Sandbox Reserved 960: Difference between revisions

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<scene name='60/604479/H1/2'>H1</scene> has a break in the hydrogen-bonding pattern of its structure, forming tight substitute hydrogen bonds with water molecules. Thus, it results in a <scene name='60/604479/Kink/1'>kink</scene> (at residue Ala 14) induced by a disruption in the helical conformation, due to hydrogen bonds with water molecules.
<scene name='60/604479/H1/2'>H1</scene> has a break in the hydrogen-bonding pattern of its structure, forming tight substitute hydrogen bonds with water molecules. Thus, it results in a <scene name='60/604479/Kink/1'>kink</scene> (at residue Ala 14) induced by a disruption in the helical conformation, due to hydrogen bonds with water molecules.


The C terminal(scene) domain of this molecule presents a characteristic PBP-GOP domain. While this protein is composed of 144 residues the domain PBP begin at 25 residue. ASP1 binds its ligand at low pH and releases it at neutral pH.
The C terminal(scene) domain of this molecule presents a characteristic PBP-GOP domain. While this protein is composed of 144 residues the domain PBP begin at the 25th residue. AmelASP1 binds its ligand at low pH and releases it at neutral pH.




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<scene name='60/604479/Hydrophobic_residues/1'>hydrophobic residues</scene>  (A REFAIRE)
<scene name='60/604479/Hydrophobic_residues/1'>hydrophobic residues</scene>   
 




<scene name='60/604479/Kink/1'>kink</scene>


<scene name='60/604479/Acidic_residues/1'>acidic residues</scene>
<scene name='60/604479/Acidic_residues/1'>acidic residues</scene>

Revision as of 08:46, 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 3fe9 through 3cdn.
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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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References for further information on the pheromone binding protein from Apis mellifera