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Updated: Jun 11, 2025

From Constructs to Crystals – Towards Structure Determination of β-barrel Outer Membrane Proteins
Published on: July 4, 2016
Native β-barrel substrates pass through two shared intermediates during folding on the BAM complex.
Thiago M A Dos Santos1, Benjamin D Thomson1, Melissa D Marquez1
1Department of Chemistry and Chemical Biology, Harvard University, Cambridge, MA 02138.
The β-barrel assembly machine (BAM) complex efficiently folds diverse proteins. A new disulfide crosslinking method reveals common folding intermediates, suggesting BAM overcomes shared challenges in protein assembly.
Area of Science:
- Molecular Biology
- Protein Folding
- Membrane Protein Assembly
Background:
- The β-barrel assembly machine (BAM) complex is crucial for folding β-barrel proteins into membranes.
- BAM in *Escherichia coli* processes a wide variety of substrates with different sizes and shapes.
- The mechanism by which BAM efficiently folds such diverse substrates remains unclear.
Purpose of the Study:
- To investigate the folding mechanism of β-barrel proteins by the BAM complex.
- To characterize stable intermediates during the in vivo folding of native β-barrel substrates.
- To understand how BAM accommodates diverse substrate structures.
Main Methods:
- Development of a novel disulfide crosslinking method to trap folding intermediates in vivo.
- Site-specific cysteine introduction into the BamA protein and substrate β-strands.
- Comparison of substrate strand residence times within the BamA lumen.
Main Results:
- The disulfide crosslinking method successfully trapped and characterized stable folding intermediates.
- Identical folding intermediate stages were observed for two structurally distinct native β-barrel substrates.
- These intermediates occur early in folding and just before completion.
Conclusions:
- Common folding barriers exist for different β-barrel substrates.
- The BAM complex likely addresses these shared challenges, enabling the efficient folding of diverse proteins.
- The identified intermediates provide insights into the catalytic mechanism of BAM.
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