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 <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. <ref>PMID: 19481550</ref>
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 give rise to 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. <ref>PMID: 19481550</ref>
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, <scene name='60/604479/C-term_asp35/1'>Asp 35</scene> 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.<ref>PMID: 25337796</ref>
At pH 5.5, <scene name='60/604479/C-term_asp35/1'>Asp 35</scene> 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.<ref>PMID: 25337796</ref>

Revision as of 10:53, 3 January 2015

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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Antennal Specific Protein-1 from Apis mellifera (AmelASP1) with a serendipitous ligand at pH 5.5

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Contributors

Updated on 03-January-2015

Sophie Morin & Mathias Buytaert

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