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Sequencing of Sequence-Defined Oligourethanes via Controlled Self-Immolation.

Samuel D DahlhauserP Rogelio EscamillaAbigail N VandeWalleJordan T YorkRachel M RapagnaniJasper S SheiSamuel A GlassJaime N CoronadoSarah R MoorDouglas P SaundersEric V Anslyn
Published in: Journal of the American Chemical Society (2020)
Sequence-defined polymers show promise for biomimetics, self-assembly, catalysis, and information storage, wherein the primary structure begets complex chemical processes. Here we report the solution-phase and the high-yielding solid-phase syntheses of discrete oligourethanes and methods for their self-immolative sequencing, resulting in rapid and robust characterization of this class of oligomers and polymers, without the use of MS/MS. Crucial to the sequencing is the inherent reactivity of the terminal alcohol to "unzip" the oligomers, in a controlled and iterative fashion, releasing each monomer as a 2-oxazolidinone. By monitoring the self-immolation reaction via LC/MS, an applied algorithm rapidly produces the sequence of the oligourethane. Not only does this process provide characterization of structurally complex molecules, it works as a reader of molecular information.
Keyphrases
  • single cell
  • ms ms
  • health information
  • machine learning
  • amino acid
  • liquid chromatography tandem mass spectrometry
  • magnetic resonance imaging
  • image quality
  • high resolution
  • sensitive detection