Sandbox Reserved 1561

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<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.
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<scene name='82/823085/Asp348/1'>Asp348</scene>is the key residue of carbohydrate bonding. The beta-propeller utilizes lectins, called PropLecs, which are found in the beta-propeller folds that contain carbohydrate-binding sites. Asp348 forms essential contacts with bound carbohydrates in the beta-prism lectin domain on blade-six of the eight-bladed beta-propeller.
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<scene name='82/823085/Asp348/1'>Asp348</scene> is the key amino acid residue of carbohydrate bonding.<ref>Kaus, Katherine, et al. The 1.9 Å Crystal Structure of the Extracellular Matrix Protein Bap1 from Vibrio Cholerae Provides Insights into Bacterial Biofilm Adhesion. The American Society for Biochemistry and Molecular Biology, 2019</ref> The beta-propeller utilizes lectins, called PropLecs, which are found in the beta-propeller folds that contain carbohydrate-binding sites. Asp348 forms essential contacts with bound carbohydrates in the beta-prism lectin domain on blade-six of the eight-bladed beta-propeller.
== Energy Transformation ==
== Energy Transformation ==

Revision as of 06:50, 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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