Sandbox Reserved 1072

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Of the active site residues that are involved in enzyme catalyzed activation of INH, only <scene name='69/694238/Active_site/8'>His 108</scene> has been a site for mutations that can increase resistance to INH. His 108 has been reported to mutate to glutamic acid and [http://en.wikipedia.org/wiki/Glutamine glutamine]. These mutations reduce the affinity for INH but the hydrogen bond donor/acceptor groups of glutamine would still allow INH to bind. However, glutamine wouldn't be able to act as proton shuttle in the way His 108 does in the enzyme-catalyzed activation pathway.
Of the active site residues that are involved in enzyme catalyzed activation of INH, only <scene name='69/694238/Active_site/8'>His 108</scene> has been a site for mutations that can increase resistance to INH. His 108 has been reported to mutate to glutamic acid and [http://en.wikipedia.org/wiki/Glutamine glutamine]. These mutations reduce the affinity for INH but the hydrogen bond donor/acceptor groups of glutamine would still allow INH to bind. However, glutamine wouldn't be able to act as proton shuttle in the way His 108 does in the enzyme-catalyzed activation pathway.
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No known mutants have been reported to occur at Asp 137, although a few mutants nearby could cause local conformational changes and thereby altering the orientation of the Asp 137 side chain, making it less effective in binding and activation of INH <ref name="one"/>.
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No known mutants have been reported to occur at <scene name='69/694238/Active_site/6'>Asp 137</scene>, although a few mutants nearby could cause local conformational changes and thereby altering the orientation of the Asp 137 side chain, making it less effective in binding and activation of INH <ref name="one"/>.

Revision as of 12:04, 21 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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PDB ID 1SJ2

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