AI Article Synopsis

  • Fluorescent d-amino acids (FDAAs) have been developed to visualize bacterial cell wall growth, particularly peptidoglycan (PG) biosynthesis.
  • Super-resolution microscopy is necessary to resolve details of PG because most bacterial cells are near the diffraction limit of visible light.
  • New FDAAs have been synthesized for one-step labeling and enable imaging of PG at the nanoscale in various bacterial species, providing researchers with enhanced tools for studying cell wall dynamics.

Article Abstract

Fluorescent d-amino acids (FDAAs) have previously been developed to enable highlighting of locations of bacterial cell wall growth. Most bacterial cells lie at the edge of the diffraction limit of visible light; thus, resolving the precise details of peptidoglycan (PG) biosynthesis requires super-resolution microscopy after probe incorporation. Single molecule localization microscopy (SMLM) has stringent requirements on the fluorophore photophysical properties and therefore has remained challenging in this context. Here, we report the synthesis and characterization of new FDAAs compatible with one-step labeling and SMLM imaging. We demonstrate the incorporation of our probes and their utility for visualizing PG at the nanoscale in Gram-negative, Gram-positive, and mycobacteria species. This improved FDAA toolkit will endow researchers with a nanoscale perspective on the spatial distribution of PG biosynthesis for a broad range of bacterial species.

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Source
http://dx.doi.org/10.1021/acschembio.2c00496DOI Listing

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