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MicroRNA-mediated regulation of Ubc9 expression in cancer cells.

机译:MicroRNA介导的癌细胞中Ubc9表达的调节。

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PURPOSE: As an E2-conjugating enzyme for sumoylation, Ubc9 plays a critical role in sumoylation-mediated cellular pathways, ultimately impacting cell growth and cancer development. The aim of this study was to investigate the regulation of Ubc9 in cancer cells. EXPERIMENTAL DESIGN: Immunohistochemistry and Western blot were used to determine Ubc9 expression in paraffin-embedded tumor tissue and frozen specimens of the matched tumors from the same patient, respectively. To establish the causal relationship between miR-30e and Ubc9 expression, we overexpressed miR-30e and then determined the resultant effects on Ubc9 expression. To determine whether miR-30e directly targets Ubc9, we did luciferase assays using luciferase reporters carrying the 3'-untranslated region (3'-UTR) of the Ubc9 gene. RESULTS: We found that Ubc9 is up-regulated in breast, head and neck, and lung cancer specimens. In addition, an examination of eight pairs of matched breast tumor specimens by Western blot analysis revealed that, on average, the level of Ubc9 is 5.7-fold higher in tumor than in the matched normal breast tissue. Of interest, we present evidence that Ubc9 is subjected to posttranscriptional regulation by microRNA, and the miR-30 family, such as miR-30e, negatively regulates Ubc9 expression. In contrast to Ubc9, miR-30e is underexpressed in tumors. Moreover, ectopic expression of miR-30e suppresses cell growth, which can be partially reversed by Ubc9. Finally, using luciferase-Ubc9-3'-UTR reporters, we show that Ubc9 is a direct target for miR-30e by interactions with the putative miR-30e binding sites. CONCLUSION: These results provide new insight into regulation of Ubc9 in cancer cells.
机译:用途:Ubc9作为一种Su2的E2偶联酶,在Suoylation介导的细胞途径中起关键作用,最终影响细胞生长和癌症发展。这项研究的目的是研究Ubc9在癌细胞中的调控。实验设计:免疫组织化学和Western印迹法分别测定石蜡包埋的肿瘤组织和来自同一患者的匹配肿瘤的冷冻标本中的Ubc9表达。为了建立miR-30e和Ubc9表达之间的因果关系,我们过表达了miR-30e,然后确定了其对Ubc9表达的影响。为了确定miR-30e是否直接靶向Ubc9,我们使用携带Ubc9基因3'-非翻译区(3'-UTR)的荧光素酶报告基因进行了荧光素酶测定。结果:我们发现Ubc9在乳腺癌,头颈癌和肺癌标本中上调。此外,通过蛋白质印迹分析对八对匹配的乳腺肿瘤标本进行的检查显示,肿瘤中Ubc9的水平平均比匹配的正常乳腺组织高5.7倍。有趣的是,我们提供的证据表明,Ubc9受到microRNA的转录后调控,而miR-30家族(如miR-30e)对Ubc9的表达负调控。与Ubc9相反,miR-30e在肿瘤中表达不足。此外,miR-30e的异位表达抑制细胞生长,而Ubc9可以部分逆转该生长。最后,使用荧光素酶-Ubc9-3'-UTR报道基因,我们显示Ubc9通过与假定的miR-30e结合位点相互作用而成为miR-30e的直接靶标。结论:这些结果提供了对癌细胞中Ubc9调控的新见解。

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