Sandbox Reserved 960: Difference between revisions

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[[Media:Example.ogg]]{{Sandbox_ESBS}}<!-- PLEASE ADD YOUR CONTENT BELOW HERE -->
{{Sandbox_ESBS}}<!-- PLEASE ADD YOUR CONTENT BELOW HERE -->
==Crystal structure of a pheromone binding protein from Apis mellifera with a serendipitous ligand at pH 5.5==
==Crystal structure of a pheromone binding protein from Apis mellifera with a serendipitous ligand at pH 5.5==
<StructureSection load='3fe6' size='400' side='right'  
<StructureSection load='3fe6' size='400' side='right'  
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<scene name='60/604479/H7/1'>H7</scene>
<scene name='60/604479/H7/1'>H7</scene>
[[Image: 3fe6_cartoon.jpg|250px|left|thumb|'''Fig.1''' Ribbon colored representation]]




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ASP1 presents <scene name='60/604479/Disulfide_bonds/1'> three disulfide bridges</scene> which are greatly enhancing its structure’s rigidity by linking four of the helixes together.  
ASP1 presents <scene name='60/604479/Disulfide_bonds/1'> three disulfide bridges</scene> which are greatly enhancing its structure’s rigidity by linking four of the helixes together.  


The <scene name='60/604479/1st_disulfide_bridge/1'>first disulfide bridge</scene> is established between <scene name='60/604479/H1/2'>H1</scene> and <scene name='60/604479/H3/2'>H3</scene> through Cysteins 20 and 51. <scene name='60/604479/2nd_disulfide_bridge/1'>An other disulfide bridge</scene> (scene) links <scene name='60/604479/H3/2'>H3</scene> and <scene name='60/604479/H6/1'>H6</scene> through Cys 47 and 98, and the <scene name='60/604479/3rd_disulfide_bridge/1'>third disulfide bridge</scene> connects <scene name='60/604479/H5/1'>H5</scene> and <scene name='60/604479/H6/1'>H6</scene> thanks to Cys 89 and Cys 107.  
The <scene name='60/604479/1st_disulfide_bridge/1'>first disulfide bridge</scene> is established between <scene name='60/604479/H1/2'>H1</scene> and <scene name='60/604479/H3/2'>H3</scene> through Cysteins 20 and 51. <scene name='60/604479/2nd_disulfide_bridge/1'>An other disulfide bridge</scene> links <scene name='60/604479/H3/2'>H3</scene> and <scene name='60/604479/H6/1'>H6</scene> through Cys 47 and 98, and the <scene name='60/604479/3rd_disulfide_bridge/1'>third disulfide bridge</scene> connects <scene name='60/604479/H5/1'>H5</scene> and <scene name='60/604479/H6/1'>H6</scene> thanks to Cys 89 and Cys 107.  


Furthermore, non covalent bonds also play an important role.   
Furthermore, non covalent bonds also play an important role.   
Indeed, at pH 5.5, Asp 66 and Leu 58 establish an hydrogene bond which is able to lock a key component structure such as H4. (scene)
Indeed, at pH 5.5, Asp 66 and Leu 58 establish an hydrogene bond which is able to fix a key component structure such as H4. (scene)
With their hydrogene bond Val 118 and Ile 119 stabilize alpha helix 2 and C terminal’s position. (scene)
With their hydrogene bond Val 118 and Ile 119 stabilize alpha helix 2 and C terminal’s position. (scene)


=== Cavity ===
=== Cavity ===
The dynamic structure of the protein is responsible of the ligand’s binding by adjustement of position. The structure looses its flexibility when CMJ binds. The successful delivery of the effector to the receptor relies on this property. The ligand accepting entry of the cavity is formed by H2, H4 and H5 (scene). However, the inside of the cavity is formed by the loop between helixes H3 and H4, and the region from H4 to H5(scene). The cavity is prone to accept such ligand because of its specific composition. Indeed, cavity components are mainly hydrophobic and aromatic (scene)  and are localized in the same faces of the helix.Thus, it implies that this residues are regularly distant in the primary structure.  
The dynamic structure of the protein is responsible of the ligand’s binding by adjustement of position. The structure looses its flexibility when <scene name='60/604479/Cmj/2'>CMJ Ligand</scene> binds. The successful delivery of the effector to the receptor relies on this property. The ligand accepting entry of the cavity is formed by H2, H4 and H5 (scene). However, the inside of the cavity is formed by the loop between helixes H3 and H4, and the region from H4 to H5(scene). The cavity is prone to accept such ligand because of its specific composition. Indeed, cavity components are mainly <scene name='60/604479/Hydrophobic_residues/1'>hydrophobic and aromatic</scene> and are localized in the same faces of the helix.Thus, it implies that this residues are regularly distant in the primary structure.  


=== Ligands ===
=== Ligands ===
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<scene name='60/604479/Cmj/2'>CMJ Ligand</scene>
<scene name='60/604479/Cmj/2'>CMJ Ligand</scene>


<scene name='60/604479/Cmj_binding_residues/3'>CMJ binding residues</scene>
<scene name='60/604479/Cmj_binding_residues/3'>CMJ binding residues</scene> (A REFAIRE)
 
 
 
 




[[Image:GOL_Ligplot.png|200px|left|thumb|'''Fig.3''' GOL Ligplot]]
[[Image:GOL_Ligplot.png|200px|left|thumb|'''Fig.3''' GOL Ligplot]]




<scene name='60/604479/Gol/1'>GOL Ligand</scene>
<scene name='60/604479/Gol/1'>GOL Ligand</scene>


<scene name='60/604479/Gol_binding_residues/1'>GOL binding residues</scene>
<scene name='60/604479/Gol_binding_residues/1'>GOL binding residues</scene>
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<scene name='60/604479/1st_disulfide_bridge/1'>first disulfide bridge</scene>
<scene name='60/604479/1st_disulfide_bridge/1'>first disulfide bridge</scene>


<scene name='60/604479/2nd_disulfide_bridge/1'>second disulfide bridge</scene>
<scene name='60/604479/2nd_disulfide_bridge/1'>second disulfide bridge</scene>     (A REFAIRE)


<scene name='60/604479/3rd_disulfide_bridge/1'>third disulfide bridge</scene>
<scene name='60/604479/3rd_disulfide_bridge/1'>third disulfide bridge</scene>
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<scene name='60/604479/Hydrophobic_residues/1'>hydrophobic residues</scene>
<scene name='60/604479/Hydrophobic_residues/1'>hydrophobic residues</scene> (A REFAIRE)





Revision as of 16:37, 22 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 a pheromone binding protein from Apis mellifera with a serendipitous ligand at pH 5.5

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