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The regulatory roles of miRNA and methylation on oncogene and tumor suppressor gene expression in pancreatic cancer cells

机译:miRNA和甲基化对胰腺癌细胞癌基因和抑癌基因表达的调控作用

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Carcinogenesis is driven by an accumulation of mutations and genetic lesions, which leads to activation of oncogenes and inactivation of tumor suppressor genes. However, the molecular mechanisms by which the expression of these genes was regulated in pancreatic cancer remains unclear. In this study, we investigated the regulatory effects of microRNA and methylation on the expression of k-ras, TP53 and PTEN genes in pancreatic cancer cells. The protein and miRNA levels were measured by Western blotting and Northern blotting, respectively. Xenograft pancreatic tumor models were established by inoculating BxPC-1, Capan-2, and Panc-1 tumor cells into athymic nuu mice. A disparate level of KRAS, p53, PTEN, Dnmts, and Dicer 1 proteins as well as let-7i, miR-22, miR-143, and miR-29b miRNA was observed in BxPC-1, Capan-2, and Panc-1 cells. Knockdown of Dicer 1 expression in BxPC-3 and Panc-1 cells resulted in significant increases in KRAS, p53, PTEN, and Dnmts protein levels and significant decreases in miR-22, miR-143, let-7i, and miR-29b expression. Knockdown of Dicer 1 expression in Capan-2 cells significantly increased p53 and PTEN expression, while significantly decreased miR-22 and miR-143 expression, but had no effects on PTEN, Dnmts, let-7i, and miR-29b expression. Knockdown of Dicer 1 expression significantly inhibited xenograft BxPC-3 tumor growth, but promoted xenograft Panc-1 tumor growth. In contrast, knockdown of Dicer 1 expression had no effect on xenograft Capan-2 tumor growth. Our study suggested that different pancreatic cancer cell lines exhibited obvious discrepancies in gene expression profiles, implying that different molecular mechanisms are involved in the carcinogenesis of pancreatic cancer subclasses. Our study highlighted the importance of personalized therapy.
机译:致癌作用是由突变和遗传损伤的积累驱动的,这导致癌基因的激活和肿瘤抑制基因的失活。但是,尚不清楚胰腺癌中调控这些基因表达的分子机制。在这项研究中,我们调查了microRNA和甲基化对胰腺癌细胞中k-ras,TP53和PTEN基因表达的调节作用。蛋白质和miRNA水平分别通过蛋白质印迹法和RNA印迹法测量。通过将BxPC-1,Capan-2和Panc-1肿瘤细胞接种到无胸腺nu / nu小鼠中,建立了异种移植胰腺肿瘤模型。在BxPC-1,Capan-2和Panc--中观察到不同水平的KRAS,p53,PTEN,Dnmts和Dicer 1蛋白以及let-7i,miR-22,miR-143和miR-29b miRNA水平。 1个单元格。减少BxPC-3和Panc-1细胞中Dicer 1表达的表达导致KRAS,p53,PTEN和Dnmts蛋白水平显着增加,miR-22,miR-143,let-7i和miR-29b表达显着降低。敲除Capan-2细胞中的Dicer 1表达可显着增加p53和PTEN表达,同时显着降低miR-22和miR-143表达,但对PTEN,Dnmts,let-7i和miR-29b表达无影响。减少Dicer 1表达可显着抑制异种移植BxPC-3肿瘤的生长,但促进异种移植Panc-1肿瘤的生长。相反,Dicer 1表达的敲低对异种移植Capan-2肿瘤的生长没有影响。我们的研究表明,不同的胰腺癌细胞系在基因表达谱中表现出明显的差异,这暗示着不同的分子机制参与了胰腺癌亚类的致癌作用。我们的研究突出了个性化治疗的重要性。

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