Sandbox Reserved 1724: Difference between revisions

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=== Active Site ===
=== Active Site ===
VKOR uses two catalytic amino acids, <scene name='90/904329/Kohhbond/3'>Tyr139 and Asn80</scene> to stabilize vitamin K in the binding pocket. Tyr139 and Asn80 hydrogen bond to carbonyl groups on both structures and stabilizes them within the binding pocket <ref name="Liu">PMID:33154105</ref>.  
VKOR uses two substrate binding amino acids, <scene name='90/904329/Kohhbond/4'>Tyr139 and Asn80</scene> to stabilize vitamin K in the binding pocket. Tyr139 and Asn80 hydrogen bond to carbonyl groups on vitamin K and stabilizes it within the binding pocket <ref name="Liu">PMID:33154105</ref>. Vitamin K is also bound via hydrophobic interactions within the binding pocket of VKOR. Hydrophobic residues of VKOR such as <scene name='90/904329/Kohydroaa/4'>Phe83, Phe87, Tyr88</scene>, form a hydrophobic tunnel within the binding pocket <ref name="Liu">PMID:33154105</ref>.  
 
Other than the two previously mentioned hydrogen bonds (Tyr139 and Asn80), vitamin K is also bound via hydrophobic interactions within the binding pocket of VKOR. Hydrophobic residues of VKOR such as <scene name='90/904329/Kohydroaa/4'>Phe83, Phe87, Tyr88</scene>, form a hydrophobic tunnel within the binding pocket <ref name="Liu">PMID:33154105</ref>.  


== Catalytic Cycle ==
== Catalytic Cycle ==

Revision as of 19:51, 18 April 2022

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This Sandbox is Reserved from February 28 through September 1, 2022 for use in the course CH462 Biochemistry II taught by R. Jeremy Johnson at the Butler University, Indianapolis, USA. This reservation includes Sandbox Reserved 1700 through Sandbox Reserved 1729.
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Vitamin K Epoxide Reductase

Overall Structure of Vitamin K Epoxide Reductase

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References

Student Contributors

Izabella Jordan, Emma Varness