Sandbox Reserved 960: Difference between revisions

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=== pH influence ===
=== pH influence ===
pH affects the flexibility of ASP1 because it induces a different protonation state of the ionizable residues (scene). Protonated residues induce micro-environnment changes which propagate all along the protein. Consequently, ASP1 is no longer able to interact with its ligands even if ionizable residues are distant from the cavity.  
pH affects the flexibility of ASP1 because it induces a different protonation state of the <scene name='60/604479/Ionizable_residues/1'>ionizable residues</scene>. Protonated residues induce micro-environnment changes which propagate all along the protein. Consequently, ASP1 is no longer able to interact with its ligands even if ionizable residues are distant from the cavity.  
In fact, depending of the pH level, Asp35 bend the C terminal domain against the cavity.  
In fact, depending of the pH level, Asp35 bend the C terminal domain against the cavity.  
At pH 5.5, Asp35 is protonated and C terminal domain isn’t bend against the cavity. While ASP1 is a monomere at acid pH, it can dimerize at neutral and basic pH.
At pH 5.5, Asp35 is protonated and C terminal domain isn’t bend against the cavity. While ASP1 is a monomere at acid pH, it can dimerize at neutral and basic pH.

Revision as of 22:49, 23 December 2014

This Sandbox is Reserved from 15/11/2014, through 15/05/2015 for use in the course "Biomolecule" taught by Bruno Kieffer at the Strasbourg University. This reservation includes 2h8v through 3cz2.
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  • Click the 3D button (when editing, above the wikitext box) to insert Jmol.
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Crystal structure of the Antennal Specific Protein-1 from Apis mellifera (AmelASP1) with a serendipitous ligand at pH 5.5

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Contributors

Sophie Morin & Mathias Buytaert

References for further information on the pheromone binding protein from Apis mellifera