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Membrane Curvature During Membrane Rupture and Formation of Pentagonal Pyramidal Superassemblies by a Pore-Forming
Suman Mishra1,2, Kausik Chattopadhyay3, Somnath Dutta1
1Molecular Biophysics Unit, Indian Institute of Science, Bangalore, Karnataka, India.
None:
In this cryo-electron microscopy study, we provide mechanistic insights into how an archetypical β-barrel pore-forming toxin (β-PFT), Vibrio cholerae Cytolysin (VCC), ruptures the membrane lipid bilayer by inducing membrane curvature. We demonstrate how VCC oligomers cluster together and drastically increase local membrane curvature, thereby causing membrane blebbing. In addition, we also show how these PFTs, after rupturing the host membrane, tend to form symmetric supermolecular assemblies to stabilize their hydrophobic transmembrane rim domains. We further provide another example of membrane rupture with gamma hemolysin, a Staphylococcal bicomponent β-PFT. These insights will usher in new studies on membrane curvature due to protein crowding and broaden our mechanistic understanding of how this largest class of bacterial protein toxins induces host cellular death.
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