Sandbox Reserved 1068: Difference between revisions

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==Inhibition Studies==
==Inhibition Studies==


MbtI Inhibition studies aid in the future design of anti-tubercular agents and broad-spectrum antibiotics.  Mimics of the enzyme-bound intermediate of MbtI, isochorismate, prove to be significantly more potent inhibitors than the substrate, chorismate mimics (Alexandra Manos-Turve,  2010). Specifically, <scene name='69/694235/3rv6_with_vae1/1'>2-hydroxybenzoate-based inhibitors</scene> that contain extended hydrophobic enol ether side chains at C3 in place of the enol-pyruvate side chain found in chorismate and isochorismate.  
MbtI Inhibition studies aid in the future design of anti-tubercular agents and broad-spectrum antibiotics.  Mimics of the enzyme-bound intermediate of MbtI, isochorismate, prove to be significantly more potent inhibitors than the substrate, chorismate mimics <ref name= "manos-turvey"</ref>. Specifically, <scene name='69/694235/3rv6_with_vae1/1'>2-hydroxybenzoate-based inhibitors</scene> that contain extended hydrophobic enol ether side chains at C3 in place of the enol-pyruvate side chain found in chorismate and isochorismate.  





Revision as of 06:56, 11 April 2015

This Sandbox is Reserved from 02/09/2015, through 05/31/2016 for use in the course "CH462: Biochemistry 2" taught by Geoffrey C. Hoops at the Butler University. This reservation includes Sandbox Reserved 1051 through Sandbox Reserved 1080.
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Mycobacterium tuberculosis salicylate synthase (Mbt1)

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References