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An investigation into anti-proliferative effects of microRNAs encoded by the miR-106a-363 cluster on human carcinoma cells and keratinocytes using microarray profiling of miRNA transcriptomes

机译:使用miRNA转录组的微阵列分析研究miR-106a-363​​簇编码的microRNA对人癌细胞和角质形成细胞的抗增殖作用

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摘要

Transfection of human oral squamous carcinoma cells (clone E10) with mimics for unexpressed miR-20b or miR-363-5p, encoded by the miR-106a-363 cluster (miR-20b, miR-106a, miR-363-3p, or miR-363-5p), caused 40–50% decrease in proliferation. Transfection with mimics for miR-18a or miR-92a, encoded by the miR-17-92 cluster (all members being expressed in E10 cells), had no effect on proliferation. In contrast, mimic for the sibling miRNA-19a yielded about 20% inhibition of proliferation. To investigate miRNA involvement profiling of miRNA transcriptomes were carried out using deoxyoligonucleotide microarrays. In transfectants for miR-19a, or miR-20b or miR-363-5p most differentially expressed miRNAs exhibited decreased expression, including some miRNAs encoded in paralogous miR-17-92—or miR-106b-25 cluster. Only in cells transfected with miR-19a mimic significantly increased expression of miR-20b observed—about 50-fold as judged by qRT-PCR. Further studies using qRT-PCR showed that transfection of E10 cells with mimic for miRNAs encoded by miR-17-92 - or miR-106a-363 - or the miR-106b-25 cluster confirmed selective effect on expression on sibling miRNAs. We conclude that high levels of miRNAs encoded by the miR-106a-363 cluster may contribute to inhibition of proliferation by decreasing expression of several sibling miRNAs encoded by miR-17-92 or by the miR-106b-25 cluster. The inhibition of proliferation observed in miR-19a-mimic transfectants is likely caused by the miR-19a-dependent increase in the levels of miR-20b and miR-106a. Bioinformatic analysis of differentially expressed miRNAs from miR-106a, miR-20b and miR-363-5p transfectants, but not miR-92a transfectants, yielded significant associations to “Cellular Growth and Proliferation” and “Cell Cycle.” Western blotting results showed that levels of affected proteins to differ between transfectants, suggesting that different anti-proliferative mechanisms may operate in these transfectants.
机译:用miR-106a-363​​簇(miR-20b,miR-106a,miR-363-3p或miR)编码的未表达miR-20b或miR-363-5p的模拟物转染人口腔鳞状细胞癌细胞(克隆E10) miR-363-5p),导致增殖减少40-50%。用miR-17-92簇编码的miR-18a或miR-92a模拟物转染(所有成员均在E10细胞中表达),对增殖没有影响。相反,对同胞miRNA-19a的模拟产生了约20%的增殖抑制。为了研究miRNA参与,使用脱氧寡核苷酸微阵列对miRNA转录组进行分析。在miR-19a,miR-20b或miR-363-5p的转染子中,大多数差异表达的miRNA表现出降低的表达,包括一些在旁系miR-17-92或miR-106b-25簇中编码的miRNA。仅在用miR-19a模拟物转染的细胞中,观察到的miR-20b的表达显着增加-通过qRT-PCR判断约为50倍。使用qRT-PCR进行的进一步研究表明,用miRim转染E10细胞的miR-17-92-或miR-106a-363​​-或miR-106b-25簇编码的miRNA证实了对同胞miRNA表达的选择性作用。我们得出的结论是,由miR-106a-363​​簇编码的高水平miRNA可能通过减少由miR-17-92或由miR-106b-25簇编码的同胞miRNA的表达来抑制增殖。在miR-19a模拟转染子中观察到的增殖抑制作用可能是由miR-19a依赖的miR-20b和miR-106a水平升高引起的。对来自miR-106a,miR-20b和miR-363-5p转染子而不是miR-92a转染子的差异表达miRNA的生物信息学分析产生了与“细胞生长和增殖”和“细胞周期”的显着关联。蛋白质印迹结果表明,转染子之间受影响蛋白质的水平有所不同,表明这些转染子中可能有不同的抗增殖机制。

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