FtsZ-independent septal recruitment and function of cell wall remodelling enzymes in chlamydial pathogens.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 24953095.
- Also identified by DOI 10.1038/ncomms5200 and PMC identifier 4083446.
- Licence recorded as CC BY-NC-ND.
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Abstract
The nature and assembly of the chlamydial division septum is poorly defined due to the paucity of a detectable peptidoglycan (PG)-based cell wall, the inhibition of constriction by penicillin and the presence of coding sequences for cell wall precursor and remodelling enzymes in the reduced chlamydial (pan-)genome. Here we show that the chlamydial amidase (AmiA) is active and remodels PG in Escherichia coli. Moreover, forward genetics using an E. coli amidase mutant as entry point reveals that the chlamydial LysM-domain protein NlpD is active in an E. coli reporter strain for PG endopeptidase activity (ΔnlpI). Immunolocalization unveils NlpD as the first septal (cell-wall-binding) protein in Chlamydiae and we show that its septal sequestration depends on prior cell wall synthesis. Since AmiA assembles into peripheral clusters, trimming of a PG-like polymer or precursors occurs throughout the chlamydial envelope, while NlpD targets PG-like peptide crosslinks at the chlamydial septum during constriction.
Medical subject headings
- Amidohydrolases
- Bacterial Proteins
- Cell Wall
- Chlamydia