Abstract
In ovoid-shaped, Gram-positive bacteria, MapZ guides FtsZ-ring positioning at cell equators. The cell wall of the ovococcus Streptococcus mutans contains peptidoglycan decorated with serotype c carbohydrates (SCCs). In the present study, we identify the major cell separation autolysin AtlA as an SCC-binding protein. AtlA binding to SCC is attenuated by the glycerol phosphate (GroP) modification. Using fluorescently labeled AtlA constructs, we mapped SCC distribution on the streptococcal surface, revealing enrichment of GroP-deficient immature SCCs at the cell poles and equators. The immature SCCs co-localize with MapZ at the equatorial rings throughout the cell cycle. In GroP-deficient mutants, AtlA is mislocalized, resulting in dysregulated cellular autolysis. These mutants display morphological abnormalities associated with MapZ mislocalization, leading to FtsZ-ring misplacement. Altogether, our data support a model in which maturation of a cell wall polysaccharide provides the molecular cues for the recruitment of cell division machinery, ensuring proper daughter cell separation and FtsZ-ring positioning.
Document Type
Article
Publication Date
8-1-2021
Digital Object Identifier (DOI)
https://doi.org/10.1038/s41589-021-00803-9
Repository Citation
Zamakhaeva, Svetlana; Chaton, Catherine T; Rush, Jeffrey S.; Ajay Castro, Sowmya; Kenner, Cameron W; Yarawsky, Alexander E; Herr, Andrew B; van Sorge, Nina M; Dorfmueller, Helge C; Frolenkov, Gregory I; Korotkov, Konstantin V; and Korotkova, Natalia, "Modification of cell wall polysaccharide guides cell division in Streptococcus mutans." (2021). Molecular and Cellular Biochemistry Faculty Publications. 200.
https://uknowledge.uky.edu/biochem_facpub/200

Notes/Citation Information
Nat Chem Biol. 2021 Aug;17(8):878-887