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

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

PloS one (2014-12-09)
Vladimir Tolstikov, Alexander Nikolayev, Sucai Dong, Genshi Zhao, Ming-Shang Kuo
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.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
L-Threonine, BioXtra, ≥99.5% (NT)
Nicotinic acid, European Pharmacopoeia (EP) Reference Standard
Proline, European Pharmacopoeia (EP) Reference Standard
USP
Glycine, United States Pharmacopeia (USP) Reference Standard
Sigma-Aldrich
L-Threonine, reagent grade, ≥98% (HPLC)
Sigma-Aldrich
Pyrimidine, ≥98.0%
Sigma-Aldrich
Nicotinic acid, meets USP testing specifications
Sigma-Aldrich
Glycine, ACS reagent, ≥98.5%
Sigma-Aldrich
Nicotinic acid, ≥99.5% (HPLC)
Sigma-Aldrich
Isopropyl alcohol, ≥99.7%, FCC, FG
Sigma-Aldrich
Nicotinic acid, ≥98%
Sigma-Aldrich
Nicotinic acid, BioReagent, suitable for cell culture, suitable for insect cell culture, suitable for plant cell culture, ≥98%
Sigma-Aldrich
Glycine, ReagentPlus®, ≥99% (HPLC)
Supelco
L-Threonine, Pharmaceutical Secondary Standard; Certified Reference Material
Supelco
Glycine, Pharmaceutical Secondary Standard; Certified Reference Material
Serine, European Pharmacopoeia (EP) Reference Standard
Supelco
Niacin (Nicotinic Acid), Pharmaceutical Secondary Standard; Certified Reference Material
Glycine, European Pharmacopoeia (EP) Reference Standard
SAFC
L-Threonine
SAFC
Glycine
Sigma-Aldrich
Glycine, BioUltra, Molecular Biology, ≥99.0% (NT)
Sigma-Aldrich
Glycine, from non-animal source, meets EP, JP, USP testing specifications, suitable for cell culture, ≥98.5%
Sigma-Aldrich
Glycine, SAJ special grade, ≥99.0%
Sigma-Aldrich
Nicotinic acid, SAJ special grade, ≥99.5%
Sigma-Aldrich
Zaprinast, solid
Sigma-Aldrich
L-Threonine, from non-animal source, meets EP, JP, USP testing specifications, suitable for cell culture, 99.0-101.0%
Supelco
Glycine, analytical standard, for nitrogen determination according to Kjeldahl method
Sigma-Aldrich
Glycine, 99%, FCC
Sigma-Aldrich
Glycine, BioXtra, ≥99% (titration)
Sigma-Aldrich
Glycine, suitable for electrophoresis, ≥99%