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Synthesis of an Alkynyl Methylglyoxal Probe to Investigate Nonenzymatic Histone Glycation.

Qingfei ZhengIgor MaksimovicAkhil UpadDavid GuberYael David
Published in: The Journal of organic chemistry (2020)
Methylglyoxal (MGO) is a reactive dicarbonyl metabolite that modifies histones in vivo and induces changes in chromatin structure and function. Here we report the synthesis and application of a chemical probe for investigating MGO-glycation. A two-step synthesis of a Cu-click compatible alkynyl oxoaldehyde probe (AlkMGO) via sequential Dess-Martin and Riley oxidations is presented. This synthesis elevates the accessibility and utility of an important tool for tracking, enriching, and studying MGO-glycation to aid in understanding its underlying biochemical functions.
Keyphrases
  • living cells
  • quantum dots
  • gene expression
  • dna methylation
  • transcription factor
  • genome wide
  • oxidative stress
  • fluorescent probe
  • metal organic framework