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Sandbox Reserved 1561

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<scene name='82/823085/Active_binding_sites/1'>Active Binding Sites</scene> Bap1 active site appears to be outside of the central cavity of the eight-bladed beta-propeller. There seems to be no catalytic triad associated within Bap1.
<scene name='82/823085/Active_binding_sites/1'>Active Binding Sites</scene> Bap1 active site appears to be outside of the central cavity of the eight-bladed beta-propeller. There seems to be no catalytic triad associated within Bap1.
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<scene name='82/823085/Key_bap1_residues/1'>Key Bap1 Residues</scene>
<scene name='82/823085/Citrate_anion/2'>Citrate anion</scene>The citrate molecule in Bap1 binds in the carbohydrate-binding site in the beta-prism domains. Citrate is required to produce optimal crystal form due to the extensive crystal contacts in the area.
<scene name='82/823085/Citrate_anion/2'>Citrate anion</scene>The citrate molecule in Bap1 binds in the carbohydrate-binding site in the beta-prism domains. Citrate is required to produce optimal crystal form due to the extensive crystal contacts in the area.

Revision as of 04:41, 9 December 2019

This Sandbox is Reserved from Aug 26 through Dec 12, 2019 for use in the course CHEM 351 Biochemistry taught by Bonnie_Hall at the Grand View University, Des Moines, USA. This reservation includes Sandbox Reserved 1556 through Sandbox Reserved 1575.
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Bap1 from Vibrio cholera plays a crucial role in biofilm binding affinity

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