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Updated: Apr 27, 2026

From Constructs to Crystals – Towards Structure Determination of β-barrel Outer Membrane Proteins
Published on: July 4, 2016
A mortise-tenon joint in the transmembrane domain modulates autotransporter assembly into bacterial outer membranes
Denisse L Leyton1, Matthew D Johnson2, Rajiv Thapa3
11] Department of Microbiology, Monash University, Melbourne, Victoria 3800, Australia [2] Department of Biochemistry and Molecular Biology, Monash University, Melbourne, Victoria 3800, Australia.
Abstract:
Bacterial autotransporters comprise a 12-stranded membrane-embedded β-barrel domain, which must be folded in a process that entraps segments of an N-terminal passenger domain. This first stage of autotransporter folding determines whether subsequent translocation can deliver the N-terminal domain to its functional form on the bacterial cell surface. Here, paired glycine-aromatic 'mortise and tenon' motifs are shown to join neighbouring β-strands in the C-terminal barrel domain, and mutations within these motifs slow the rate and extent of passenger domain translocation to the surface of bacterial cells. In line with this, biophysical studies of the autotransporter Pet show that the conserved residues significantly quicken completion of the folding reaction and promote stability of the autotransporter barrel domain. Comparative genomics demonstrate conservation of glycine-aromatic residue pairings through evolution as a previously unrecognized feature of all autotransporter proteins.
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