Abstract
Peptidoglycan (PG) is an essential component of the bacterial cell wall. Although experiments with organisms in vitro have yielded a wealth of information on PG synthesis and maturation, it is unclear how these studies translate to bacteria replicating within host cells. We report a chemical approach for probing PG in vivo via metabolic labeling and bioorthogonal chemistry. A wide variety of bacterial species incorporated azide and alkyne-functionalized d-alanine into their cell walls, which we visualized by covalent reaction with click chemistry probes. The d-alanine analogues were specifically incorporated into nascent PG of the intracellular pathogen Listeria monocytogenes both in vitro and during macrophage infection. Metabolic incorporation of d-alanine derivatives and click chemistry detection constitute a facile, modular platform that facilitates unprecedented spatial and temporal resolution of PG dynamics in vivo. © 2012 American Chemical Society.
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CITATION STYLE
Siegrist, M. S., Whiteside, S., Jewett, J. C., Aditham, A., Cava, F., & Bertozzi, C. R. (2013). D-amino acid chemical reporters reveal peptidoglycan dynamics of an intracellular pathogen. ACS Chemical Biology, 8(3), 500–505. https://doi.org/10.1021/cb3004995
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