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miR-34a 对不同 p53 功能背景下人结直肠癌细胞株 DLD1 和 Lovo 及 17β-雌二醇调控的时钟和时钟控制基因表达的影响。

Effect of miR-34a on the expression of clock and clock-controlled genes in DLD1 and Lovo human cancer cells with different backgrounds with respect to p53 functionality and 17β-estradiol-mediated regulation.

机构信息

Faculty of Natural Sciences, Department of Animal Physiology and Ethology, Comenius University, Bratislava, Slovak Republic.

出版信息

PLoS One. 2023 Oct 13;18(10):e0292880. doi: 10.1371/journal.pone.0292880. eCollection 2023.

Abstract

The small non-coding RNA miR-34a is a p53-regulated miRNA that acts as a tumour suppressor of colorectal cancer (CRC). Oncogenesis is also negatively influenced by deregulation of the circadian system in many types of tumours with various genetic backgrounds. As the clock gene per2 was recently recognized as one of the target genes of miR-34a, we focused on the miR-34a-mediated influence on the circadian oscillator in CRC cell lines DLD1 and LoVo, which differ in their p53 status. Previously, a sex-dependent association between the expression of per2 and that of miR-34a was demonstrated in CRC patients. Therefore, we also investigated the effect of 17β-estradiol (E2) on miR-34a oncostatic functions. miR-34a mimic caused a pronounced inhibition of per2 expression in both cell lines. Moreover, miR-34a mimic significantly inhibited bmal1 expression in LoVo and rev-erbα expression in DLD1 cells and induced clock gene expression in both cell lines. miR-34a mimic caused a pronounced decrease in sirt1 and cyclin D1 expression, which may be related to the inhibition of proliferation observed after mir-34a administration in DLD1 cells. E2 administration inhibited the migration and proliferation of DLD1 cells. E2 and miR-34a, when administered simultaneously, did not potentiate each other's effects. To conclude, miR-34a strongly influences the expression of components of the circadian oscillator without respect to p53 status and exerts its oncostatic effects via inhibition of sirt1 and cyclin D1 mRNA expression. E2 administration inhibits the growth of DLD1 cells; however, this effect seems to be independent of miR-34a-mediated action. With respect to the possible use of miR-34a in cancer treatment, clock genes can be considered as off-target genes, as changes in their expression induced by miR-34a treatment do not contribute to the oncostatic functions of miR-34a. Possible ambiguous oncogenic characteristics should be taken into consideration in future clinical studies focused on miR-34a.

摘要

微小非编码 RNA miR-34a 是一种受 p53 调控的 miRNA,作为结直肠癌(CRC)的肿瘤抑制因子发挥作用。许多具有不同遗传背景的肿瘤类型中,生物钟系统的失调也会对致癌作用产生负面影响。由于时钟基因 per2 最近被认为是 miR-34a 的靶基因之一,我们专注于 miR-34a 对 DLD1 和 LoVo 这两种 CRC 细胞系中昼夜节律振荡器的调节作用,这两种细胞系的 p53 状态不同。先前,在 CRC 患者中已经证明了 per2 的表达与 miR-34a 的表达之间存在性别依赖性关联。因此,我们还研究了 17β-雌二醇(E2)对 miR-34a 肿瘤抑制功能的影响。miR-34a 模拟物在两种细胞系中均显著抑制 per2 的表达。此外,miR-34a 模拟物在 LoVo 细胞中显著抑制 bmal1 的表达,在 DLD1 细胞中抑制 rev-erbα 的表达,并诱导两种细胞系中的时钟基因表达。miR-34a 模拟物显著降低了 sirt1 和 cyclin D1 的表达,这可能与 miR-34a 处理后在 DLD1 细胞中观察到的增殖抑制有关。E2 给药抑制了 DLD1 细胞的迁移和增殖。E2 和 miR-34a 同时给药时,不会增强彼此的作用。总之,miR-34a 强烈影响昼夜节律振荡器组件的表达,而不考虑 p53 状态,并通过抑制 sirt1 和 cyclin D1 mRNA 表达发挥其肿瘤抑制作用。E2 给药抑制了 DLD1 细胞的生长;然而,这种作用似乎独立于 miR-34a 介导的作用。就 miR-34a 在癌症治疗中的可能应用而言,时钟基因可以被视为脱靶基因,因为 miR-34a 处理诱导的其表达变化并不有助于 miR-34a 的肿瘤抑制功能。在未来专注于 miR-34a 的临床研究中,应考虑其可能存在的模糊致癌特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31ba/10575541/d88d8e4322cd/pone.0292880.g001.jpg

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