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MEX3C regulates lipid metabolism to promote bladder tumorigenesis through JNK pathway

机译:MEX3C通过JNK途径调节脂质代谢以促进膀胱肿瘤发生

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摘要

>Purpose: Bladder cancer (BC) is the most common urinary cancer among men with a high rate of deaths despite the improved medical technology and treatment. Recent evidence demonstrated that Mex-3 RNA-Binding Family Member C (MEX3C) plays various roles in different biological activities, but its molecular mechanisms underlying the pathogenesis of BC remain unclear yet. The aim of this research was to explore the expression patterns of MEX3C and its biological functions in human BC.>Materials and methods: The Cancer Genome Atlas (TCGA) and Oncomine databases were jointly used to analyze the expression of MEX3C in BC and its correlation with the clinicopathological features, while real-time PCR and immunohistochemistry analysis were used to verify the predicted results. Wound-healing assay, Matrigel invasion assay, BODIPY staining and Western blot analysis were used in a cell model to assess the effect of MEX3C on the lipid metabolism, invasion and migration of BC and its mechanisms.>Results: MEX3C was highly expressed in BC tissues and cells compared with their normal counterparts, and its expression was positively correlated with the clinicopathological features, especially the invasiveness phenotype. Overexpression of MEX3C accumulated lipid droplets and promoted cell adhesion, invasion and migration. We further demonstrated that MEX3C regulated lipid metabolism and promoted tumor development and progression through activation of JNK signaling and upregulating the JNK downstream protein levels of sterol regulatory element-binding proteins-1, fatty acid synthase and acetyl-CoA carboxylase-1.>Conclusion: Here we identified MEX3C as a new oncogene to promote bladder tumorigenesis by regulating lipid metabolism through Mitogen-activated protein kinase/c-Jun N-terminal kinase (MAPK/JNK) pathway. These findings suggest a new role of MEX3C in promoting BC tumorigenesis and provide a novel biomarker or molecular target for diagnosis or treating BC.
机译:>目的:尽管改善了医疗技术和治疗方法,膀胱癌(BC)是死亡率高的男性中最常见的泌尿道癌。最近的证据表明,Mex-3 RNA结合家族成员C(MEX3C)在不同的生物活性中起着不同的作用,但是其在BC发病机理中的分子机制仍不清楚。 >材料和方法:癌症基因组图谱(TCGA)和Oncomine数据库共同用于分析MEX3C在人BC中的表达模式及其生物学功能。 BC中的MEX3C及其与临床病理特征的相关性,同时使用实时PCR和免疫组织化学分析来验证预测结果。在细胞模型中使用伤口愈合测定,基质胶侵袭测定,BODIPY染色和蛋白质印迹分析来评估MEX3C对脂质代谢,BC侵袭和迁移的作用及其机制。>结果:与正常人相比,MEX3C在BC组织和细胞中高表达,其表达与临床病理特征,尤其是侵袭性表型呈正相关。 MEX3C的过表达会积聚脂质液滴,并促进细胞粘附,侵袭和迁移。我们进一步证明,MEX3C通过激活JNK信号传导和上调甾醇调节元件结合蛋白-1,脂肪酸合酶和乙酰辅酶A羧化酶-1的JNK下游蛋白水平来调节脂质代谢并促进肿瘤的发展和进展。>结论:在这里,我们确定MEX3C是通过丝裂素激活的蛋白激酶/ c-Jun N端激酶(MAPK / JNK)途径调节脂质代谢,从而促进膀胱肿瘤发生的新致癌基因。这些发现暗示了MEX3C在促进BC肿瘤发生中的新作用,并提供了用于诊断或治疗BC的新型生物标志物或分子靶标。

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