4.6 Article

Comparative Metabolomics of Small Molecules Specifically Expressed in the Dorsal or Ventral Marginal Zones in Vertebrate Gastrula

期刊

METABOLITES
卷 12, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/metabo12060566

关键词

metabolomic analysis; Xenopus laevis; dorsal-ventral patterning; Spemann organizer; early embryogenesis

资金

  1. AMED [20km0405209h0003]
  2. JST FOREST Program [JPMJFR2052]
  3. Yamagishi Student Project Support Program
  4. Yamagata prefectural government
  5. city of Tsuruoka

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This study identified specific small molecules expressed in the dorsal or ventral marginal zones in vertebrate gastrula, investigating their impact on cell fate. By analyzing hydrophilic metabolites and lipids, the research found differences in metabolism-related molecules between the two regions, contributing to a better understanding of cellular physiology during early embryogenesis.
Many previous studies have reported the various proteins specifically secreted as inducers in the dorsal or ventral regions in vertebrate gastrula. However, little is known about the effect on cell fate of small molecules below 1000 Da. We therefore tried to identify small molecules specifically expressed in the dorsal marginal zone (DMZ) or ventral marginal zone (VMZ) in vertebrate gastrula. Small intracellular and secreted molecules were detected using explants and supernatant samples. Hydrophilic metabolites were analyzed by capillary ion chromatography-mass spectrometry and liquid chromatography-mass spectrometry, and lipids were analyzed by supercritical fluid chromatography-tandem mass spectrometry. In total, 190 hydrophilic metabolites and 396 lipids were identified. The DMZ was found to have high amounts of glycolysis- and glutathione metabolism-related metabolites in explants, and the VMZ was richer in purine metabolism-related metabolites. We also discovered some hydrophilic metabolites and lipids differentially contained in the DMZ or VMZ. Our research would contribute to a deeper understanding of the cellular physiology that regulates early embryogenesis.

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