Binding site of AChR: Difference between revisions
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== Superimpose HAP on AChBP == | == Superimpose HAP on AChBP == | ||
There is a 13 amino acids high affinity peptide(<scene name='68/688431/Hap/2'>HAP</scene>) which corresponding to residues 187-199 of the AChR that can inhibits the binding of α-BTX to AChR. And the high affinity and specific interaction of α-bungarotoxin (<scene name='68/688431/Structure_of_btx/1'>α-BTX</scene>) with AChR has been of considerable importance in the study of the binding site of AChR.<ref>PMID:11683996</ref> So | There is a 13 amino acids high affinity peptide(<scene name='68/688431/Hap/2'>HAP</scene>) which corresponding to residues 187-199 of the AChR that can inhibits the binding of α-BTX to AChR. And the high affinity and specific interaction of α-bungarotoxin (<scene name='68/688431/Structure_of_btx/1'>α-BTX</scene>) with AChR has been of considerable importance in the study of the binding site of AChR.<ref>PMID:11683996</ref> The little peptide can bind to α-BTX as competitive inhibitors of α-BTX biding to AChR. So the complex between α-bungarotoxin and this little peptide(HAP) maybe can used as a model to study the binding site of AChR. | ||
The ligand binding site of AChR is mainly located at the α-subunits. The acetylcholine binding protein(<scene name='68/688431/Achbp/2'>AChBP</scene>) is most closely related to the α-subunits of the nAChR. AChBP is a soluble protein found in the snail Lymnaea stagnalis. Nearly all residues that are conserved within the nAChR family are present in AChBP, including those that are relevant for lignad binding.<ref>PMID:11357122</ref> And AChBP can also bind with α-Neurotoxins. So the AChBP structure is obviously an ideal candidate for testing the relevance of the conformation of the HAP when bound to α-BTX, to that of the corresponding binding region in AChR.<ref>PMID:11683996</ref> | The ligand binding site of AChR is mainly located at the α-subunits. The acetylcholine binding protein(<scene name='68/688431/Achbp/2'>AChBP</scene>) is most closely related to the α-subunits of the nAChR. AChBP is a soluble protein found in the snail [http://en.wikipedia.org/wiki/Lymnaea_stagnalis Lymnaea stagnalis]. Nearly all residues that are conserved within the nAChR family are present in AChBP, including those that are relevant for lignad binding.<ref>PMID:11357122</ref> And AChBP can also bind with α-Neurotoxins. So the AChBP structure is obviously an ideal candidate for testing the relevance of the conformation of the HAP when bound to α-BTX, to that of the corresponding binding region in AChR.<ref>PMID:11683996</ref> | ||
[[Image:Comparison between HAP and AChBP.PNG|thumb|350px|Fig. 1. Comparison, in Stere, of the 3D Structure of HAP(Red) and Loop 182-193 of AChBP(Blue)]] | [[Image:Comparison between HAP and AChBP.PNG|thumb|350px|Fig. 1. Comparison, in Stere, of the 3D Structure of HAP(Red) and Loop 182-193 of AChBP(Blue)]] | ||
In order to use the complex between α-BTX and HAP to identify the binding site of the AChR, the structure of HAP should homologous with the α-subunits of nAChR. AChBP is a very important and ideal model to study the structure of AChR, which structure has already been solved. So comparing the HAP with the AChBP will show whether HAP can be used as a model to study the binding site of AChR. | |||
[[Image:Combined BTX HAP and AchBP.png|thumb|350px|Fig. 2. A Stereo View of the Combined Model of α-BTX-HAP(Red) and AChBP subunits]] | [[Image:Combined BTX HAP and AchBP.png|thumb|350px|Fig. 2. A Stereo View of the Combined Model of α-BTX-HAP(Red) and AChBP subunits]] | ||
The overly of the first 12 residues of the 13-mer HAP on AChBP residues 182-193 shows that the HAP has almost the same conformation with the loop of AChBP(Fig 1), in the figure the red one is 13-mer little peptide and the blue one is | The overly of the first 12 residues of the 13-mer HAP on AChBP residues 182-193 shows that the HAP has almost the same conformation with the loop 182-193 of AChBP(Fig 1), in the figure the red one is 13-mer little peptide and the blue one is loop 182-193 of AChBP. | ||
The figure 2 | The figure 2 shows that the <scene name='68/688431/Btx_complex_with_two_subunits/1'>superposition of the HAP on loop 182-193</scene> the α-BTX to fit exquisitely into the interface of two subunits of the pentameric AChBP. it shows the stereo view of the combined model of α-BTX-HAP(Red) and AChBP structure with subunit A in green and subunit B in yellow showing the insertion of loop 2 of the toxin into the interface of the to subunits. In order to identify more clearly that the little 13-mer peptide is actually have almost the same structure with the 182-193 loop with AChBP, we compare two structures: <scene name='68/688431/Btx_complex_with_two_subunits/5'>removing</scene> the HAP form the structure and <scene name='68/688431/Btx_complex_with_two_subunits/6'> | ||
superposition</scene> the HAP on the AChBP. | superposition</scene> the HAP on the AChBP. | ||
So that the little peptide has almost the same structure with the loop of AChBP binding to α-BTX, which means it can be used as a model to study the binding site of AChR. | |||
It is noteworthy that the positively charged <scene name='68/688431/Hepes_black/2'>HEPES</scene> molecule shows the location of the acetylcholine binding site and the blockage of passage to this site caused by the toxin. So the ACh binding site in AChBP is assigned by the localization of HEPES. | It is noteworthy that the positively charged <scene name='68/688431/Hepes_black/2'>HEPES</scene> molecule shows the location of the acetylcholine binding site and the blockage of passage to this site caused by the toxin. So the ACh binding site in AChBP is assigned by the localization of HEPES. | ||
Revision as of 09:05, 2 February 2015
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