Sandbox Reserved 960: Difference between revisions

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{{Sandbox_ESBS}}<!-- PLEASE ADD YOUR CONTENT BELOW HERE -->
{{Sandbox_ESBS}}<!-- PLEASE ADD YOUR CONTENT BELOW HERE -->
==Crystal structure of the Antennal Specific Protein-1 from ''Apis mellifera'' (AmelASP1) with a serendipitous ligand at pH 5.5==
=Crystal structure of the Antennal Specific Protein-1 from ''Apis mellifera'' (AmelASP1) with a serendipitous ligand at pH 5.5=
<StructureSection load='3fe6' size='400' side='right'  
<StructureSection load='3fe6' size='400' side='right'  
This is a default text for your page ''''''. Click above on '''edit this page''' to modify. Be careful with the &lt; and &gt; signs.
This is a default text for your page ''''''. Click above on '''edit this page''' to modify. Be careful with the &lt; and &gt; signs.
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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.<ref>PMID: 18508083</ref>
<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.<ref>PMID: 18508083</ref>


=== Components implicated in the structure rigidity ===
=== Components implicated in the structure rigidity ===
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== Ligands ==
== Ligands ==
[[Image:CMJ_Ligplot.png|150px|right|thumb|'''Fig.2''' CMJ Ligplot]]
In order to determine this {{Template:ColorKey Composition Protein}}’s structure, several {{Template:ColorKey Composition Ligand}} has been used at pH 5.5 because this low pH fits with its natural medium in the bee antenna.  
In order to determine this {{Template:ColorKey Composition Protein}}’s structure, several {{Template:ColorKey Composition Ligand}} has been used at pH 5.5 because this low pH fits with its natural medium in the bee antenna.  
[[Image:CMJ_Ligplot.png|150px|right|thumb|'''Fig.2''' CMJ Ligplot]]
 
The three ligands used to characterize and purify AmelASP1 are :
The three ligands used to characterize and purify AmelASP1 are :
*<scene name='60/604479/Cmj/3'>CMJ</scene> also known as (20s)-20-Methyldotetracontane, is a serendipitous ligand. This term signify that the purification of this molecule was completely fortuitous. It is a big unsaturated mono-methyl branched carbone chain with formula C43H88. This ligand fits in the {{Template:ColorKey_Hydrophobic}} cavity of AmelASP1 thanks to several interactions with <scene name='60/604479/Cmj_binding_residues/2'>specific residues.</scene>
*<scene name='60/604479/Cmj/3'>CMJ</scene> also known as (20s)-20-Methyldotetracontane, is a serendipitous ligand. This term signify that the purification of this molecule was completely fortuitous. It is a big unsaturated mono-methyl branched carbone chain with formula C43H88. This ligand fits in the {{Template:ColorKey_Hydrophobic}} cavity of AmelASP1 thanks to several interactions with <scene name='60/604479/Cmj_binding_residues/2'>specific residues.</scene>


*[[Image:GOL_Ligplot.png|200px|left|thumb|'''Fig.3''' GOL Ligplot]]<scene name='60/604479/Gol/1'>Glycerol</scene> (C3H8O3) also known as GOL, is a ligand used for cryoprotection during the purification process of the protein. It is supposedly helping the main ligand to reach its binding site. To do so, GOL links to<scene name='60/604479/Gol_binding_residues/1'> Asn 41 and Tyr 102.</scene>




[[Image:Cl_Ligplot.png|right|thumb|'''Fig.4''' Cl Ligplot]]


*<scene name='60/604479/Gol/1'>Glycerol</scene> (C3H8O3) also known as GOL, is a ligand used for cryoprotection during the purification process of the protein. [[Image:GOL_Ligplot.png|200px|left|thumb|'''Fig.3''' GOL Ligplot]]It is supposedly helping the main ligand to reach its binding site. To do so, GOL links to<scene name='60/604479/Gol_binding_residues/1'> Asn 41 and Tyr 102.</scene>
*<scene name='60/604479/Cl/1'>Chloride ion</scene> facilitates the binding of other ligands to the protein. Its abundance around ASP1 varies according to changing pH conditions. At pH 5.5, <scene name='60/604479/Cl_binding_residue/1'>Val 65</scene> is the only amino acid able to fix a chloride ion.  
 
 
*<scene name='60/604479/Cl/1'>Chloride ion</scene> facilitates the binding of other ligands to the protein. [[Image:Cl_Ligplot.png|right|thumb|'''Fig.4''' Cl Ligplot]]Its abundance around ASP1 varies according to changing pH conditions. At pH 5.5, <scene name='60/604479/Cl_binding_residue/1'>Val 65</scene> is the only amino acid able to fix a chloride ion.  


However, in natural conditions, binding ligands are the pheromones secreted by the queen such as 9-ODA.  
However, in natural conditions, binding ligands are the pheromones secreted by the queen such as 9-ODA.  

Revision as of 09:24, 24 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.
To get started:
  • Click the edit this page tab at the top. Save the page after each step, then edit it again.
  • Click the 3D button (when editing, above the wikitext box) to insert Jmol.
  • show the Scene authoring tools, create a molecular scene, and save it. Copy the green link into the page.
  • Add a description of your scene. Use the buttons above the wikitext box for bold, italics, links, headlines, etc.

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

Drag the structure with the mouse to rotate

Contributors

Sophie Morin & Mathias Buytaert

Updated on 24-December-2014

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