Glycerol-3-Phosphate Dehydrogenase

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===Function===
===Function===
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GlpD functions in the intracellular membrane of E. coli and in the inner-mitochondrial membrane of eukaryotes. In E. Coli, GlpD catalyzes and reduces the reaction of dihydroxyacetone phosphate to glycerol 3-phosphate in the [http://www.pnas.org/content/105/9/3280/F1.large.jpg glycerol metabolism pathway]. The binding of the substrate analogues (glyceraldehydes 3-phosphate, glyceric acid 2-phosphate and phosphoenolpyruvate, dihydroxyacetone phosphate)or UQ substrate analogues (2-n-heptyl-4-hydroxyquinoline N-oxide and menadione). The conformational change of the structure and resiudes of GlpD catalyzes many different metabolic reactions.
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GlpD functions in the intracellular membrane of E. coli and in the inner-mitochondrial membrane of eukaryotes. In E. Coli, GlpD catalyzes and reduces the reaction of dihydroxyacetone phosphate (DHAP) to glycerol 3-phosphate in the [http://www.pnas.org/content/105/9/3280/F1.large.jpg glycerol metabolism pathway]. The binding of the substrate analogues (glyceraldehydes 3-phosphate, glyceric acid 2-phosphate and phosphoenolpyruvate, dihydroxyacetone phosphate) or UQ substrate analogues (2-n-heptyl-4-hydroxyquinoline N-oxide and menadione). The conformational change of the structure and resiudes of GlpD catalyzes many different metabolic reactions.
===Metabolic Pathways===
===Metabolic Pathways===
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====Phosphoplipid Biosynthesis====
====Phosphoplipid Biosynthesis====
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GlpD reduces dihydroxyacetone phosphate to glycerol 3-phosphate. Then the glycerol 3-phosphate is catalyzed by acyl transferase to 1-acylglyverol-3-phosphate, and then another acyl transferase catalyzes that to a phosphatidic acid. head groups are added to the phosphatidic acid to synthesize phospholipids.
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GlpD reduces DHAP to glycerol 3-phosphate. Then the glycerol 3-phosphate is catalyzed by acyl transferase to 1-acylglyverol-3-phosphate, and then another acyl transferase catalyzes that to a phosphatidic acid. head groups are added to the phosphatidic acid to synthesize phospholipids.
====Glyceroneogenesis====
====Glyceroneogenesis====
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GlpD is involved in diseases such as Alzeheimer`s, muscle dystrophy, hyaline membrane diseases and many more.
GlpD is involved in diseases such as Alzeheimer`s, muscle dystrophy, hyaline membrane diseases and many more.
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</StructureSection>
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==3D structures of glycerol-3-phosphate dehydrogenase==
==3D structures of glycerol-3-phosphate dehydrogenase==
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[[Glycerol-3-phosphate dehydrogenase 3D structures]]
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Updated on {{REVISIONDAY2}}-{{MONTHNAME|{{REVISIONMONTH}}}}-{{REVISIONYEAR}}
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</StructureSection>
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{{#tree:id=OrganizedByTopic|openlevels=0|
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*GPDH
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**[[3da1]] – GPDH + FAD – ''Bacillus halodurans''<br />
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**[[2qcu]] - EcGPDH + FAD – ''Escherichia coli''<br />
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**[[2r4j]], [[2r4e]] - EcGPDH + FAD + DHAP<br />
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**[[2r46]] - EcGPDH + FAD + 2-phosphopyruvic acid<br />
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**[[2r45]] - EcGPDH + FAD + 2-phospho-glyceric acid<br />
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**[[1yj8]] – GPDH – ''Plasmodium falciparum''
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*NADPH-dependent GPDH
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**[[3k96]] – GPDH – ''Coxiella burnetii''<br />
 
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**[[2pla]], [[1x0x]] – hGPDH + NAD – human<br />
 
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**[[1wpq]] - hGPDH + NAD + DHA<br />
 
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**[[1x0v]] – hGPDH<br />
 
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**[[4fgw]] – GPDH - yeast<br />
 
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**[[1z82]] – GPDH + NADP + G3P + glyceraldehydes-3-phosphate – ''Thermotoga maritima''<br />
 
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**[[1txg]] – GPDH + glycerol – ''Archaeoglobus fulgidus''<br />
 
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**[[1evy]] – GPDH – ''Leishmania mexicana''<br />
 
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**[[1n1g]], [[1m66]], [[1m67]], [[1jdj]] – LmGPDH + inhibitor<br />
 
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**[[1evz]] - LmGPDH + NAD<br />
 
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**[[1n1e]] – LmGPDH + NAD + DHAP
 
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}}
 
==References==
==References==
<references />
<references />

Current revision

Glycerol-3-phosphate dehydrogenase trimer 1yj8

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References

  1. Yeh JI, Chinte U, Du S. Structure of glycerol-3-phosphate dehydrogenase, an essential monotopic membrane enzyme involved in respiration and metabolism. Proc Natl Acad Sci U S A. 2008 Mar 4;105(9):3280-5. Epub 2008 Feb 22. PMID:18296637
  2. Yeh JI, Charrier V, Paulo J, Hou L, Darbon E, Claiborne A, Hol WG, Deutscher J. Structures of enterococcal glycerol kinase in the absence and presence of glycerol: correlation of conformation to substrate binding and a mechanism of activation by phosphorylation. Biochemistry. 2004 Jan 20;43(2):362-73. PMID:14717590 doi:10.1021/bi034258o
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