WTAP通过上调苹果酸促进高级别浆液性卵巢癌的铂耐药:来自液相色谱和质谱分析的见解

IF 5.3 3区 医学 Q1 CELL BIOLOGY
Ming Wang, Shuiqing Xu, Jianqing Xu, Jiahui Wei, Yumei Wu
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引用次数: 0

摘要

高级别浆液性癌(HGSC)是卵巢癌中最常见和最具侵袭性的亚型。在这项研究中,我们利用液相色谱和质谱分析来研究HGSC的代谢变化。在鉴定的1353种代谢物中,140种代谢物在HGSC与正常卵巢组织之间存在显著差异。KEGG途径富集分析揭示了23条不同的代谢途径,包括丙氨酸/天冬氨酸/谷氨酸代谢、丙酮酸代谢、氨基酸生物合成和柠檬酸循环等。在显著分化的代谢物中,在柠檬酸循环和糖酵解中发现了苹果酸、富马酸和磷酸烯醇丙酮酸。进一步分析,在HGSC与正常对照之间发现22个糖代谢差异表达基因(DEGs)。22例deg的多变量Cox分析显示,ME1、ALDOC和RANBP2与TCGA队列的总生存相关。生物信息学分析表明,WTAP与ME1的表达密切相关,ME1是一种限速酶,调节苹果酸在线粒体和细胞质中的穿梭。在A2780和OVCAR-3细胞中敲低WTAP后,苹果酸酶活性降低,导致苹果酸和柠檬酸积累,丙酮酸和乳酸减少。在A2780和OVCAR-3细胞中,敲除WTAP后,对铂的IC50升高。敲低WTAP后,卵巢细胞系中ME1表达下调,m6A修饰下调。在SRAMP网站上,ME1 mRNA的5 '-UTR 177和970处有两个m6A得分较高的结合位点。WTAP通过上调ME1的表达,调控有氧糖酵解向OXPHOS的转化,从而促进对铂的抗性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
WTAP contributes to platinum resistance in high-grade serous ovarian cancer by up-regulating malic acid: insights from liquid chromatography and mass spectrometry analysis.

High-grade serous cancer (HGSC) is the most prevalent and aggressive subtype of ovarian cancer. In this study, we utilized liquid chromatography and mass spectrometry analysis to investigate metabolic alterations in HGSC. Among the 1353 metabolites identified, 140 were significantly differed between HGSC and normal ovarian tissue. KEGG pathway enrichment analysis revealed 23 distinct metabolic pathways, including the alanine/aspartate/glutamate metabolism, pyruvate metabolism, biosynthesis of amino acids, and citrate cycle, etc. Of the significantly differentiated metabolites, malic acid, fumarate, and phosphoenolpyruvate were found in the citrate cycle and glycolysis. In further analysis, 22 differentially expressed genes (DEGs) of glucose metabolism were found between HGSC and normal controls. Multivariate Cox analysis of the 22 DEGs showed that ME1, ALDOC, and RANBP2 were associated with overall survival in the TCGA cohort.Bioinformatic analysis indicated WTAP is strongly correlated to the expression of ME1, which is a rate-limiting enzyme that regulates the shuttle of malic acid in mitochondria and cytoplasm. After the knockdown of WTAP in A2780 and OVCAR-3 cells, the activity of the malic enzyme decreased which led to the accumulation of malic acid and citric acid, and the reduction of pyruvate and lactic acid. In A2780 and OVCAR-3 cells, the IC50 to platinum was increased after the knockdown of WTAP. After the knockdown of WTAP, the expression of ME1 was down-regulated and the m6A modification was down-regulated in ovarian cell lines. On the SRAMP website, there were two binding sites with high m6A scores at the 5 '-UTR 177 and 970 of ME1 mRNA. WTAP contributes to the platinum resistance through regulating the conversion from aerobic glycolysis to OXPHOS by upregulating the expression of ME1.

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来源期刊
自引率
1.70%
发文量
17
审稿时长
14 weeks
期刊介绍: Cancer & Metabolism welcomes studies on all aspects of the relationship between cancer and metabolism, including: -Molecular biology and genetics of cancer metabolism -Whole-body metabolism, including diabetes and obesity, in relation to cancer -Metabolomics in relation to cancer; -Metabolism-based imaging -Preclinical and clinical studies of metabolism-related cancer therapies.
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