TY - JOUR
T1 - Comprehensive Dipeptide Profiling and Quantitation by Capillary Electrophoresis and Liquid Chromatography Coupled with Tandem Mass Spectrometry
AU - Ozawa, Hitoshi
AU - Hirayama, Akiyoshi
AU - Ishikawa, Takamasa
AU - Kudo, Ryuhei
AU - Maruyama, Midori
AU - Shoji, Futaba
AU - Doke, Tomohito
AU - Ishimoto, Takuji
AU - Maruyama, Shoichi
AU - Soga, Tomoyoshi
AU - Tomita, Masaru
N1 - Funding Information:
This work was supported by the Japan Society for the Promotion of Science, KAKENHI [grant numbers JP18H04804 and JP18K08219]; Research on Development of New Drugs (GAPFREE) from the Japan Agency for Medical Research and Development, AMED [grant numbers 18ak0101043h0104, 18ak0101043s1404, and 18ak0101043h0004]; and grants from the Yamagata prefectural government and the city of Tsuruoka. We would like to thank Editage ( www.editage.com ) for English language editing.
Publisher Copyright:
Copyright © 2020 American Chemical Society.
PY - 2020/7/21
Y1 - 2020/7/21
N2 - Dipeptides have attracted much attention as post-amino acids with physical properties and functions different from those of amino acids. However, a given dipeptide cannot be distinguished by mass spectrometry from its structural isomer with an opposite amino acid binding order unless these isomers are separated before introduction, which complicates the comprehensive analysis of dipeptides. Herein, a novel analytical platform for dipeptide analysis by capillary electrophoresis tandem mass spectrometry and liquid chromatography tandem mass spectrometry is developed. This method is used to quantitate 335 dipeptides and achieves excellent separation of structural isomers with opposite binding orders, high correlation coefficients, and low instrumental detection limits (0.088-83.1 nM). Moreover, acceptable recoveries (70-135%) are observed for most tested dipeptides in chicken liver samples spiked both before and after preparation. The developed method is also applied to the quantitation of dipeptides in the livers of mice fed different diets to detect 236 dipeptides, and the shift from a normal diet to a high-fat diet is shown to increase/decrease (p < 0.05, fold-change < 0.5) the contents of 0/29 dipeptides, respectively. The developed method is expected to facilitate the search for new dipeptide applications such as novel functional components of foods and biomarkers of diseases.
AB - Dipeptides have attracted much attention as post-amino acids with physical properties and functions different from those of amino acids. However, a given dipeptide cannot be distinguished by mass spectrometry from its structural isomer with an opposite amino acid binding order unless these isomers are separated before introduction, which complicates the comprehensive analysis of dipeptides. Herein, a novel analytical platform for dipeptide analysis by capillary electrophoresis tandem mass spectrometry and liquid chromatography tandem mass spectrometry is developed. This method is used to quantitate 335 dipeptides and achieves excellent separation of structural isomers with opposite binding orders, high correlation coefficients, and low instrumental detection limits (0.088-83.1 nM). Moreover, acceptable recoveries (70-135%) are observed for most tested dipeptides in chicken liver samples spiked both before and after preparation. The developed method is also applied to the quantitation of dipeptides in the livers of mice fed different diets to detect 236 dipeptides, and the shift from a normal diet to a high-fat diet is shown to increase/decrease (p < 0.05, fold-change < 0.5) the contents of 0/29 dipeptides, respectively. The developed method is expected to facilitate the search for new dipeptide applications such as novel functional components of foods and biomarkers of diseases.
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U2 - 10.1021/acs.analchem.0c01258
DO - 10.1021/acs.analchem.0c01258
M3 - Article
AN - SCOPUS:85089699189
SN - 0003-2700
VL - 92
SP - 9799
EP - 9806
JO - Analytical Chemistry
JF - Analytical Chemistry
IS - 14
ER -