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曲古抑菌素A可诱导产生一组独特的微小RNA,包括miR-129-5p,其可阻断H9c2心肌细胞中细胞周期蛋白依赖性激酶6的表达并抑制细胞增殖。

Trichostatin A induces a unique set of microRNAs including miR-129-5p that blocks cyclin-dependent kinase 6 expression and proliferation in H9c2 cardiac myocytes.

作者信息

Majumdar Gipsy, Raghow Rajendra

机构信息

Department of Veterans Affairs Medical Center, Memphis, TN, 38104, USA.

Department of Pharmacology, University of Tennessee Health Science Center, Memphis, TN, 38163, USA.

出版信息

Mol Cell Biochem. 2016 Apr;415(1-2):39-49. doi: 10.1007/s11010-016-2675-4. Epub 2016 Mar 5.

Abstract

The pan-histone deacetylase inhibitor (HDACI), trichostatin A (TSA), was shown to normalize interleukin-18-induced cardiac hypertrophy in vivo and in vitro; evidently, this occurred via epigenetic mechanisms that profoundly altered cardiac gene expression (Majumdar et al. in, Physiol Genom, 43: 1392, 2011; BMC Genom, 13: 709, 2012). Here, we tested the hypothesis that TSA-induced changes in chromatin architecture also led to altered expression of microRNAs that in turn, contributed to the unique transcriptome of cardiac myocytes exposed to the HDACI. Using miRCURY LNA™ Universal microRNA PCR system, we demonstrate that H9c2 cells exposed to TSA for 6 and 24 h elicited differential expression of 19 and 16 microRNAs, respectively. H9c2 cells incubated in medium-containing 100 nM of TSA elicited a rapid and robust induction of miR-129-5p. Enhanced expression of miR-129-5p was also observed in the hearts of TSA-treated mice. Induction of miR-129-5p in H9c2 cells was accompanied by reduced expression of its direct target, cyclin-dependent kinase 6 (CDK6) that is a key regulator of cell cycle. Using cell division-dependent dilution of Cell Trace™ violet measurements we showed that concomitant induction of miR-129-5p and reduced CDK6 expression were mechanistically involved in TSA-induced inhibition of proliferation of H9c2 cells. Consistent with this scenario, cells expressing an antagomiR of miR-129-5p were resistant to the anti-proliferative actions of TSA. These data indicate that although TSA treatment led to altered expression of several microRNAs, the overarching action of TSA (i.e., inhibition of cell division) in H9c2 cells was achieved via miR-129-5p.

摘要

泛组蛋白去乙酰化酶抑制剂(HDACI)曲古抑菌素A(TSA)已被证明可在体内和体外使白细胞介素-18诱导的心脏肥大恢复正常;显然,这是通过深刻改变心脏基因表达的表观遗传机制发生的(Majumdar等人,《生理学基因组学》,43: 1392,2011;《BMC基因组学》,13: 709,2012)。在此,我们检验了这样一个假设,即TSA诱导的染色质结构变化也导致了微小RNA表达的改变,进而促成了暴露于HDACI的心肌细胞独特的转录组。使用miRCURY LNA™通用微小RNA PCR系统,我们证明,暴露于TSA 6小时和24小时的H9c2细胞分别引发了19种和16种微小RNA的差异表达。在含有100 nM TSA的培养基中培养的H9c2细胞引发了miR-129-5p的快速且强烈的诱导。在经TSA处理的小鼠心脏中也观察到了miR-129-5p表达的增强。H9c2细胞中miR-​129-​5p的诱导伴随着其直接靶点细胞周期蛋白依赖性激酶6(CDK6)表达的降低,CDK6是细胞周期的关键调节因子。使用Cell Trace™ violet测量的细胞分裂依赖性稀释,我们表明miR-129-5p的同时诱导和CDK6表达的降低在机制上参与了TSA诱导的H9c2细胞增殖抑制。与此情况一致,表达miR-129-5p反义寡核苷酸的细胞对TSA的抗增殖作用具有抗性。这些数据表明,尽管TSA处理导致了几种微小RNA表达的改变,但TSA在H9c2细胞中的总体作用(即抑制细胞分裂)是通过miR-129-​5p实现的。

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