Outer membrane protein G (OmpG) from <i>Escherichia coli</i> has exhibited pH-dependent gating that can be employed by bacteria to alter the permeability of their outer membranes in response to environmental changes. We developed a computational model, Protein Topology of Zoetic Loops (Pretzel), to investigate the roles of OmpG extracellular loops implicated in gating. The key interactions predicted by our model were verified by single-channel recording data. Our results indicate that the gating equilibrium is primarily controlled by an electrostatic interaction network formed between the gating loop and charged residues in the lumen. The results shed light on the mechanism of OmpG gating and will provide a fundamental basis for the enginee...
The outer membrane of Gram-negative bacteria contains β-barrel proteins that form high-conducti...
The outer membrane of Gram-negative bacteria contains β-barrel proteins that form high-conducting io...
Porins, like outer membrane protein G (OmpG) of Escherichia coli, are ideal templates among ion chan...
The physical interactions that switch the functional state of membrane proteins are poorly understoo...
The use of pore-forming proteins (PFPs) in nanopore sensing has been fruitful largely due to their n...
Outer membrane proteins (OMPs) of Gram-negative bacteria have a variety of functions including passi...
Outer membrane proteins (OMPs) of Gram-negative bacteria have a variety of functions including passi...
AbstractOuter membrane proteins (OMPs) of Gram-negative bacteria have a variety of functions includi...
A gating mechanism of the beta-barrel-forming outer membrane protein G (OmpG) from Escherichia coli ...
In Gram-negative bacteria, the Outer membrane (OM) acts as a first barrier to screen unwanted compou...
<div><p>Bacterial porins are water-filled β-barrel channels that allow translocation of solutes acro...
International audienceBacterial porins are water-filled β-barrel channels that allow translocation o...
International audienceBacterial porins are water-filled β-barrel channels that allow translocation o...
Abstract Conformational changes in ion channels lead to gating of an ion-conductive pore. Ion flux h...
OmpG is a pore-forming protein from E. coli outer membranes. Unlike the classical outer membrane por...
The outer membrane of Gram-negative bacteria contains β-barrel proteins that form high-conducti...
The outer membrane of Gram-negative bacteria contains β-barrel proteins that form high-conducting io...
Porins, like outer membrane protein G (OmpG) of Escherichia coli, are ideal templates among ion chan...
The physical interactions that switch the functional state of membrane proteins are poorly understoo...
The use of pore-forming proteins (PFPs) in nanopore sensing has been fruitful largely due to their n...
Outer membrane proteins (OMPs) of Gram-negative bacteria have a variety of functions including passi...
Outer membrane proteins (OMPs) of Gram-negative bacteria have a variety of functions including passi...
AbstractOuter membrane proteins (OMPs) of Gram-negative bacteria have a variety of functions includi...
A gating mechanism of the beta-barrel-forming outer membrane protein G (OmpG) from Escherichia coli ...
In Gram-negative bacteria, the Outer membrane (OM) acts as a first barrier to screen unwanted compou...
<div><p>Bacterial porins are water-filled β-barrel channels that allow translocation of solutes acro...
International audienceBacterial porins are water-filled β-barrel channels that allow translocation o...
International audienceBacterial porins are water-filled β-barrel channels that allow translocation o...
Abstract Conformational changes in ion channels lead to gating of an ion-conductive pore. Ion flux h...
OmpG is a pore-forming protein from E. coli outer membranes. Unlike the classical outer membrane por...
The outer membrane of Gram-negative bacteria contains β-barrel proteins that form high-conducti...
The outer membrane of Gram-negative bacteria contains β-barrel proteins that form high-conducting io...
Porins, like outer membrane protein G (OmpG) of Escherichia coli, are ideal templates among ion chan...