Sandbox Reserved 1757

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== Biological relevance and broader implications ==
== Biological relevance and broader implications ==
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This article’s goal was to test the function and relation of the protein Mevalonate 3,5-bisphosphate and compare it to its homologs. The article seeks to explore the evolutionary changes that the protein has gone through that managed to separate it from its suspected evolutionary predecessors which require ATP to function and allowed it to become ATP-independent. This suspected evolutionary relevance is due to the residual signs of the ATP binding site which are still present in the Mevalonate 3,5-bisphosphate despite the protein being completely ATP-independent.
== Important amino acids==
== Important amino acids==
The article only really talks about how the ligand, like a fatty acid, lacks an ATP binding site. It also talks about the necessity of the ligand being amphipathic as there are hydrophilic and hydrophobic charges found in the binding site.
The article only really talks about how the ligand, like a fatty acid, lacks an ATP binding site. It also talks about the necessity of the ligand being amphipathic as there are hydrophilic and hydrophobic charges found in the binding site.

Revision as of 04:46, 13 December 2022

This Sandbox is Reserved from November 4, 2022 through January 1, 2023 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 1755 through Sandbox Reserved 1764.
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Structural Information on Mevalonate 3,5-bisphosphate decarboxylase

Caption for this structure

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References

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