Wiese Elizabeth K, Hitosugi Sadae, Buhrow Sarah A, Loa Sharon T, Sreedhar Annapoorna, Reid Joel M, Gonsalves Wilson I, Hitosugi Taro
Molecular Pharmacology and Experimental Therapeutics Graduate Program, Mayo Clinic Graduate School of Biomedical Sciences, Rochester, MN USA; Department of Molecular Pharmacology and Experimental Therapeutics, Mayo Clinic, Rochester, MN USA.
Division of Oncology Research, Mayo Clinic, Rochester, MN USA.
J Chromatogr A. 2020 Jul 19;1623:461169. doi: 10.1016/j.chroma.2020.461169. Epub 2020 Apr 27.
Artifacts due to metabolite extraction, derivatization, and detection techniques can result in aberrant observations that are not accurate representations of actual cell metabolism. Here, we show that α-ketoglutarate (α-KG) is reductively aminated to glutamate in methanol:water metabolite extracts, which introduces an artifact into metabolomics studies. We also identify pyridoxamine and urea as amine donors for α-KG to produce glutamate in methanol:water buffer in vitro, and we demonstrate that the addition of ninhydrin to the methanol:water buffer suppresses the reductive amination of α-KG to glutamate in vitro and in metabolite extracts. Finally, we calculate that glutamate levels have been overestimated by 10-50%, depending on cell line, due to α-KG reductive amination. These findings suggest that precautions to account for α-KG reductive amination should be taken for the accurate quantification of glutamate in metabolomics studies.
由于代谢物提取、衍生化和检测技术导致的假象可能会产生异常观测结果,这些结果并非实际细胞代谢的准确反映。在此,我们表明,在甲醇:水代谢物提取物中,α-酮戊二酸(α-KG)被还原胺化生成谷氨酸,这在代谢组学研究中引入了一种假象。我们还确定了吡哆胺和尿素作为α-KG在体外甲醇:水缓冲液中生成谷氨酸的胺供体,并且我们证明在甲醇:水缓冲液中添加茚三酮可在体外和代谢物提取物中抑制α-KG还原胺化生成谷氨酸。最后,我们计算得出,由于α-KG还原胺化,根据细胞系不同,谷氨酸水平被高估了10%至50%。这些发现表明,在代谢组学研究中,为准确量化谷氨酸,应采取措施来考虑α-KG还原胺化的影响。