Journal:Protein Science:2
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- | <StructureSection load='' size='450' side='right' scene='72/725874/Cv/ | + | <StructureSection load='' size='450' side='right' scene='72/725874/Cv/39' caption=''> |
===The Impact of Crystallization Conditions on Structure-Based Drug Design: a Case Study on the Methylene Blue/Acetylcholinesterase Complex=== | ===The Impact of Crystallization Conditions on Structure-Based Drug Design: a Case Study on the Methylene Blue/Acetylcholinesterase Complex=== | ||
- | <big>Orly Dym, Wanling Song, Clifford Felder, Esther Roth, Valery Shnyrov, Yacov, Ashani, Yechun Xu, Robbie P. Joosten, Lev Weiner, Joel L. Sussman, and Israel Silman</big> <ref> | + | <big>Orly Dym, Wanling Song, Clifford Felder, Esther Roth, Valery Shnyrov, Yacov, Ashani, Yechun Xu, Robbie P. Joosten, Lev Weiner, Joel L. Sussman, and Israel Silman</big> <ref>PMID:26990888</ref> |
<hr/> | <hr/> | ||
<b>Molecular Tour</b><br> | <b>Molecular Tour</b><br> | ||
- | Crystal structure of ''Tc''AChE <scene name='72/725874/Cv/ | + | Crystal structure of ''Tc''AChE <scene name='72/725874/Cv/40'>shows its two subdomains</scene> (<font color='purple'><b>residues 4-305, purple</b></font>, and <font color='red'><b>residues 306-535, red</b></font>). The <scene name='72/725874/Cv/29'>entrance to the active-site gorge</scene> located between the two sub-domains. There are several of the conserved aromatic residues: <scene name='72/725874/Cv/30'>Trp279</scene>, in the peripheral anionic site (PAS) at the top of the gorge; <scene name='72/725874/Cv/31'>Tyr121</scene>, mid-way down the gorge, and <scene name='72/725874/Cv/32'>Trp84</scene>, the principal element of the catalytic ‘anionic’ sub-site (CAS), near the bottom. CAS involves the <scene name='72/725874/Cv/33'>catalytic triad Ser200, His440, and Glu327</scene>. <span style="color:yellow;background-color:black;font-weight:bold;">The carbon atoms of these conserved residues colored yellow</span>. |
Structure-based drug design utilizes experimental 3D apo-protein or complex structures that are usually retrieved from the PDB. Over 57% of the crystallographic PDB entries were obtained with polyethyleneglycols (PEGs) as precipitant and/or as cryoprotectant, but fewer than 6% of | Structure-based drug design utilizes experimental 3D apo-protein or complex structures that are usually retrieved from the PDB. Over 57% of the crystallographic PDB entries were obtained with polyethyleneglycols (PEGs) as precipitant and/or as cryoprotectant, but fewer than 6% of | ||
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The DECA molecule in the DECA-AS/''Tc''AChE structure ([[5e4j]]) is aligned along the axis of the active-site gorge, spanning the CAS and the PAS. The DECA makes non-bonded interactions with six of the conserved aromatic residues that line the gorge surface, ''viz.'', <scene name='72/725874/Cv/34'>Tyr70, Trp84, Tyr121, Trp279, Phe330 and Phe331</scene>. | The DECA molecule in the DECA-AS/''Tc''AChE structure ([[5e4j]]) is aligned along the axis of the active-site gorge, spanning the CAS and the PAS. The DECA makes non-bonded interactions with six of the conserved aromatic residues that line the gorge surface, ''viz.'', <scene name='72/725874/Cv/34'>Tyr70, Trp84, Tyr121, Trp279, Phe330 and Phe331</scene>. | ||
- | In the DECA-PEG/''Tc''AChE structure ([[5e2i]]) a <scene name='72/725874/Cv/35'>PEG oligomer is seen at the bottom of the active-site gorge</scene>, between the proximal quaternary group of the DECA and the indole ring of Trp84. <font color='red'><b>DECA molecule is colored red</b></font>, and the <font color='blue'><b>PEG moiety blue</b></font>. Due to the presence of the PEG molecule oligomer at the bottom of the gorge in the DECA-PEG/TcAChE structure, the DECA molecule is positioned further up the gorge than in the DECA-AS/''Tc''AChE structure. <scene name='72/725874/Cv/ | + | In the DECA-PEG/''Tc''AChE structure ([[5e2i]]) a <scene name='72/725874/Cv/35'>PEG oligomer is seen at the bottom of the active-site gorge</scene>, between the proximal quaternary group of the DECA and the indole ring of Trp84. <font color='red'><b>DECA molecule is colored red</b></font>, and the <font color='blue'><b>PEG moiety blue</b></font>. Due to the presence of the PEG molecule oligomer at the bottom of the gorge in the DECA-PEG/TcAChE structure, the DECA molecule is positioned further up the gorge than in the DECA-AS/''Tc''AChE structure. <scene name='72/725874/Cv/38'>Overlay of the DECA-PEG/TcAChE and DECA-AS/TcAChE structures</scene>. The <font color='red'><b>DECA in the DECA-PEG/''Tc''AChE structure is shown as red ball-and-sticks</b></font>, and the <font color='blue'><b>PEG oligomers as blue ball-and-sticks</b></font>. The <span style="color:cyan;background-color:black;font-weight:bold;">DECA in the DECA-AS/''Tc''AChE structure is shown as cyan ball-and-sticks</span>. <scene name='72/725874/Cv/37'>Click here to see animation of this scene</scene>. |
<scene name='72/725874/Cv1/10'>MB within the gorge of the MB-AS/TcAChE complex</scene> ([[5dlp]]). <font color='purple'><b>The MB molecule is colored purple</b></font>. In MB-PEG/''Tc''AChE complex ([[5e4t]]) <scene name='72/725874/Cv1/8'>one PGE nests against MB at the top of the active-site gorge, a PEG is midway down the gorge, and one an additional PGE is located at the bottom of the gorge, between the proximal dimethylamino moiety of MB and the indole ring of Trp84</scene>. Consequently, the MB molecule is positioned further up the gorge than in the MB-AS/''Tc''AChE complex. <scene name='72/725874/Cv1/14'>Overlay of the MB-PEG/TcAChE and MB-AS/TcAChE structures</scene>. <font color='purple'><b>The MB in the MB-PEG/''Tc''AChE structure is shown as purple ball-and-sticks</b></font>, and the <font color='blue'><b>PEG/PGE oligomers as blue ball-and-sticks</b></font>. The <span style="color:deeppink;background-color:black;font-weight:bold;">MB in the MB-AS/''Tc''AChE structure is shown as pink ball-and-sticks</span>. <scene name='72/725874/Cv1/15'>Click here to see animation of this scene</scene>. | <scene name='72/725874/Cv1/10'>MB within the gorge of the MB-AS/TcAChE complex</scene> ([[5dlp]]). <font color='purple'><b>The MB molecule is colored purple</b></font>. In MB-PEG/''Tc''AChE complex ([[5e4t]]) <scene name='72/725874/Cv1/8'>one PGE nests against MB at the top of the active-site gorge, a PEG is midway down the gorge, and one an additional PGE is located at the bottom of the gorge, between the proximal dimethylamino moiety of MB and the indole ring of Trp84</scene>. Consequently, the MB molecule is positioned further up the gorge than in the MB-AS/''Tc''AChE complex. <scene name='72/725874/Cv1/14'>Overlay of the MB-PEG/TcAChE and MB-AS/TcAChE structures</scene>. <font color='purple'><b>The MB in the MB-PEG/''Tc''AChE structure is shown as purple ball-and-sticks</b></font>, and the <font color='blue'><b>PEG/PGE oligomers as blue ball-and-sticks</b></font>. The <span style="color:deeppink;background-color:black;font-weight:bold;">MB in the MB-AS/''Tc''AChE structure is shown as pink ball-and-sticks</span>. <scene name='72/725874/Cv1/15'>Click here to see animation of this scene</scene>. |
Current revision
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- ↑ Dym O, Song W, Felder C, Roth E, Shnyrov V, Ashani Y, Xu Y, Joosten RP, Weiner L, Sussman JL, Silman I. The Impact of Crystallization Conditions on Structure-Based Drug Design: A Case Study on the Methylene Blue/Acetylcholinesterase Complex. Protein Sci. 2016 Mar 14. doi: 10.1002/pro.2923. PMID:26990888 doi:http://dx.doi.org/10.1002/pro.2923
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