Fragment-Based Drug Discovery: Difference between revisions

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==== Ligand Linking ====
==== Ligand Linking ====
Applying these 3-D structures to the drug design process involves using either structure-based drug design (SBDD) or ligand-based drug design (LBDD).
==== ABT-737 ====
One example of drug discovery using SAR by NMR includes the development of <scene name='Sandbox_reserved_394/Abt-737/1'>ABT-737</scene>. This compound has been shown to effectively inhibit the over-expression of <scene name='Sandbox_reserved_394/Bcl-xl/1'>Bcl-xl</scene> which is a protein that is commonly observed to be over-expressed in many types of cancers. It acts an inhibitor of apoptosis and may also contribute to chemotherapy resistance. Bcl-xl inhibition by ABT-737 therefore, allows apoptosis to occur and helps to prevent chemo-resistance.
===== How SAR by NMR was used to develop ABT-737 =====
Three ligands with moderate affinity for Bcl-xl were analyzed using SAR by NMR in order to develop ABT-737. The structural components that allow the ligands to bind to the protein were then linked together to form ABT-737 - the final compound with high-affinity for Bcl-xl.
<scene name='Sandbox_reserved_394/Compound_1/2'>Compound 1</scene> is a 4'-fluoro-biphenyl-4-carboxylic acid. SAR by NMR was used to identify the interactions that this compound forms with Bcl-xl. The fluorobiphenyl system is hydrophobic and its interactions form a <scene name='Sandbox_reserved_394/Compound_1/4'>"hydrophobic pocket"</scene> around the fluorobiphenyl system. The <scene name='Sandbox_reserved_394/Compound_1/5'>carboxyilic acid portion binds near Gly 142</scene> of Bcl-xl. The carboxylic acid is later substituted with an acyl sulfonamide (shown in compound 2) which provides increased affinity.
<scene name='Sandbox_reserved_394/Compound_2/1'>Compound 2</scene> binds with high affinity to Bcl-xl. The <scene name='Sandbox_reserved_394/Compound_2/2'>acylsulfonamide portion forms a hydrogen bond with Gly 142</scene>. The substitution of this sulfonamide for the carboxylic acid from compound 1 allows compound 2 to form a much stronger bond with Bcl-xl by bringing the shared acidic proton in closer proximity to GLY 142. The
Once the components responsible for binding are identified, they can be modified, as in the case of compound 1 where the carboxylic acid was substituted with an acyl sulfonamide, and then they are linked together to create a compound with optimal binding affinity.





Revision as of 16:23, 31 October 2012

Drug Design: Fragment-Based Drug Discovery

Bcl-xl in complex with ABT-737 (PDB entry 2yxj)

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References

Proteopedia Page Contributors and Editors (what is this?)

Justin Weekley, Arthur Cox, Jaime Prilusky