Hsa-miR-590-5p与SMAD3转录物的相互作用支持其对TGFβ信号通路的调节作用

Meisam Jafarzadeh, B. Soltani
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Next, the direct interaction of miR-590-5p with the 3´-UTR sequence of SMAD3 transcript was investigated using the dual luciferase assay. Finally, flow cytometery was used to inves- tigate the effect of miR-590-5p overexpression on cell cycle progression in HeLa and SW480 cell lines. Results miR-590-5p was overexpressed in the SW480 cell line and its overexpression resulted in significant reduction of the SMAD3 protein level. Consistently, direct interaction of miR-590-5p with 3´-UTR sequence of SMAD3 was detected. Finally, miR-590-5p over- expression did not show a significant effect on cell cycle progression of Hela and SW480 cell lines. 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引用次数: 12

摘要

目的SMAD蛋白是参与细胞增殖、分化和迁移的tgf - β信号通路的核心分子。另一方面,已知hsa-miRNA-590-5p (miR-590-5p)对TGFβ信号通路受体具有负调控作用。由于RNAhybrid分析表明SMAD3是miR-590的真正靶基因,我们打算研究miR-590-5p对SMAD3转录的影响。材料与方法在本实验研究中,miR-590-5p在不同细胞系中过表达,并通过定量逆转录聚合酶链反应(RT-qPCR)检测其表达升高。Western blot分析miR-590-5p过表达对SMAD3蛋白水平的影响。接下来,使用双荧光素酶测定研究miR-590-5p与SMAD3转录物3´-UTR序列的直接相互作用。最后,利用流式细胞术研究miR-590-5p过表达对HeLa和SW480细胞系细胞周期进程的影响。结果miR-590-5p在SW480细胞系中过表达,其过表达导致SMAD3蛋白水平显著降低。一致地,miR-590-5p与SMAD3的3´-UTR序列直接相互作用被检测到。最后,miR-590-5p过表达对Hela和SW480细胞系的细胞周期进展没有显著影响。与先前关于miR-590对tgf - β受体负调控作用的报道一致,我们的数据表明miR-590-5p也通过下调SMAD3来减弱tgf - β信号通路。
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Hsa-miR-590-5p Interaction with SMAD3 Transcript Supports Its Regulatory Effect on The TGFβ Signaling Pathway
Objective SMAD proteins are the core players of the transforming growth factor-beta (TGFβ) signaling pathway, a pathway which is involved in cell proliferation, differentiation and migration. On the other hand, hsa-miRNA-590-5p (miR-590-5p) is known to have a negative regulatory effect on TGFβ signaling pathway receptors. Since, RNAhybrid analy- sis suggested SMAD3 as a bona fide target gene for miR-590, we intended to investigate the effect of miR-590-5p on SMAD3 transcription. Materials and Methods In this experimental study, miR-590-5p was overexpressed in different cell lines and its increased expression was detected through quantitative reverse transcription-polymerase chain reaction (RT-qPCR). Western blot analysis was then used to investigate the effect of miR-590-5p overexpression on SMAD3 protein level. Next, the direct interaction of miR-590-5p with the 3´-UTR sequence of SMAD3 transcript was investigated using the dual luciferase assay. Finally, flow cytometery was used to inves- tigate the effect of miR-590-5p overexpression on cell cycle progression in HeLa and SW480 cell lines. Results miR-590-5p was overexpressed in the SW480 cell line and its overexpression resulted in significant reduction of the SMAD3 protein level. Consistently, direct interaction of miR-590-5p with 3´-UTR sequence of SMAD3 was detected. Finally, miR-590-5p over- expression did not show a significant effect on cell cycle progression of Hela and SW480 cell lines. Conclusion Consistent with previous reports about the negative regulatory effect of miR-590 on TGFβ receptors, our data suggest that miR-590-5p also attenuates the TGFβ signaling pathway through down-regulation of SMAD3.
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