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MGP Promotes Colon Cancer Proliferation by Activating the NF-κB Pathway through Upregulation of the Calcium Signaling Pathway

机译:MGP通过上调钙信号通路来激活NF-κB通路从而促进结肠癌的增殖。

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摘要

Matrix Gla protein (MGP), an extracellular matrix protein, is mainly associated with the inhibition of calcification in skeleton, coronary artery, and kidney, and more recently it has also been implicated in cancer. However, the biological function of MGP inside cancer cells and its role in colon cancer (CC) remain largely unknown. MGP expression and its association with clinicopathologic characteristics in CC were analyzed by immunohistochemistry and verified by Gene Expression Omnibus (GEO) and The Cancer Genome Atlas (TCGA) datasets. The effects of MGP on CC cell proliferation were evaluated via knockdown and overexpression experiments . Mechanisms of MGP in CC were explored by western blots, quantitative real-time PCR, Fluo-3 AM staining, Rhod-2 AM staining, immunofluorescence, and other techniques. Our study confirmed that MGP was upregulated in different stages of CC and associated with a worse prognosis. MGP could enrich intracellular free Ca concentration and promote nuclear factor κB (NF-κB)/p65 phosphorylation, activating the expression of c-MYC, ICAM-1, and VEGFA. Furthermore, the reduction of intracellular free Ca concentration and the subsequent growth inhibition effect on CC cells induced by small interfering RNA targeting MGP (siMGP) could be rescued by a higher calcium concentration environment. Therefore, MGP promotes the growth and proliferation of CC cells by enriching intracellular calcium concentration and activating the NF-κB pathway, and it could serve as a potential prognostic biomarker in CC patients.
机译:基质Gla蛋白(MGP)是一种细胞外基质蛋白,主要与抑制骨骼,冠状动脉和肾脏中的钙化有关,最近,它也与癌症有关。但是,MGP在癌细胞内的生物学功能及其在结肠癌(CC)中的作用仍未知。通过免疫组织化学分析MGP在CC中的表达及其与临床病理特征的关系,并通过基因表达综合(GEO)和癌症基因组图谱(TCGA)数据集进行验证。 MGP对CC细胞增殖的影响通过敲除和过表达实验进行了评价。通过蛋白质印迹,定量实时PCR,Fluo-3 AM染色,Rhod-2 AM染色,免疫荧光和其他技术探索了CC中MGP的机制。我们的研究证实,MGP在CC的不同阶段上调,并且预后较差。 MGP可以丰富细胞内游离Ca浓度,并促进核因子κB(NF-κB)/ p65磷酸化,激活c-MYC,ICAM-1和VEGFA的表达。此外,通过较高的钙浓度环境可以挽救细胞内游离Ca浓度的降低以及随后由靶向MGP的小干扰RNA(siMGP)诱导的CC细胞生长抑制作用。因此,MGP通过丰富细胞内钙浓度并激活NF-κB途径来促进CC细胞的生长和增殖,可作为CC患者的预后生物标志物。

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