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Deregulation between miR-29b/c and DNMT3A Is Associated with Epigenetic Silencing of the CDH1 Gene Affecting Cell Migration and Invasion in Gastric Cancer

机译:miR-29b / c和DNMT3A之间的失调与CDH1基因的表观遗传沉默相关影响胃癌中的细胞迁移和侵袭。

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摘要

The de-regulation of the miR-29 family and DNA methyltransferase 3A (DNMT3A) is associated with gastric cancer (GC). While increasing evidence indicates miR-29b/c could regulate DNA methylation by targeting DNMT3A, it is currently unknown if epigenetic silencing of miR-29b/c via promoter hypermethylation in GC is caused by abnormal expression of DNMT3A. Thus, we aimed to evaluate whether cross-talk regulation exists between miR-29b/c and DNMT3A and whether it is associated with a malignant phenotype in GC. First, wound healing and Transwell assays revealed that miR-29b/c suppresses tumor metastasis in GC. A luciferase reporter assay demonstrated that DNMT3A is a direct target of miR-29b/c. We used bisulfite genomic sequencing to analyze the DNA methylation status of miR-29b/c. The percentage of methylated CpGs was significantly decreased in DNMT3A-depleted cells compared to the controls. Furthermore, the involvement of DNMT3A in promoting GC cell migration was associated with the promoter methylation-mediated repression of CDH1. In 50 paired clinical GC tissue specimens, decreased miR-29b/c was significantly correlated with the degree of differentiation and invasion of the cells and was negatively correlated with DNMT3A expression. Together, our preliminary results suggest that the following process may be involved in GC tumorigenesis. miR-29b/c suppresses the downstream gene DNMT3A, and in turn, miR-29b/c is suppressed by DNMT3A in a DNA methylation-dependent manner. The de-regulation of both of miR-29b/c and DNMT3A leads to the epigenetic silencing of CDH1 and contributes to the metastasis phenotype in GC. This finding reveals that DNA methylation-associated silencing of miR-29b/c is critical for GC development and thus may be a therapeutic target.
机译:miR-29家族和DNA甲基转移酶3A(DNMT3A)的失调与胃癌(GC)有关。尽管越来越多的证据表明miR-29b / c可以通过靶向DNMT3A来调节DNA甲基化,但目前尚不清楚是否通过DNMT3A的异常表达引起了GC中启动子高甲基化对miR-29b / c的表观遗传沉默。因此,我们旨在评估miR-29b / c与DNMT3A之间是否存在串扰调控,以及它是否与GC中的恶性表型有关。首先,伤口愈合和Transwell分析表明,miR-29b / c抑制了GC中的肿瘤转移。荧光素酶报告基因测定表明,DNMT3A是miR-29b / c的直接靶标。我们使用亚硫酸氢盐基因组测序来分析miR-29b / c的DNA甲基化状态。与对照组相比,DNMT3A缺失的细胞中甲基化CpGs的百分比显着降低。此外,DNMT3A参与促进GC细胞迁移与启动子甲基化介导的CDH1抑制有关。在50个配对的临床GC组织标本中,miR-29b / c的降低与细胞的分化和侵袭程度显着相关,而与DNMT3A表达则呈负相关。在一起,我们的初步结果表明,GC肿瘤的发生可能涉及以下过程。 miR-29b / c抑制下游基因DNMT3A,进而DNMT3A以DNA甲基化依赖性方式抑制miR-29b / c。 miR-29b / c和DNMT3A的失调导致CDH1的表观遗传沉默,并有助于GC中的转移表型。这一发现表明,miR-29b / c的DNA甲基化相关沉默对于GC的发展至关重要,因此可能是治疗目标。

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