Sandbox Reserved 427
From Proteopedia
(Difference between revisions)
(→'''Vitamin D binding protein (1j7e)<ref>PMID: 11799400 </ref>''') |
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[[Student Projects for UMass Chemistry 423 Spring 2016]] | [[Student Projects for UMass Chemistry 423 Spring 2016]] | ||
+ | <StructureSection load='1j7e' size='350' side='right' caption='caption for Molecular Playground (PDB entry [[1j7e]])' scene=''> | ||
==Introduction== | ==Introduction== | ||
- | <Structure load='1j7e' size='300' frame='true' align='right' caption='1j7e, Vitamin D Binding Protein' scene='Insert optional scene name here' /> | ||
Vitamin D binding protein Overview: | Vitamin D binding protein Overview: | ||
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4) Brief mention of unique binding characteristics. | 4) Brief mention of unique binding characteristics. | ||
5) Therapeutic uses | 5) Therapeutic uses | ||
- | <br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br> | ||
==Overall Structure== | ==Overall Structure== | ||
- | <Structure load='1j7e' size='300' frame='true' align='right' caption='1j7e, Vitamin D Binding Protein' scene='Insert optional scene name here' /> | ||
The tertiary structure consists of mainly <scene name="48/483884/Alpha_helices/2">alpha helices</scene>, which can be seen in pink. The quaternary structure of the protein consists of <scene name='48/483884/Twosubunits/1'>two subunits</scene> forming a complex. The structure is about 58 kDA in size and made up of 458 amino acids. | The tertiary structure consists of mainly <scene name="48/483884/Alpha_helices/2">alpha helices</scene>, which can be seen in pink. The quaternary structure of the protein consists of <scene name='48/483884/Twosubunits/1'>two subunits</scene> forming a complex. The structure is about 58 kDA in size and made up of 458 amino acids. | ||
=====Alpha Helical Domains===== | =====Alpha Helical Domains===== | ||
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=====Actin Binding===== | =====Actin Binding===== | ||
The tertiary structure of the protein is optimized for it binding with actin, efficiently folding into a complex requiring little change of the structure. | The tertiary structure of the protein is optimized for it binding with actin, efficiently folding into a complex requiring little change of the structure. | ||
- | <br><br><br><br><br><br><br><br><br><br><br> | ||
==Binding Interactions== | ==Binding Interactions== | ||
- | <Structure load='1j7e' size='300' frame='true' align='right' caption='1j7e, Insert caption here' scene='Insert optional scene name here' /> | ||
'''The Vitamin D Binding Site''' | '''The Vitamin D Binding Site''' | ||
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- | <br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br> | ||
==Additional Features== | ==Additional Features== | ||
- | + | Vitamin D Binding Protein binds to many different different substrates including actin and various synthetic ligands | |
+ | scene='Insert optional scene name here' /> | ||
=====Synthesis===== | =====Synthesis===== | ||
Synthesized in the liver. Will also include details about folding, posttranslational modification and chaperone proteins, if any. | Synthesized in the liver. Will also include details about folding, posttranslational modification and chaperone proteins, if any. | ||
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Deficient mice show no phenotype. White and Cooke. | Deficient mice show no phenotype. White and Cooke. | ||
=====Other Notable Ligands===== | =====Other Notable Ligands===== | ||
- | <br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br> | ||
==Quiz Question 1== | ==Quiz Question 1== | ||
- | <Structure load='1j7e' size='300' frame='true' align='right' caption='pdbcode, Insert caption here' scene='Insert optional scene name here' /> | ||
- | <br><br><br><br><br><br><br><br><br><br><br><br><br><br><br> | ||
Vitamin D binding protein is very similar to <scene name='48/483884/Hsa/1'>HSA</scene> based on sequence similarity as well as an almost identical tertiary structure. However, HSA binds to actin instead, and is actually unable to bind to Vitamin D3. Based on what you have learned about the binding nature in domain I of Vitamin D Binding Protein, hypothesize a reason why HSA is unable to bind to Vitamin D3, but Vitamin D binding protein can. The following scenes should help guide your thinking = Domain I Helices 2,3,4 HSA; Domain I Helices 2,3,4 Vitamin D binding Protein. | Vitamin D binding protein is very similar to <scene name='48/483884/Hsa/1'>HSA</scene> based on sequence similarity as well as an almost identical tertiary structure. However, HSA binds to actin instead, and is actually unable to bind to Vitamin D3. Based on what you have learned about the binding nature in domain I of Vitamin D Binding Protein, hypothesize a reason why HSA is unable to bind to Vitamin D3, but Vitamin D binding protein can. The following scenes should help guide your thinking = Domain I Helices 2,3,4 HSA; Domain I Helices 2,3,4 Vitamin D binding Protein. |
Revision as of 21:52, 2 March 2016
This Sandbox is Reserved from January 19, 2016, through August 31, 2016 for use for Proteopedia Team Projects by the class Chemistry 423 Biochemistry for Chemists taught by Lynmarie K Thompson at University of Massachusetts Amherst, USA. This reservation includes Sandbox Reserved 425 through Sandbox Reserved 439. |
Vitamin D binding protein (1j7e)[1]
Alex Debreceni, Robert Green, Uday Prakhya, Nicholas Rivelli, Elizabeth Swanson
Student Projects for UMass Chemistry 423 Spring 2016
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