User:Andrea Bauer/Sandbox 956

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== Description ==
== Description ==
IIsoprene Synthase is supposed to be a dimeric enzyme which consists of 595 amino acids and has a molecular mass of 68,386 Da. The protein is made up of alpha-helices which form two alpha-helical domains.
IIsoprene Synthase is supposed to be a dimeric enzyme which consists of 595 amino acids and has a molecular mass of 68,386 Da. The protein is made up of alpha-helices which form two alpha-helical domains.
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The N-terminal domain of the protein chain is folded similar to class II terpenoid synthases that are made up of (𝛼𝛼)6 barrels [Wendt et al.,1998]. [[Image:Consurf_key_small.gif|200px|left]]
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The N-terminal domain of the protein chain is folded similar to class II terpenoid synthases that are made up of (𝛼𝛼)6 barrels [Wendt et al.,1998].
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Check the checkbox on the left<jmol>
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<jmolCheckbox>
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<scriptWhenChecked>select protein; define ~consurf_to_do selected; consurf_initial_scene = true; script "/wiki/ConSurf/n0/3n0f_consurf.spt"</scriptWhenChecked>
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<scriptWhenUnchecked>script /wiki/extensions/Proteopedia/spt/initialview01.spt</scriptWhenUnchecked>
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<text>to colour the structure by Evolutionary Conservation</text>
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</jmolCheckbox>
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Up to now there is no catalytic activity known for this domain. Quite the contrary regarding the C-terminal domain of the isoprene synthase: This domain shows up an 𝛼-helical class I terpenoid synthase fold and contains the active site which is surrounded by five 𝛼-helices. The active site of the enzyme is located in a deep hydrophobic pocket which ensures a protection of the reaction intermediate from water.
Up to now there is no catalytic activity known for this domain. Quite the contrary regarding the C-terminal domain of the isoprene synthase: This domain shows up an 𝛼-helical class I terpenoid synthase fold and contains the active site which is surrounded by five 𝛼-helices. The active site of the enzyme is located in a deep hydrophobic pocket which ensures a protection of the reaction intermediate from water.
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== Structure ==
== Structure ==
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The hydrophobic active site pocket has a higher affinity towards a 5-carbon substrate rather than to a 10-carbon complex and Van der Waals interactions take place with DMASPP and the isoprenoid moiety of the active site on F338, V341 and F485.
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The hydrophobic active site pocket has a higher affinity towards a 5-carbon substrate rather than to a 10-carbon complex and Van der Waals interactions take place with DMASPP and the isoprenoid <scene name='68/686749/Isoprenoid_moiety/1'>functional group</scene>of the active site on F338, V341 and F485.
PcISPS remains in the open conformation while being in the DMASPP complex.
PcISPS remains in the open conformation while being in the DMASPP complex.
It was suggested that the diphosphate leaving group itself serves as the general base. So a syn-periplanar elimination reaction was suggested with the development of an intermediate carbocation, which lead to the assumption that the isoprene generation is catalyzed by a substrate-assisted mechanism.
It was suggested that the diphosphate leaving group itself serves as the general base. So a syn-periplanar elimination reaction was suggested with the development of an intermediate carbocation, which lead to the assumption that the isoprene generation is catalyzed by a substrate-assisted mechanism.
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== Cofactors ==
== Cofactors ==
For isoprene synthesis, several mechanisms and metal-binding motifs play an essential role. Metal-binding motifs were found to be conserved like the “aspartate-rich” motif D345DXXD. These metal ions like Mg2+ or Mn2+ are essential for DMAPP diphosphate to be released.
For isoprene synthesis, several mechanisms and metal-binding motifs play an essential role. Metal-binding motifs were found to be conserved like the “aspartate-rich” motif D345DXXD. These metal ions like Mg2+ or Mn2+ are essential for DMAPP diphosphate to be released.
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PcISPS in fact is the first terpenoid synthase to show up metal binding motifs of terpenoid cyclases. These metal binding motifs have the ability to interact with a trinuclear Mg cluster in complex with DMASPP. As can be seen on figure X Mg2+A binds fully while B and C bind less. This can be considered to be because of structural geometry in this binding being less good.
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PcISPS in fact is the first terpenoid synthase to show up metal binding motifs of terpenoid cyclases. These metal binding motifs have the ability to interact with a trinuclear Mg cluster in complex with DMASPP. Mg2+A binds fully while B and C bind less. This can be considered to be because of structural geometry in this binding being less good.
The PcISPS-DMASPP complex doesn’t show significant conformational changes in regard to the single PcISPS. In addition to interactions with metal ions, the diphosphate group also accepts hydrogen bonds from R486 and N489. One (monomer A) or two (monomer B) oxygen atoms and D345 also coordinate Mg2+B and Mg2+A.
The PcISPS-DMASPP complex doesn’t show significant conformational changes in regard to the single PcISPS. In addition to interactions with metal ions, the diphosphate group also accepts hydrogen bonds from R486 and N489. One (monomer A) or two (monomer B) oxygen atoms and D345 also coordinate Mg2+B and Mg2+A.

Revision as of 21:54, 8 January 2015

Structure of Isoprene Synthase from Grey Poplar Leaves (Populus x canescens)

Structure of isoprene synthase at 2.7 Å

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References

Proteopedia Page Contributors and Editors (what is this?)

Andrea Franziska Bauer

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