首页> 外文期刊>International journal of biological sciences >MiR-467a is Upregulated in Radiation-Induced Mouse Thymic Lymphomas and Regulates Apoptosis by Targeting Fas and Bax
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MiR-467a is Upregulated in Radiation-Induced Mouse Thymic Lymphomas and Regulates Apoptosis by Targeting Fas and Bax

机译:MiR-467a在辐射诱导的小鼠胸腺淋巴瘤中上调,并通过靶向Fas和Bax调节细胞凋亡。

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It has been reported dysregulation of certain microRNAs (miRNAs / miRs) is involved in tumorigenesis. However, the miRNAs associated with radiocarcinogenesis remain undefined. In this study, we validated the upregulation of miR-467a in radiation-induced mouse thymic lymphoma tissues. Then, we investigated whether miR-467a functions as an oncogenic miRNA in thymic lymphoma cells. For this purpose, we assessed the biological effect of miR-467a on thymic lymphoma cells. Using miRNA microarray, we found four miRNAs (miR-467a, miR-762, miR-455 and miR-714) were among the most upregulated (>4-fold) miRNAs in tumor tissues. Bioinformatics prediction suggests miR-467a may potentially regulate apoptosis pathway via targeting Fas and Bax. Consistently, in miR-467a-transfected cells, both proliferation and colony formation ability were significantly increased with decrease of apoptosis rate, while, in miR-467a-knockdown cells, proliferation was suppressed with increase of apoptosis rate, indicating that miR-467a may be involved in the regulation of apoptosis. Furthermore, miR-467a-knockdown resulted in smaller tumors and better prognosis in an in vivo tumor-transplanted model. To explain the mechanism of apoptosis suppression by miR-467a, we explore the expression of candidate target genes (Fas and Bax) in miR-467a-transfected relative to negative control transfected cells using flow cytometry and immunoblotting. Fas and Bax were commonly downregulated in miR-467a-transfected EL4 and NIH3T3 cells, and all of the genes harbored miR-467a target sequences in the 3'UTR of their mRNA. Fas and Bax were actually downregulated in radiation-induced thymic lymphoma tissues, and therefore both were identified as possible targets of miR-467a in thymic lymphoma. To ascertain whether downregulation of Fas and / or Bax is involved in apoptosis suppression by miR-467a, we transfected vectors expressing Fas and Bax into miR-467a-upregulated EL4 cells. Then we found that both Fas- and Bax-overexpression decreased cell viability with increase of apoptosis rate, indicating that downregulation of Fas and Bax may be at least partly responsible for apoptosis suppression by miR-467a. These data suggest that miR-467a may have oncogenic functions in radiation-induced thymic lymphoma cells and that its increased expression may confer a growth advantage on tumor cells via aberrant expression of Fas and Bax.
机译:据报道某些微RNA(miRNA / miRs)的失调与肿瘤发生有关。然而,与放射致癌作用有关的miRNA仍未确定。在这项研究中,我们验证了辐射诱导的小鼠胸腺淋巴瘤组织中miR-467a的上调。然后,我们调查了miR-467a在胸腺淋巴瘤细胞中是否作为致癌miRNA。为此,我们评估了miR-467a对胸腺淋巴瘤细胞的生物学作用。使用miRNA芯片,我们发现四个miRNA(miR-467a,miR-762,miR-455和miR-714)是肿瘤组织中表达最高(> 4倍)的miRNA之一。生物信息学预测表明,miR-467a可能通过靶向Fas和Bax调控凋亡途径。一致地,在miR-467a转染的细胞中,增殖和集落形成能力都随着凋亡率的降低而显着增加,而在miR-467a敲除的细胞中,增殖随着凋亡率的升高而被抑制,这表明miR-467a可能参与细胞凋亡的调节。此外,在体内肿瘤移植模型中,miR-467a基因敲低可导致更小的肿瘤和更好的预后。为了解释miR-467a抑制凋亡的机制,我们使用流式细胞仪和免疫印迹技术探索了相对于阴性对照转染细胞,miR-467a转染的候选靶基因(Fas和Bax)的表达。 Fas和Bax通常在miR-467a转染的EL4和NIH3T3细胞中被下调,并且所有基因在其mRNA的3'UTR中都带有miR-467a靶序列。 Fas和Bax实际上在辐射诱导的胸腺淋巴瘤组织中被下调,因此,两者均被确定为胸腺淋巴瘤中miR-467a的可能靶标。为了确定Fas和/或Bax的下调是否与miR-467a的凋亡抑制有关,我们将表达Fas和Bax的载体转染了miR-467a上调的EL4细胞。然后,我们发现Fas和Bax过表达均会随着细胞凋亡率的增加而降低细胞活力,这表明Fas和Bax的下调可能至少部分负责miR-467a的细胞凋亡抑制。这些数据表明,miR-467a在辐射诱导的胸腺淋巴瘤细胞中可能具有致癌作用,其增加的表达可能通过Fas和Bax的异常表达而赋予肿瘤细胞生长优势。

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