042105
Source DB: PubMed Journal: Oxid Med Cell Longev ISSN: 1942-0994 Impact factor: 6.543
Figure 1(a) Expression of miR-24-3p in hypoxia/reoxygenation of primary cardiomyocytes. SI/R and control groups, ∗∗P < 0.01. (b) Expression of miR-24-3p in H9C2 cardiomyocytes after hypoxia/reoxygenation. SI/R compared with the control group, ∗∗∗P < 0.001. (c) Expression of HIF-1a gene in hypoxia/reoxygenation of primary cardiomyocytes. SI/R and control groups, ∗∗P < 0.01. (d) Expression of HIF-1a gene in H9C2 cardiomyocytes after hypoxia/reoxygenation. SI/R compared with the control group, ∗∗∗P < 0.001. Data are expressed as the relative fold change among data sets (N = 3) and each was performed in triplicate.
Figure 2The expression of miR-24-3p following the transfection of miR-24-3p mimic or miR-24-3p inhibitor into H9C2 cardiomyocytes. Data are expressed as the relative fold change in comparison with the untransfected control group (N = 3 for each set). ∗∗P < 0.01 and ∗∗∗P < 0.001.
Figure 3Apoptosis of cardiomyocytes following the transfection of miR-24-3p mimic or miR-24-3p inhibitor into H9C2 cardiomyocytes. A total number of 1 × 105 treated cells were detected by flow cytometry after Annexin V-FITC staining for apoptotic cells. Apoptosis-induced cardiomyocytes were gated into the right upper quadrant (Q2) of each panel while the left bottom quadrant (Q3) contains normal cells and (Q4) cells that were in very early apoptosis according to PI intensity and FSC, as described. (a) H9C2 cells treated only with SI/R, (b) H9C2 cells transfected with miR-24-3p mimic, or (c) H9C2 cells transfected with miR-24-3p inhibitor.
Figure 4(a) The putative binding site of miR-24-3p is located in the 3′-UTR of Keap1 mRNA. (b) The double luciferase reporter assay system is used to detect the direct interaction of miR-24-3p with the Keap1 3′-UTR. Data show the comparison of the relative luciferase activity of the vector harboring wild-type or mutant Keap1 3′-UTR following the transfection of miR-24-3p mimic (green bars) or nontransfection control (miR-NC) (black bars). ∗∗P < 0.01.
Figure 5Western blot analysis for Keap1 protein in H9C2 cardiomyocyte control or H9C2 transfected with miR-24-3p inhibitor or miR-24-3p mimic. (a) Representative western blot images. (b) Relative levels of Keap1 protein normalized to GAPDH. N = 3; means ± standard deviations are shown. P values tested against control are indicated. n.s., nonsignificant.