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首页> 外文期刊>Journal of experimental & clinical cancer research : >Upregulation of lactate-inducible snail protein suppresses oncogene-mediated senescence through p16 INK4a inactivation
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Upregulation of lactate-inducible snail protein suppresses oncogene-mediated senescence through p16 INK4a inactivation

机译:乳酸诱导的蜗牛蛋白上调通过p16 INK4a失活抑制癌基因介导的衰老

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The preferential use of aerobic glycolysis by tumor cells lead to high accumulation of lactate in tumor microenvironment. Clinical evidence has linked elevated lactate concentration with cancer outcomes. However, the role and molecular mechanisms of lactate in cellular senescence and tumor progression remain elusive. The function of Snail in lactate-induced EMT in lung cancer cells was explored by wound healing assay and cell invasion assay. The qRT-PCR and dual luciferase reporter assay were performed to investigate how lactate regulates Snail expression. The level of TGF-β1 in culture supernatant of cells was measured by ELISA for its correlation with extracellular levels of lactate. Ras activity assay and SA-β-gal activity assay were established to determine the effect of lactate on oncogene-induced senescence in human lung epithelial cells. ChIP assays were conducted to determine the binding of snail to p16INK4a promoter. Two TCGA data sets (TCGA-LUAD and TCGA-LUSC) were used to explore the correlations between SNAI1 and CDKN2A expression. In this study, we showed the invasive and migratory potential of lung cancer cells was significantly enhanced by lactate and was directly linked to snail activity. We also demonstrated that extracellular acidification itself is a direct cause of the increased snail expression and physiologically coupled to LDHA-dependent conversion of pyruvate to lactate. Mechanistically, lactate exerts its central function in induction of snail and EMT by directly remodeling ECM and releasing activated TGF-β1. We also demonstrated that Snail help premalignant cells to escape the oncogene-induced senescence by directly targeting and inhibiting p16INK4a expression. Our study extends the understanding of EMT in tumorigenesis by uncovering the role of snail in cellular senescence. This study also reveals lactate may be a potent tumor-promoting factor and provides the basis for the development of lactate-targeted therapy.
机译:肿瘤细胞优先使用有氧糖酵解会导致肿瘤微环境中乳酸的大量积累。临床证据表明乳酸浓度升高与癌症结果相关。然而,乳酸在细胞衰老和肿瘤进展中的作用和分子机制仍然难以捉摸。通过伤口愈合试验和细胞侵袭试验探讨了蜗牛在乳酸诱导的肺癌EMT中的作用。进行了qRT-PCR和双重荧光素酶报告基因测定,以研究乳酸如何调节Snail表达。通过ELISA测量细胞培养上清液中TGF-β1的水平与细胞外乳酸水平的相关性。建立了Ras活性测定法和SA-β-gal活性测定法,以确定乳酸对人肺上皮细胞中癌基因诱导的衰老的影响。进行ChIP测定以确定蜗牛与p16INK4a启动子的结合。使用两个TCGA数据集(TCGA-LUAD和TCGA-LUSC)来探索SNAI1和CDKN2A表达之间的相关性。在这项研究中,我们显示乳酸能显着增强肺癌细胞的侵袭和迁移潜能,并且与蜗牛的活动直接相关。我们还证明了细胞外酸化本身是蜗牛表达增加的直接原因,并且在生理上与LDHA依赖的丙酮酸转化为乳酸有关。从机理上讲,乳酸通过直接重塑ECM并释放活化的TGF-β1发挥其在蜗牛和EMT诱导中的核心功能。我们还证明了Snail通过直接靶向和抑制p16INK4a表达来帮助癌前细胞逃脱癌基因诱导的衰老。我们的研究通过揭示蜗牛在细胞衰老中的作用,扩展了EMT在肿瘤发生中的理解。这项研究还揭示了乳酸可能是有效的肿瘤促进因子,并为乳酸靶向治疗的发展提供了基础。

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