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PDHA1 Gene Knockout In Human Esophageal Squamous Cancer Cells Resulted In Greater Warburg Effect And Aggressive Features In Vitro And In Vivo

机译:PDHA1基因敲除人食管鳞癌细胞中导致大的Warburg效应和体外侵略性特征

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Background: One of the remarkable metabolic characteristics of cancer cells is that they prefer glycolysis rather than oxidative phosphorylation (OXPHOS). Pyruvate dehydrogenase E1 alpha subunit (PDHA1) is an important prerequisite for OXPHOS. Our previous studies have shown that low level of PDHA1 protein expression in esophageal squamous cell cancer (ESCC) was correlated with poor prognosis. However, the effect of PDHA1 inhibition on metabolism and biological behavior of esophageal cancer cells remains unclear. Methods And Results: In this study, a KYSE450 PDHA1 knockout (KO) cell line of esophageal cancer was established by CRISPR/Cas9 technology. Then, the glycose metabolism, cell proliferation and migration abilities, chemotherapeutic tolerance and angiogenesis of the PDHA1 KO cells were investigated in vitro and in vivo. In the PDHA1 KO cells, the glycolysis and the consumption of glucose and glutamine were significantly enhanced, while the OXPHOS was significantly suppressed, implying Warburg effect in the PDHA1 KO cells. Furthermore, it was also proved in vitro experiments that the PDHA1 KO cell obtained proliferation advantage, as well as significantly greater chemotherapy tolerance and migration ability. Xenograft experiments discovered not only larger tumors but also increased angiogenesis in the PDHA1 KO cell group. Conclusion: Inhibition of PDHA1 gene expression in human ESCC leads to metabolic reprogramming of Warburg effect and increased malignancies. Targeting ESCC metabolic reprogramming may become a potential therapeutic target.
机译:背景:癌细胞的显着代谢特征之一是它们优选糖酵解而不是氧化磷酸化(毒物)。丙酮酸脱氢酶E1α亚基(PDHA1)是毒物的重要前提。我们以前的研究表明,食管鳞状细胞癌(ESCC)中的低水平PDHA1蛋白表达与预后差相关。然而,PDHA1抑制对食管癌细胞的代谢和生物行为的影响仍不清楚。方法和结果:在本研究中,通过CRISPR / CAS9技术建立了一种Kyse450 PDHA1敲除(KO)食管癌细胞系。然后,在体外和体内研究糖糖代谢,细胞增殖和迁移能力,化学治疗性耐受性,化学治疗性耐受性和PDHA1 KO细胞的血管生成。在PDHA1 KO细胞中,糖酵解和葡萄糖和谷氨酰胺的消耗得到显着提高,而毒药显着抑制,暗示在PDHA1 KO细胞中的Warburg作用。此外,还证明了PDHA1 KO细胞获得了增殖优势的体外实验,以及明显更大的化疗耐受性和迁移能力。异种移植实验不仅发现了较大的肿瘤,而且在PDHA1 KO细胞组中也增加了血管生成。结论:抑制人体ESCC中PDHA1基因表达导致Warburg效应的代谢重新编程和恶性肿瘤增加。靶向ESCC代谢重编程可能成为潜在的治疗目标。

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