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低氧后处理通过组蛋白 H3K14 乙酰化介导 c-Myc 与 miR-30a-5p 基因启动子结合,保护衰老心肌细胞免受低氧/复氧损伤。

H3K14 hyperacetylation‑mediated c‑Myc binding to the miR‑30a‑5p gene promoter under hypoxia postconditioning protects senescent cardiomyocytes from hypoxia/reoxygenation injury.

机构信息

Department of Pathophysiology, School of Basic Medical Sciences, Ningxia Medical University, Yinchuan, Ningxia Hui Autonomous Region 750004, P.R. China.

Department of Prenatal Diagnosis Center, General Hospital of Ningxia Medical University, Yinchuan, Ningxia Hui Autonomous Region 750004, P.R. China.

出版信息

Mol Med Rep. 2021 Jun;23(6). doi: 10.3892/mmr.2021.12107. Epub 2021 Apr 21.

Abstract

Our previous study reported that microRNA (miR)‑30a‑5p upregulation under hypoxia postconditioning (HPostC) exert a protective effect on aged H9C2 cells against hypoxia/reoxygenation injury via DNA methyltransferase 3B‑induced DNA hypomethylation at the miR‑30a‑5p gene promoter. This suggests that miR‑30a‑5p may be a potential preventative and therapeutic target for ischemic heart disease in aged myocardium. The present study aimed to investigate the underlying mechanisms of miR‑30a‑5p transcription in aged myocardium in ischemic heart disease. Cardiomyocytes were treated with 8 mg/ml D‑galactose for 9 days, and then exposed to hypoxic conditions. Cell viability was determined using a cell viability assay. Expression levels of histone deacetylase 2 (HDAC2), LC3B‑II/I, beclin‑1 and p62 were detected via reverse transcription‑quantitative PCR and western blotting. Chromatin immunoprecipitation‑PCR and luciferase reporter assays were performed to evaluate the effect of c‑Myc binding and activity on the miR‑30a‑5p promoter in senescent cardiomyocytes following HPostC. It was found that HPostC enhanced the acetylation levels of H3K14 at the miR‑30a‑5p gene promoter in senescent cardiomyocytes, which attributed to the decreased expression of HDAC2. In addition, c‑Myc could positively regulate miR‑30a‑5p transcription to inhibit senescent cardiomyocyte autophagy. Mechanically, it was observed that increased H3K14 acetylation level exposed to romidepsin facilitated c‑Myc binding to the miR‑30a‑5p gene promoter region, which led to the increased transcription of miR‑30a‑5p. Taken together, these results demonstrated that HDAC2‑mediated H3K14 hyperacetylation promoted c‑Myc binding to the miR‑30a‑5p gene promoter, which contributed to HPostC senescent cardioprotection.

摘要

我们之前的研究表明,低氧后处理(HPostC)条件下微 RNA(miR)-30a-5p 的上调通过 DNA 甲基转移酶 3B 诱导 miR-30a-5p 基因启动子处的 DNA 去甲基化对老龄 H9C2 细胞缺氧/复氧损伤发挥保护作用。这表明 miR-30a-5p 可能是老年心肌缺血性心脏病的潜在预防和治疗靶点。本研究旨在探讨缺血性心脏病老年心肌中 miR-30a-5p 转录的潜在机制。心肌细胞用 8mg/ml D-半乳糖处理 9 天,然后暴露于缺氧条件下。通过细胞活力测定法测定细胞活力。通过逆转录-定量 PCR 和 Western blot 检测组蛋白去乙酰化酶 2(HDAC2)、LC3B-II/I、beclin-1 和 p62 的表达水平。染色质免疫沉淀-PCR 和荧光素酶报告基因检测评估 HPostC 后衰老心肌细胞中 c-Myc 结合和活性对 miR-30a-5p 启动子的影响。结果发现,HPostC 增强了衰老心肌细胞 miR-30a-5p 基因启动子处 H3K14 的乙酰化水平,这归因于 HDAC2 表达降低。此外,c-Myc 可以正向调节 miR-30a-5p 转录以抑制衰老心肌细胞自噬。机制上,观察到罗米地辛增加的 H3K14 乙酰化水平促进了 c-Myc 与 miR-30a-5p 基因启动子区域的结合,导致 miR-30a-5p 的转录增加。综上所述,这些结果表明,HDAC2 介导的 H3K14 过度乙酰化促进了 c-Myc 与 miR-30a-5p 基因启动子的结合,这有助于 HPostC 对衰老心肌的保护作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/828a/8097758/e77f3f138b84/mmr-23-06-12107-g00.jpg

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