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March 26, 2026Chemical Reviews2 citationsOpen Access

Integration of Membrane Proteins into the Outer Membrane of Diderm Bacteria by the BAM Complex

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DBDaniel BirtlesKFKatherine L. FennJMJonathan Machin

Key Points

  • This research aims to understand how the BAM complex assembles outer membrane proteins in diderm bacteria.
  • Investigating the function of the BAM complex in diderm bacteria
  • Analyzing molecular mechanisms of BAM-mediated outer membrane protein folding
  • Utilizing structural biology techniques to visualize stages of OMP folding
  • BAM operates in a rigid membrane environment without direct energy sources
  • BAM facilitates the folding of outer membrane proteins by conformational cycling
  • Conformational cycling of BAM is conserved across different bacterial species, indicating its significance

Abstract

Assembly of the outer membrane (OM) of diderm bacteria is coordinated by the essential β-barrel assembly machinery (BAM) and is critical for cellular survival and pathogenicity. BAM operates in a membrane environment that is highly rigid and spatiotemporally organized, and functions without ready access to an energy source. In addition, BAM interacts with many other proteins to efficiently fold outer membrane proteins (OMP), assemble complexes in the OM, and maintain cell envelope homeostasis. In recent years, great strides have been made toward understanding the molecular mechanism of BAM-mediated (OMP) folding, with structural biology used to visualize the different stages of the pathways of OMP folding and membrane insertion. The conformational cycling of BAM and its ability to transiently form hybrid barrels with substrate OMPs facilitates their folding. Both these mechanistic features appear to be well conserved and are attractive targets for antimicrobials.

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Cite This Study

Birtles et al. (2026) studied this question.

synapsesocial.com/papers/69c4cd30fdc3bde448919230https://doi.org/10.1021/acs.chemrev.5c00764
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