Extracellular loops of the β-barrel domain catalyze rapid folding for function of self-associating autotransporters
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.
Show 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.
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