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Histone methyltransferase SET8 is regulated by miR-192/215 and induces oncogene-induced senescence via p53-dependent DNA damage in human gastric carcinoma cells

机译:组蛋白甲基转移酶Set8由MiR-192/215调节,并通过P53依赖性DNA损伤诱导癌基因诱导的衰老,在人胃癌细胞中

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Gastric cancer (GC) is the most common cancer throughout the world. Despite advances of the treatments, detailed oncogenic mechanisms are largely unknown. In our previous study, we investigated microRNA (miR) expression profiles in human GC using miR microarrays. We found miR-192/215 were upregulated in GC tissues. Then gene microarray was implemented to discover the targets of miR-192/215. We compared the expression profile of BGC823 cells transfected with miR-192/215 inhibitors, and HFE145 cells transfected with miR-192/-215 mimics, respectively. SET8 was identified as a proposed target based on the expression change of more than twofold. SET8 belongs to the SET domain-containing methyltransferase family and specifically catalyzes monomethylation of H4K20me. It is involved in diverse functions in tumorigenesis and metastasis. Therefore, we focused on the contributions of miR-192/215/SET8 axis to the development of GC. In this study, we observe that functionally, SET8 regulated by miR-192/215 is involved in GC-related biological activities. SET8 is also found to trigger oncogene-induced senescence (OIS) in GC in vivo and in vitro, which is dependent on the DDR (DNA damage response) and p53. Our findings reveal that SET8 functions as a negative regulator of metastasis via the OIS-signaling pathway. Taken together, we investigated the functional significance, molecular mechanisms, and clinical impact of miR-192/215/SET8/p53 in GC.
机译:胃癌(GC)是全世界最常见的癌症。尽管治疗进展,但详细的致癌机制在很大程度上是未知的。在我们以前的研究中,我们使用MIR微阵列研究了人体GC中的MicroRNA(MIR)表达谱。我们发现MiR-192/215在GC组织中上调。然后实施基因微阵列以发现miR-192/215的目标。将与MiR-192/215抑制剂转染的BGC823细胞的表达谱进行比较,分别与MiR-192 / -215模拟物转染的HFE145细胞。基于表达式的表达变化超过双重,Set8被识别为提出的目标。 SET8属于含有型甲基转移酶系列的甲基转移酶系列,并且特别催化H4K20ME的单甲基化。它涉及肿瘤鉴定和转移中的不同功能。因此,我们专注于MiR-192/215 / Set8轴到GC的开发的贡献。在这项研究中,我们观察到功能上,MIR-192/215调节的Set8参与了与GC相关的生物学活性。还发现Set8也发现在体内和体外触发GC中的癌基因诱导的衰老(OIS),其取决于DDR(DNA损伤反应)和P53。我们的研究结果表明,SET8通过OIS信号通路作为转移的负调节器。我们一起研究了MIR-192/215 / SET8 / P53在GC中的功能意义,分子机制和临床影响。

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