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CircCDR1as upregulates autophagy under hypoxia to promote tumor cell survival via AKT/ERK½/mTOR signaling pathways in oral squamous cell carcinomas

机译:CircCDR1as在缺氧条件下上调自噬以通过口腔鳞状细胞癌中的AKT / ERK1 / 2 / mTOR信号通路促进肿瘤细胞存活

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摘要

Autophagy, as an important non-selective degradation mechanism, could promote tumor initiation and progression by maintaining cellular homeostasis and the cell metabolism as well as cell viability. CircCDR1as has been shown to function as an oncogene in cancer progression, however, it remains largely unknown as to how autophagy is regulated by circCDR1as in oral squamous cell carcinoma (OSCC). In this study, we validated the functional roles of circCDR1as in regulation of autophagy in OSCC cells and further investigated how circCDR1as contributed to cell survival via up-regulating autophagy under a hypoxic microenvironment by using combination of human tissue model, in vitro cell experiments and in vivo mice model. We found that hypoxia promoted the expression level of circCDR1as in OSCC cells and elevated autophagy. In addition, circCDR1as further increased hypoxia-mediated autophagy by targeting multiple key regulators of autophagy. We revealed that circCDR1as enhanced autophagy in OSCC cells via inhibition of rapamycin (mTOR) activity and upregulation of AKT and ERK½ pathways. Overexpression of circCDR1as enhanced OSCC cells viability, endoplasmic reticulum (ER) stress, and inhibited cell apoptosis under a hypoxic microenvironment. Moreover, circCDR1as promoted autophagy in OSCC cells by sponging miR-671-5p. Collectively, these results revealed that high expression of circCDR1as enhanced the viability of OSCC cells under a hypoxic microenvironment by promoting autophagy, suggesting a novel treatment strategy involving circCDR1as and the inhibition of autophagy in OSCC cells.
机译:自噬是一种重要的非选择性降解机制,可以通过维持细胞稳态,细胞代谢以及细胞活力来促进肿瘤的发生和发展。 CircCDR1as已被证明在癌症进展中起癌基因的作用,但是,在口腔鳞状细胞癌(OSCC)中,circCDR1as如何调节自噬尚不清楚。在这项研究中,我们验证了circCDR1as在OSCC细胞自噬调控中的功能作用,并进一步研究了缺氧微环境下circCDR1as如何通过上调自噬而促进细胞存活,方法是结合人体组织模型,体外细胞实验和体内小鼠模型。我们发现缺氧促进了OSCC细胞中circCDR1as的表达水平和自噬的增加。此外,circCDR1as通过靶向自噬的多个关键调控因子进一步增加了缺氧介导的自噬。我们发现circCDR1as通过抑制雷帕霉素(mTOR)活性以及上调AKT和ERK1 / 2途径而增强了OSCC细胞的自噬。 circCDR1的过表达增强了缺氧微环境下OSCC细胞的活力,内质网(ER)应激并抑制了细胞凋亡。此外,circCDR1as通过海绵miR-671-5p促进OSCC细胞自噬。总的来说,这些结果表明,在低氧微环境下,circCDR1as的高表达通过促进自噬增强了OSCC细胞的生存能力,这表明了一种涉及circCDR1as和抑制OSCC细胞自噬的新治疗策略。

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