Glucose-fructose oxidoreductase

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{{STRUCTURE_1evj| PDB=1evj | SIZE=400| SCENE= |right|CAPTION=Glucose-fructose oxidoreductase tetramer with cofactor NAD (PDB code [[1evj]]) }}
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<StructureSection load='' size='350' side='right' caption='Glucose-fructose oxidoreductase complex with NADPH and glycerol (PDB entry [[1evj]])' scene='49/490077/Cv/1'>
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== Function ==
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'''Glucose-fructose oxidoreductase''' (GFOR) from the bacteria ''Zymomonas mobilis'' catalyzes the conversion of D-glucose and D-fructose to D-gluconolactone and D-glucitol (sorbitol)<ref>PMID:3356190</ref>. GFOR contains a tightly bound cofactor NADP+.
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== Structural highlights ==
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The biological assembly of GFOR from ''Zymomonas mobilis'' is <scene name='49/490077/Cv/8'>homotetramer</scene>. <scene name='49/490077/Cv/9'>GFOR active site contains the cofactor NADPH</scene> and in this 3D structure the <scene name='49/490077/Cv/10'>glycerol molecule seen in the active site occupies the position of the glucose ligand</scene><ref>PMID:11705375</ref>. Water molecules shown as red spheres.
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'''Glucose-fructose oxidoreductase''' (GFOR) from the bacteria ''Zymomonas mobilis'' catalyzes the conversion of D-glucose and D-fructose to D-gluconolactone and D-glucitol (sorbitol). GFOR contains a tightly bound cofactor NADP+.
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==3D structures of glucose-fructose oxidoreductase==
==3D structures of glucose-fructose oxidoreductase==
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[[1evj]] – GFOR (mutant) + NAD<br />
[[1evj]] – GFOR (mutant) + NAD<br />
[[1h6b]], [[1rye]] - GFOR + glycerol + NADPH<BR />
[[1h6b]], [[1rye]] - GFOR + glycerol + NADPH<BR />
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[[1h6c]] - GFOR + succinate + NADPH<BR />
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[[1h6c]] - GFOR precursor + succinate + NADPH<BR />
[[1ryd]] - GFOR + glucose + NADPH<BR />
[[1ryd]] - GFOR + glucose + NADPH<BR />
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== References ==
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<references/>
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[[Category:Topic Page]]

Current revision

Glucose-fructose oxidoreductase complex with NADPH and glycerol (PDB entry 1evj)

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Michal Harel, Alexander Berchansky, Joel L. Sussman

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