MicroRNA-184通过靶向CDC25A、CARM1和LASP1负性调节角膜上皮创面愈合。

Eye and vision (London, England) Pub Date : 2020-08-01 eCollection Date: 2020-01-01 DOI:10.1186/s40662-020-00202-6
Qiongjie Cao, Weiwei Xu, Weiwei Chen, Dewei Peng, Qi Liu, Jing Dong, Peter S Reinach, Dongsheng Yan
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引用次数: 12

摘要

背景:MicroRNAs (miRNAs)在角膜发育和功能稳态中起着关键作用。我们之前的研究发现miR-184是角膜上皮中表达最高的mirna之一。尽管其表达水平在角膜上皮伤口愈合(CEWH)过程中急剧下降,但其在介导角膜上皮更新中的确切作用尚不清楚。本研究旨在揭示miR-184调控CEWH的功能和机制。方法:定量RT-PCR分析小鼠CEWH过程中miR-184的表达谱。在体内异位注射miR-184确定其对这一过程的影响。我们分别使用MTS、流式细胞术和伤口愈合实验评估了miR-184及其靶基因对人角膜上皮细胞(HCECs)增殖、细胞周期和迁移的影响。生物信息学分析,结合基因微阵列分析和基于细胞的荧光素酶测定,确定了miR-184与CEWH相关的基因靶点。结果:小鼠CEWH期间MiR-184明显下调。在小鼠中,异位miR-184过表达延缓了这一过程。此外,将miR-184转染到HCECs中可显著抑制细胞增殖、细胞周期进展和细胞迁移。MiR-184直接靶向CDC25A、CARM1和LASP1,下调它们在HCECs中的表达。CARM1下调抑制HCEC增殖和迁移,而LASP1基因表达降低仅抑制迁移。结论:我们的研究结果表明,miR-184通过靶向CDC25A、CARM1和LASP1抑制角膜上皮细胞的增殖和迁移,表明它在CEWH期间起到负调节作用。因此,确定抑制miR-184表达水平的策略有可能促进CEWH。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

MicroRNA-184 negatively regulates corneal epithelial wound healing via targeting <i>CDC25A</i>, <i>CARM1</i>, and <i>LASP1</i>.

MicroRNA-184 negatively regulates corneal epithelial wound healing via targeting <i>CDC25A</i>, <i>CARM1</i>, and <i>LASP1</i>.

MicroRNA-184 negatively regulates corneal epithelial wound healing via targeting <i>CDC25A</i>, <i>CARM1</i>, and <i>LASP1</i>.

MicroRNA-184 negatively regulates corneal epithelial wound healing via targeting CDC25A, CARM1, and LASP1.

Background: MicroRNAs (miRNAs) play critical roles in corneal development and functional homeostasis. Our previous study identified miR-184 as one of the most highly expressed miRNAs in the corneal epithelium. Even though its expression level plummeted dramatically during corneal epithelial wound healing (CEWH), its precise role in mediating corneal epithelial renewal was unresolved. The present study aimed to reveal the function and mechanism of miR-184 in regulating CEWH.

Methods: Quantitative RT-PCR analysis characterized the miR-184 expression pattern during CEWH in mice. Ectopic miR-184 injection determined its effect on this process in vivo. We evaluated the effects of miR-184 and its target genes on the proliferation, cell cycle, and migration of human corneal epithelial cells (HCECs) using MTS, flow cytometry, and wound-healing assay, respectively. Bioinformatic analysis, in conjunction with gene microarray analysis and cell-based luciferase assays, pinpointed gene targets of miR-184 contributing to CEWH.

Results: MiR-184 underwent marked downregulation during mouse CEWH. Ectopic miR-184 overexpression delayed this process in mice. Furthermore, miR-184 transfection into HCECs significantly inhibited cell proliferation, cell cycle progression, and cell migration. MiR-184 directly targeted CDC25A, CARM1, and LASP1, and downregulated their expression in HCECs. CARM1 downregulation inhibited both HCEC proliferation and migration, whereas a decrease in LASP1 gene expression only inhibited migration.

Conclusions: Our results demonstrate that miR-184 inhibits corneal epithelial cell proliferation and migration via targeting CDC25A, CARM1, and LASP1, suggesting it acts as a negative modulator during CEWH. Therefore, identifying strategies to suppress miR-184 expression levels has the potential to promote CEWH.

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