Sandbox Reserved 1759

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== Function of your protein ==
== Function of your protein ==
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The protein of interest is the enzyme mevalonate 3,5-bisphosphate decarboxylase. The MVA3,5-bisphosphate decarboxylase enzyme was observed in Thermoplasma-type MVA pathway, specifically as a catalytic enzyme in the MBD reaction. The basic function of MVA3,5-bisphosphate decarboxylase is to catalyze the removal of the phosphate group from the 3rd carbon of mevalonate 3,5-bisphosphate (MVA3,5BP). The enzyme also accompanies the decarboxylation of the substrate. MVA 3,5-bisphosphate decarboxylase acts upon MVA3,5BP to produce isopentnyl phosphate (IP), PO4, and CO2 in the MBD reaction.
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The protein of interest is the enzyme mevalonate 3,5-bisphosphate decarboxylase. The MVA3,5-bisphosphate decarboxylase enzyme was observed in Thermoplasma-type MVA pathway, specifically as a catalytic enzyme in the MBD reaction. The function of MVA3,5-bisphosphate decarboxylase is to catalyze the removal of the phosphate group from the 3rd carbon of mevalonate 3,5-bisphosphate (MVA3,5BP). The enzyme also accompanies the decarboxylation of the substrate. MVA 3,5-bisphosphate decarboxylase acts upon MVA3,5BP to produce isopentnyl phosphate (IP), PO4, and CO2 in the MBD reaction.
<scene name='93/934003/Protein_view_2/1'>Ligand of interest</scene>, Oleic Acid (<scene name='93/934003/Ola/1'>OLA</scene>)
<scene name='93/934003/Protein_view_2/1'>Ligand of interest</scene>, Oleic Acid (<scene name='93/934003/Ola/1'>OLA</scene>)

Revision as of 22:12, 9 December 2022

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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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Mevalonate 3,5-Bisphosphate Decarboxylase Structure

Caption for this structure

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References

[1]

  1. Azami Y, Hattori A, Nishimura H, Kawaide H, Yoshimura T, Hemmi H. (R)-mevalonate 3-phosphate is an intermediate of the mevalonate pathway in Thermoplasma acidophilum. J Biol Chem. 2014 Jun 6;289(23):15957-67. doi: 10.1074/jbc.M114.562686. Epub 2014, Apr 22. PMID:24755225 doi:http://dx.doi.org/10.1074/jbc.M114.562686
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