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Sandbox Reserved 1459
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The <scene name='79/799587/Catalytic_triad/1'>catalytic triad</scene> of VesB is made up of Asp125-His78-Ser221. In this triad, aspartic acid is deprotonated and proton transfer goes from histidine to aspartic acid. Since histidine is then deprotonated, it grabs the proton from serine's hydroxyl group. This active serine then can attack an incoming substrate, which allows VesB to cleave the substrate. | The <scene name='79/799587/Catalytic_triad/1'>catalytic triad</scene> of VesB is made up of Asp125-His78-Ser221. In this triad, aspartic acid is deprotonated and proton transfer goes from histidine to aspartic acid. Since histidine is then deprotonated, it grabs the proton from serine's hydroxyl group. This active serine then can attack an incoming substrate, which allows VesB to cleave the substrate. | ||
The active site of VesB is made of the catalytic triad (Asp125,His78,Ser221), a hydrophobic pocket (Val159, Val180, Ile164), and a cleavage site (Arg32, Ile33). Asp220 is also in the active site and coordinates the N-terminal group of Ile33 in active VesB. | The active site of VesB is made of the catalytic triad (Asp125,His78,Ser221), a hydrophobic pocket (Val159, Val180, Ile164), and a cleavage site (Arg32, Ile33). Asp220 is also in the active site and coordinates the N-terminal group of Ile33 in active VesB. | ||
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Revision as of 19:55, 15 November 2018
| This Sandbox is Reserved from October 22, 2018 through April 30, 2019 for use in the course Biochemistry taught by Bonnie Hall at the Grand View University, Des Moines, IA USA. This reservation includes Sandbox Reserved 1456 through Sandbox Reserved 1470. |
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Structure and Function of VesB
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