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Detection of phosphorylation post-translational modifications along single peptides with nanopores.

Ian C NovaJustas RitmejerisHenry D BrinkerhoffTheo J R KoenigJens H GundlachCees Dekker
Published in: Nature biotechnology (2023)
Current methods to detect post-translational modifications of proteins, such as phosphate groups, cannot measure single molecules or differentiate between closely spaced phosphorylation sites. We detect post-translational modifications at the single-molecule level on immunopeptide sequences with cancer-associated phosphate variants by controllably drawing the peptide through the sensing region of a nanopore. We discriminate peptide sequences with one or two closely spaced phosphates with 95% accuracy for individual reads of single molecules.
Keyphrases
  • single molecule
  • atomic force microscopy
  • living cells
  • protein kinase
  • dna methylation
  • genetic diversity
  • fluorescent probe
  • sensitive detection