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Total Synthesis of Disciformycin A and B: Unusually Exigent Targets of Biological Significance.

Yonghoon KwonSaskia SchulthoffQuang Minh DaoConny WirtzAlois Fürstner
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2017)
The first total synthesis of the potent antibiotic disciformycin B (2) is described, which is exceptionally isomerization-prone and transforms into disciformycin A (1) even under notably mild conditions. To outweigh this bias, the approach to 2 hinged on the use of a silyl residue at C4 to lock the critical double bond in place and hence insure the integrity of the synthetic intermediates en route to 2. This tactic was instrumental for the preparation of the building blocks and formation of the macrocyclic ring via ring closing alkyne metathesis (RCAM). To make the end game successful, however, it proved necessary to cleave the C-silyl protecting group off; it was at this stage that the exceptional sensitivity of the target became fully apparent.
Keyphrases
  • diffusion weighted imaging
  • molecularly imprinted
  • anti inflammatory
  • computed tomography
  • magnetic resonance
  • mass spectrometry
  • high resolution