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烟酰胺磷酸核糖转移酶(NAMPT)抑制对人癌细胞代谢影响的代谢组学分析

Metabolomics analysis of metabolic effects of nicotinamide phosphoribosyltransferase (NAMPT) inhibition on human cancer cells.

作者信息

Tolstikov Vladimir, Nikolayev Alexander, Dong Sucai, Zhao Genshi, Kuo Ming-Shang

机构信息

Discovery Chemistry and Technologies, Lilly Research Laboratories, Eli Lilly and Company, 893 S Delaware St, Indianapolis, IN 46285, United States of America.

Cancer Signaling & Metabolism, Lilly Research Laboratories, Eli Lilly and Company, 893 S Delaware St, Indianapolis, IN 46285, United States of America.

出版信息

PLoS One. 2014 Dec 8;9(12):e114019. doi: 10.1371/journal.pone.0114019. eCollection 2014.

Abstract

Nicotinamide phosphoribosyltransferase (NAMPT) plays an important role in cellular bioenergetics. It is responsible for converting nicotinamide to nicotinamide adenine dinucleotide, an essential molecule in cellular metabolism. NAMPT has been extensively studied over the past decade due to its role as a key regulator of nicotinamide adenine dinucleotide-consuming enzymes. NAMPT is also known as a potential target for therapeutic intervention due to its involvement in disease. In the current study, we used a global mass spectrometry-based metabolomic approach to investigate the effects of FK866, a small molecule inhibitor of NAMPT currently in clinical trials, on metabolic perturbations in human cancer cells. We treated A2780 (ovarian cancer) and HCT-116 (colorectal cancer) cell lines with FK866 in the presence and absence of nicotinic acid. Significant changes were observed in the amino acids metabolism and the purine and pyrimidine metabolism. We also observed metabolic alterations in glycolysis, the citric acid cycle (TCA), and the pentose phosphate pathway. To expand the range of the detected polar metabolites and improve data confidence, we applied a global metabolomics profiling platform by using both non-targeted and targeted hydrophilic (HILIC)-LC-MS and GC-MS analysis. We used Ingenuity Knowledge Base to facilitate the projection of metabolomics data onto metabolic pathways. Several metabolic pathways showed differential responses to FK866 based on several matches to the list of annotated metabolites. This study suggests that global metabolomics can be a useful tool in pharmacological studies of the mechanism of action of drugs at a cellular level.

摘要

烟酰胺磷酸核糖转移酶(NAMPT)在细胞生物能量学中发挥着重要作用。它负责将烟酰胺转化为烟酰胺腺嘌呤二核苷酸,这是细胞代谢中的一种必需分子。由于NAMPT作为烟酰胺腺嘌呤二核苷酸消耗酶的关键调节因子,在过去十年中受到了广泛研究。由于其与疾病的关联,NAMPT也被认为是治疗干预的潜在靶点。在本研究中,我们使用基于质谱的全代谢组学方法,研究了目前正在进行临床试验的NAMPT小分子抑制剂FK866对人类癌细胞代谢扰动的影响。我们在有和没有烟酸的情况下,用FK866处理A2780(卵巢癌)和HCT-116(结直肠癌)细胞系。观察到氨基酸代谢以及嘌呤和嘧啶代谢发生了显著变化。我们还观察到糖酵解、柠檬酸循环(TCA)和磷酸戊糖途径中的代谢改变。为了扩大检测到的极性代谢物范围并提高数据可信度,我们通过使用非靶向和靶向亲水(HILIC)-LC-MS和GC-MS分析,应用了全代谢组学分析平台。我们使用Ingenuity知识库来促进将代谢组学数据投射到代谢途径上。基于与注释代谢物列表的多个匹配,几条代谢途径对FK866表现出不同的反应。这项研究表明,全代谢组学可以成为在细胞水平上研究药物作用机制的药理学研究中的有用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdc2/4259317/2985aebac481/pone.0114019.g001.jpg

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