Sandbox Reserved 333: Difference between revisions

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==Structure==
==Structure==
:Mevalonate diphosphate decarboxylase exists as a symmetrical dimer<ref name = "Byres"/> <ref name = "Voynova"/> <ref name ="ByresMartin"/> . The C-terminal domains of each monomer are symmetrically oriented towards one another around a solvent-filled channel <ref name = "Byres"/>. The dimer is stabilized between alpha helices 6 and 10 on each monomer, and also through salt bridge interactions, tyrosine and proline stacking, and hydrophobic interactions <ref name = "Byres"/>. The interface between the monomers is very small, with only 7% of the total surface area of the monomer engaged in the interface interaction <ref name = "Voynova"/>. This small interface between monomers is a characteristic of GHMP kinases <ref name = "Voynova"/>. Each monomer consists of a single polypeptide chain with 331 amino acid residues<ref name = "RCSB"> PMID: 6667333  </ref>. Each polypeptide chain has <scene name='Sandbox_Reserved_333/Mdd/3'>13 alpha helices and 15 beta sheets </scene> <ref name ="RCSB"/>. The active site on each monomer is a deep, highly charged cleft made up seven segments of polypeptide chain <ref name = "Byres"/> . The active sites are located away from the solvent filled channel, and they are unaffected by dimerization <ref name = "Byres"/>. One important animo acid in the active site is Tyrosine 19 (Fig 2) <ref name = "Byres"/>. It is strategically placed to interact with the terminal phosphate group of mevalonate diphosphate when it is bound in the active site <ref name = "Byres"/>. An ATP binding polypeptide segment called the P loop is also located near the active site <ref name = "Byres"/>.  A total of 19 amino acid residue side chains are involved with substrate binding in the active site <ref name = "Byres"/>.
:Mevalonate diphosphate decarboxylase exists as a symmetrical dimer<ref name = "Byres"/> <ref name = "Voynova"/> <ref name ="ByresMartin"/> . The C-terminal domains of each monomer are symmetrically oriented towards one another around a solvent-filled channel <ref name = "Byres"/>. The dimer is stabilized between alpha helices 6 and 10 on each monomer, and also through salt bridge interactions, tyrosine and proline stacking, and hydrophobic interactions <ref name = "Byres"/>. The interface between the monomers is very small, with only 7% of the total surface area of the monomer engaged in the interface interaction <ref name = "Voynova"/>. This small interface between monomers is a characteristic of GHMP kinases <ref name = "Voynova"/>. Each monomer consists of a single polypeptide chain with 331 amino acid residues<ref name = "RCSB"> PMID: 6667333  </ref>. Each polypeptide chain has <scene name='Sandbox_Reserved_333/Mdd/3'>13 alpha helices and 15 beta sheets </scene> <ref name ="RCSB"/>. The active site on each monomer is a deep, highly charged cleft made up seven segments of polypeptide chain <ref name = "Byres"/> . The active sites are located away from the solvent filled channel, and they are unaffected by dimerization <ref name = "Byres"/>. The amino acid residues Tyr19, Trp20, Trp158 and Met203 form a <scene name='Sandbox_Reserved_333/Hydrophobic_surfaces/1'>Hydrophobic surface</scene> that is important in the active site for helping to orient the Mevalonate diphosphate properly <ref name = "Byres"/>. One important animo acid in the active site is Tyrosine 19 (Fig 2) <ref name = "Byres"/>. It is strategically placed to interact with the terminal phosphate group of mevalonate diphosphate when it is bound in the active site <ref name = "Byres"/>. An ATP binding polypeptide segment called the P loop is also located near the active site <ref name = "Byres"/>.  A total of 19 amino acid residue side chains are involved with substrate binding in the active site <ref name = "Byres"/>.


[[Image:Tyrosine.png|thumb|left| Fig 2 Tyrosine 19 in the active site of mevalonate diphosphate decarboxylase.]]
[[Image:Tyrosine.png|thumb|left| Fig 2 Tyrosine 19 in the active site of mevalonate diphosphate decarboxylase.]]