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A β-barrel for oil transport through lipid membranes: Dynamic NMR structures of AlkL

Proc Natl Acad Sci U S A. 2020 Sep 1;117(35):21014-21021. doi: 10.1073/pnas.2002598117. Epub 2020 Aug 19.

Abstract

The protein AlkL is known to increase permeability of the outer membrane of bacteria for hydrophobic molecules, yet the mechanism of transport has not been determined. Differing crystal and NMR structures of homologous proteins resulted in a controversy regarding the degree of structure and the role of long extracellular loops. Here we solve this controversy by determining the de novo NMR structure in near-native lipid bilayers, and by accessing structural dynamics relevant to hydrophobic substrate permeation through molecular-dynamics simulations and by characteristic NMR relaxation parameters. Dynamic lateral exit sites large enough to accommodate substrates such as carvone or octane occur through restructuring of a barrel extension formed by the extracellular loops.

Keywords: lipid bilayers; magic-angle spinning; membrane protein; protein dynamics; protein structure.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Bacterial Outer Membrane Proteins / chemistry
  • Bacterial Outer Membrane Proteins / metabolism*
  • Bacterial Proteins / metabolism*
  • Hydrophobic and Hydrophilic Interactions
  • Lipid Bilayers / chemistry
  • Lipid Bilayers / metabolism*
  • Magnetic Resonance Imaging / methods
  • Magnetic Resonance Spectroscopy / methods
  • Membrane Lipids / chemistry
  • Membrane Lipids / metabolism
  • Membrane Proteins / metabolism
  • Molecular Dynamics Simulation
  • Nuclear Magnetic Resonance, Biomolecular / methods
  • Permeability
  • Protein Structure, Secondary

Substances

  • Bacterial Outer Membrane Proteins
  • Bacterial Proteins
  • Lipid Bilayers
  • Membrane Lipids
  • Membrane Proteins