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选择性心脏照射诱导促肥厚性微小RNA-212在心脏中过表达。

Selective Heart Irradiation Induces Cardiac Overexpression of the Pro-hypertrophic miR-212.

作者信息

Sárközy Márta, Gáspár Renáta, Zvara Ágnes, Kiscsatári Laura, Varga Zoltán, Kővári Bence, Kovács Mónika G, Szűcs Gergő, Fábián Gabriella, Diószegi Petra, Cserni Gábor, Puskás László G, Thum Thomas, Kahán Zsuzsanna, Csont Tamás, Bátkai Sándor

机构信息

Metabolic Diseases and Cell Signaling Group, Department of Biochemistry, Interdisciplinary Centre of Excellence, University of Szeged, Szeged, Hungary.

Laboratory for Functional Genomics, Biological Research Center of the Hungarian Academy of Sciences, Institute of Genetics, Szeged, Hungary.

出版信息

Front Oncol. 2019 Jul 16;9:598. doi: 10.3389/fonc.2019.00598. eCollection 2019.

Abstract

A deleterious, late-onset side effect of thoracic radiotherapy is the development of radiation-induced heart disease (RIHD). It covers a spectrum of cardiac pathology including also heart failure with preserved ejection fraction (HFpEF) characterized by left ventricular hypertrophy (LVH) and diastolic dysfunction. MicroRNA-212 (miR-212) is a crucial regulator of pathologic LVH via FOXO3-mediated pathways in pressure-overload-induced heart failure. We aimed to investigate whether miR-212 and its selected hypertrophy-associated targets play a role in the development of RIHD. RIHD was induced by selective heart irradiation (50 Gy) in a clinically relevant rat model. One, three, and nineteen weeks after selective heart irradiation, transthoracic echocardiography was performed to monitor cardiac morphology and function. Cardiomyocyte hypertrophy and fibrosis were assessed by histology at week 19. qRT-PCR was performed to measure the gene expression changes of miR-212 and forkhead box O3 (FOXO3) in all follow-up time points. The cardiac transcript level of other selected hypertrophy-associated targets of miR-212 including extracellular signal-regulated kinase 2 (ERK2), myocyte enhancer factor 2a (MEF2a), AMP-activated protein kinase, (AMPK), heat shock protein 40 (HSP40), sirtuin 1, (SIRT1), calcineurin A-alpha and phosphatase and tensin homolog (PTEN) were also measured at week 19. Cardiac expression of FOXO3 and phospho-FOXO3 were investigated at the protein level by Western blot at week 19. In RIHD, diastolic dysfunction was present at every time point. Septal hypertrophy developed at week 3 and a marked LVH with interstitial fibrosis developed at week 19 in the irradiated hearts. In RIHD, cardiac miR-212 was overexpressed at week 3 and 19, and FOXO3 was repressed at the mRNA level only at week 19. In contrast, the total FOXO3 protein level failed to decrease in response to heart irradiation at week 19. Other selected hypertrophy-associated target genes failed to change at the mRNA level in RIHD at week 19. LVH in RIHD was associated with cardiac overexpression of miR-212. However, miR-212 seems to play a role in the development of LVH via FOXO3-independent mechanisms in RIHD. As a central regulator of pathologic remodeling, miR-212 might become a novel target for RIHD-induced LVH and heart failure.

摘要

胸部放疗有害的迟发性副作用是放射性心脏病(RIHD)的发生。它涵盖了一系列心脏病理情况,还包括射血分数保留的心力衰竭(HFpEF),其特征为左心室肥厚(LVH)和舒张功能障碍。微小RNA-212(miR-212)是压力超负荷诱导的心力衰竭中通过FOXO3介导的途径对病理性LVH起关键调节作用的因子。我们旨在研究miR-212及其选定的与肥厚相关的靶点是否在RIHD的发生中起作用。在一个具有临床相关性的大鼠模型中,通过选择性心脏照射(50 Gy)诱导RIHD。在选择性心脏照射后1周、3周和19周,进行经胸超声心动图检查以监测心脏形态和功能。在第19周通过组织学评估心肌细胞肥大和纤维化。在所有随访时间点进行qRT-PCR以测量miR-212和叉头框O3(FOXO3)的基因表达变化。在第19周还测量了miR-212的其他选定的与肥厚相关的靶点的心脏转录水平,包括细胞外信号调节激酶2(ERK2)、肌细胞增强因子2a(MEF2a)、AMP活化蛋白激酶(AMPK)、热休克蛋白40(HSP40)、沉默调节蛋白1(SIRT1)、钙调神经磷酸酶Aα和磷酸酶及张力蛋白同源物(PTEN)。在第19周通过蛋白质印迹法在蛋白质水平研究FOXO3和磷酸化FOXO3的心脏表达。在RIHD中,每个时间点均存在舒张功能障碍。在照射心脏中,第3周出现室间隔肥厚,第19周出现伴有间质纤维化的明显LVH。在RIHD中,心脏miR-212在第3周和第19周过表达,而FOXO3仅在第19周在mRNA水平受到抑制。相比之下,在第19周,总的FOXO3蛋白水平并未因心脏照射而降低。在第19周,RIHD中其他选定的与肥厚相关的靶基因在mRNA水平未发生变化。RIHD中的LVH与心脏miR-212的过表达相关。然而,在RIHD中,miR-212似乎通过不依赖FOXO3的机制在LVH的发生中起作用。作为病理性重塑的核心调节因子,miR-212可能成为RIHD诱导的LVH和心力衰竭的新靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e5d/6646706/1fc992968ade/fonc-09-00598-g0001.jpg

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