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首页> 外文期刊>American Journal of Cancer Research >NEK2 promotes proliferation, migration and tumor growth of gastric cancer cells via regulating KDM5B/H3K4me3
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NEK2 promotes proliferation, migration and tumor growth of gastric cancer cells via regulating KDM5B/H3K4me3

机译:通过调节KDM5B / H3K4ME3,NEK2促进胃癌细胞的增殖,迁移和肿瘤生长

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The mechanisms of how Never in Mitosis (NIMA) Related Kinase 2 (NEK2) coordinates altered signaling to malignant gastric cancer (GC) transformation remain unclear. Overexpression of NEK2 and KDM5B were observed in GC cell lines with high sensitivity to NEK2 inhibitors. Here we investigated the biological behaviors of NEK2 and the possible mechanisms of regulative effects of NEK2 on KDM5B in GC cell lines both in vitro and in vivo . The results showed that NEK2 and KDM5B were highly expressed in most of the 10 GC cell lines. NEK2 knockdown in MGC-803 cells led to suppression of cell proliferation and migration in vitro and tumor growth in vivo , while NEK2 overexpression in BGC-823 cells exhibited the reverse biological effect. When NEK2 was inhibited by NEK2 inhibitors or shNEK2, cellular KDM5B level decreased and H3K4me3 level increased, while overexpression of NEK2 resulted in enhanced KDM5B expression and decreased H3K4me3 level. Though direct interaction between NEK2 and KDM5B was excluded, NEK2 could regulate KDM5B/H3K4me3 expression through β-catenin/Myc both in vitro and in vivo , which was double confirmed by c-myc and KDM5B inhibitor experiments. Taken together, our study showed that NEK2 was highly expressed in GC cell lines and related to promoting cell proliferation, migration and tumor growth. A NEK2/β-catenin/Myc/KDM5B/H3K4me3 signaling pathway may contribute to the important carcinogenic role of NEK2-mediated malignant behaviors in GC.
机译:无丝分裂(NIMA)相关激酶2(NEK2)坐标的机制如何改变信号传导至恶性胃癌(GC)转化仍然不清楚。在GC细胞系中观察到NEK2和KDM5B的过度表达,对NEK2抑制剂具有高敏感性。在这里,我们调查了NEK2的生物学行为以及NEK2在体外和体内GC细胞系中KDM5B的调节作用的可能机制。结果表明,NEK2和KDM5B在10GC细胞系中大多数高度表达。 MGC-803细胞中NEK2敲低导致体内体外细胞增殖和迁移和肿瘤生长,而BGC-823细胞中的NEK2过表达表现出逆向生物效应。当NEK2抑制剂或SHNEK2抑制NEK2时,细胞KDM5B水平降低,H3K4ME3水平增加,而NEK2的过度表达导致kdm5b表达增强并降低H3K4ME3水平。尽管不包括NEK2和KDM5B之间的直接相互作用,但NEK2可以通过体外和体内调节KDM5B / H3K4ME3通过β-CAT键/ MYC进行β-连环蛋白/ MYC,其被C-MYC和KDM5B抑制剂实验重复证实。我们的研究表明,NEK2在GC细胞系中高度表达并与促进细胞增殖,迁移和肿瘤生长有关。 NEK2 /β-CAT键/ MYC / KDM5B / H3K4ME3信号通路可能有助于NEK2介导GC中NEK2介导的恶性行为的重要致癌作用。

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