JMS/sandbox9

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They identified two contributing factors to this enzymes thermal prowess. Firstly, he found the thermophilic enzyme had a unique <scene name='JMS/sandbox5/Ion_network/4'>four amino acid binding-network</scene> that encompassed two monomers of the tetrameric enzyme, repeating between each monomer and its two partner monomers. This network apparently makes the oligomer more stable. Secondly, the thermophilic enzyme was <scene name='JMS/sandbox5/Proline/2'>enriched for proline</scene>. Because proline's side chain has minimal degree of freedom, proline's, unlike other amino acids, are minimally restricted by folding. There is therefore a smaller loss of entropy upon folding into the native structure.
They identified two contributing factors to this enzymes thermal prowess. Firstly, he found the thermophilic enzyme had a unique <scene name='JMS/sandbox5/Ion_network/4'>four amino acid binding-network</scene> that encompassed two monomers of the tetrameric enzyme, repeating between each monomer and its two partner monomers. This network apparently makes the oligomer more stable. Secondly, the thermophilic enzyme was <scene name='JMS/sandbox5/Proline/2'>enriched for proline</scene>. Because proline's side chain has minimal degree of freedom, proline's, unlike other amino acids, are minimally restricted by folding. There is therefore a smaller loss of entropy upon folding into the native structure.
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<scene name='JMS/sandbox9/Tbadh/1'>TextToBeDisplayed</scene>
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<scene name='JMS/sandbox9/Ehadh1/1'>TextToBeDisplayed</scene>
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<scene name='JMS/sandbox9/Cbadh/1'>TextToBeDisplayed</scene>
</StructureSection>
</StructureSection>

Revision as of 10:28, 14 May 2013

halophilic enzyme (PDB entry 1hlp)

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Proteopedia Page Contributors and Editors (what is this?)

Joseph M. Steinberger

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