This old version of Proteopedia is provided for student assignments while the new version is undergoing repairs. Content and edits done in this old version of Proteopedia after March 1, 2026 will eventually be lost when it is retired in about June of 2026.
Apply for new accounts at the new Proteopedia. Your logins will work in both the old and new versions.
1o83
From Proteopedia
|
CRYSTAL STRUCTURE OF BACTERIOCIN AS-48 AT PH 7.5, PHOSPHATE BOUND. CRYSTAL FORM I
Overview
The bacteriocin AS-48 is a membrane-interacting peptide, which displays a, broad anti-microbial spectrum against Gram-positive and Gram-negative, bacteria. The NMR structure of AS-48 at pH 3 has been solved. The analysis, of this structure suggests that the mechanism of AS-48 anti-bacterial, activity involves the accumulation of positively charged molecules at the, membrane surface leading to a disruption of the membrane potential. Here, we report the high-resolution crystal structure of AS-48 and sedimentation, equilibrium experiments showing that this bacteriocin is able to adopt, different oligomeric structures according to the physicochemical, environment. The analysis of these structures suggests a mechanism for, molecular function of AS-48 involving a transition from a water-soluble, form to a membrane-bound state upon membrane binding.
About this Structure
1O83 is a Single protein structure of sequence from Enterococcus faecalis with PO4 and GOL as ligands. Structure known Active Site: AC1. Full crystallographic information is available from OCA.
Reference
Structure of bacteriocin AS-48: from soluble state to membrane bound state., Sanchez-Barrena MJ, Martinez-Ripoll M, Galvez A, Valdivia E, Maqueda M, Cruz V, Albert A, J Mol Biol. 2003 Nov 28;334(3):541-9. PMID:14623193
Page seeded by OCA on Mon Nov 5 14:00:02 2007
Categories: Enterococcus faecalis | Single protein | Albert, A. | Cruz, V. | Galvez, A. | Maqueda, M. | Martinez-Ripoll, M. | Sanchez-Barrena, M.J. | Valdivia, E. | GOL | PO4 | Antibacterial peptide | Bacteriocin | Cyclic polypeptide | Membrane permeabilization | Protein crystallography | Protein membrane interaction
