Sandbox Reserved 960: Difference between revisions
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The protein AmelASP1 has been identified in the antennae from the honeybee ''Apis mellifera''. Its primary sequence is a 144 amino acids polypeptide with a molecular weight of 13.180 kDa. AmelASP1 is part of the Pheromone Binding Protein (PBP) family. The 3D representation shown below was obtained at pH 5.5 using the [http://www-dsv.cea.fr/en/life-science-div/all-the-news/scientific-results/nanodrops-for-bioactive-compound-synthesis-and-screening nano-drops technique]. | The protein '''AmelASP1''' has been identified in the antennae from the honeybee ''Apis mellifera''. Its primary sequence is a 144 amino acids polypeptide with a molecular weight of 13.180 kDa. AmelASP1 is part of the '''Pheromone Binding Protein (PBP)''' family. The 3D representation shown below was obtained at pH 5.5 using the [http://www-dsv.cea.fr/en/life-science-div/all-the-news/scientific-results/nanodrops-for-bioactive-compound-synthesis-and-screening nano-drops technique]. | ||
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== Ligands == | == Ligands == | ||
[[Image:CMJ_Ligplot.png|150px|right|thumb|'''Fig.1''' CMJ Ligplot]] | [[Image:CMJ_Ligplot.png|150px|right|thumb|'''Fig.1''' CMJ Ligplot<ref>http://www.ebi.ac.uk/thornton-srv/databases/cgi-bin/pdbsum/GetPage.pl?pdbcode=3fe6&template=ligands.html&l=1.1</ref>]] | ||
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. | ||
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/ | *<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/6'>specific residues.</scene> ('''Fig.1''') | ||
*[[Image:GOL_Ligplot.png|200px|left|thumb|'''Fig.2''' 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. | *[[Image:GOL_Ligplot.png|200px|left|thumb|'''Fig.2''' GOL Ligplot<ref>http://www.ebi.ac.uk/thornton-srv/databases/cgi-bin/pdbsum/GetPage.pl?pdbcode=3fe6&template=ligands.html&l=2.1</ref>]]<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> | To do so, GOL links to<scene name='60/604479/Gol_binding_residues/1'> Asn 41 and Tyr 102.</scene> ('''Fig.2''') | ||
[[Image:Cl_Ligplot.png|right|thumb|'''Fig.3''' Cl Ligplot]] | [[Image:Cl_Ligplot.png|right|thumb|'''Fig.3''' Cl Ligplot<ref>http://www.ebi.ac.uk/thornton-srv/databases/cgi-bin/pdbsum/GetPage.pl?pdbcode=3fe6&template=ligands.html&o=METAL&l=1.1</ref>]] | ||
*<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. 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 here the only amino acid able to fix a chloride ion. ('''Fig.3''') | ||
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. | ||
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== Contributors == | == Contributors == | ||
Sophie Morin & Mathias Buytaert | Sophie Morin & Mathias Buytaert | ||
Latest revision as of 18:42, 9 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
Sophie Morin & Mathias Buytaert


