bioRxiv · 10.1101/2025.04.08.647479
Extracellular loops of the β-barrel domain catalyze rapid folding for function of self-associating autotransporters
Abstract
Bacterial aggregation is a phenotype associated with disease pathogenesis. Aggregate formation enhances biofilm development, host colonization, and resistance to antibiotics and host defenses. Antigen 43 (Ag43) is a surface-located autotransporter produced by pathogenic Escherichia coli that mediates cell aggregation in biofilms. Two Ag43 molecules, each from neighboring bacterial cells, fold into elongated {beta}-helical passenger domains that associate in a head-to-tail manner while being anchored to the cell surface by their outer membrane-embedded {beta}-barrels. In this study, we conduct mutational analyses on Ag43 to show that the {beta}-hairpin structure of the fourth and fifth extracellular loops of the {beta}-barrel domain have a crucial role for passenger domain folding and subsequent formation of bacterial aggregates. This work provides mechanistic insight into the role of the autotransporter {beta}-barrel domain to nucleate the rapid folding of the passenger domain into the {beta}-helix that enables bacterial interactions during infection.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yuan, X., Johnson, M. D., Long, J., Zhang, J., Lo, A. W., Paxman, J. J., Phan, D., Heras, B., Schembri, M. A., Huysmans, G. H. M., Henderson, I. R., Doyle, M. T., Leyton, D. L.. 2025-04-08. Extracellular loops of the β-barrel domain catalyze rapid folding for function of self-associating autotransporters. https://doi.org/10.1101/2025.04.08.647479
Cite the original work for its findings. Save a collection to share your selection of sources.