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March 14, 2026ACS Medicinal Chemistry Letters0 citations

Solid-Phase Synthesis and Biological Evaluation of Des-hydroxy Pseudouridimycin Analogs

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AAAvraz F. AnwarLYLinlin YouDDDavid Degen

Key Points

  • The aim is to evaluate the biological activity of des-hydroxy pseudouridimycin analogs and improve their stability.
  • Employed cryo-electron microscopy to examine structures of PUM and its analogs with RNAP.
  • Developed solid-phase synthesis to create 50 des-hydroxy PUM analogs.
  • Assessed the inhibitory activity of analogs against Escherichia coli RNAP.
  • Discovered several analogs with low-micromolar RNAP-inhibitory activity.
  • Identified the para-substituted phenyl amidine analog (54) as the most potent inhibitor with an IC50 of 0.95 μM.
  • Established a synthetic platform for optimizing stabilized PUM derivatives.

Abstract

Pseudouridimycin (PUM) is a C-nucleoside/peptide antibiotic that selectively inhibits bacterial RNA polymerase (RNAP) and exhibits potent activity against drug-resistant pathogens. However, PUM suffers from chemical instability due to self-immolative cleavage of its central hydroxamate bond. Here, we employed cryo-electron microscopy to determine structures of PUM (1) and a chemically stabilized des-hydroxy analog of PUM (2a) bound to an Escherichia coli RNAP transcription complex. Guided by the observed bound conformation, we developed an efficient solid-phase synthesis of 50 des-hydroxy PUM analogs modified at the Gln residue and Gdn-Gly tail. Several analogs retained low-micromolar RNAP-inhibitory activity, with a para-substituted phenyl amidine analog (54) emerging as the most potent inhibitor (IC50 = 0.95 μM). These results establish a versatile synthetic platform and structural framework for optimizing stabilized PUM derivatives and provide a foundation for the development of RNAP-targeted therapeutics against resistant bacterial pathogens.

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Cite This Study

Anwar et al. (2026) studied this question.

synapsesocial.com/papers/69b4fc0eb39f7826a300ca27https://doi.org/10.1021/acsmedchemlett.5c00684
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