Phosphoglycerate Kinase

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Line 72: Line 72:
**[[2xe6]], [[3c39]] – hPGK1 + PGA - human<BR />
**[[2xe6]], [[3c39]] – hPGK1 + PGA - human<BR />
**[[2zgv]] - hPGK1 + ADP<BR />
**[[2zgv]] - hPGK1 + ADP<BR />
 +
**[[5o7d]], [[5mxm]], [[5m6z]], [[5m3u]], [[5m1r]] – hPGK1 (mutant) + ADP <br />
 +
**[[5np8]] – hPGK1 + inhibitor <br />
**[[3c3b]], [[3c3c]] - hPGK1 + CDP <br />
**[[3c3b]], [[3c3c]] - hPGK1 + CDP <br />
**[[3zoz]] – hPGK1 + Br<br />
**[[3zoz]] – hPGK1 + Br<br />

Revision as of 10:29, 19 August 2018

Human phosphoglycerate kinase complex with phosphoglyceric acid, ADP (stick model) AlF4-, Cl- and Mg+2 ions (green) (PDB code 2y3i)

Drag the structure with the mouse to rotate

3D structures of phosphoglycerate kinase

Updated on 19-August-2018




Additional Resources

For additional information, see: Carbohydrate Metabolism

References

  1. Auerbach, Gunter et al. 1997. Closed Structure of phosphoglycerate kinase from Thermotoga maritima reveals the catalytic mechanism and determinants of thermal stability. Structure. 5:1475-1483.
  2. Lallemand P, Chaloin L, Roy B, Barman T, Bowler MW, Lionne C. Interaction of human 3-phosphoglycerate kinase with its two substrates: is substrate antagonism a kinetic advantage? J Mol Biol. 2011 Jun 24;409(5):742-57. Epub 2011 Apr 27. PMID:21549713 doi:10.1016/j.jmb.2011.04.048
  3. Voet, Donald et al. 2008. Fundamentals of Biochemistry. 3rd ed. 499
  4. Auerbach, Gunter et al. 1997. Closed Structure of phosphoglycerate kinase from Thermotoga maritima reveals the catalytic mechanism and determinants of thermal stability. Structure. 5:1475-1483.
  5. Blake and Rice. 1981. Phosphoglycerate kinase. Philosophical Transactions of the Royal Society of London. 293:93-104.
  6. Vas, M, Varga, A et al. 2010. Insight into the Mechanism of of Domain Movements and their Role in Enzyme Function: Example of 3-Phosphoglycerate kinase. Current Protein and Peptide Science. Jan 21, 2010. (Epub ahead of publication).
  7. Harnan, G. et al. 1992. Domain Motions in Phosphoglycerate Kinase: Determination of Interdomain Distance Distribution by Site Specific Labeling and Time Resolved Flourescense Energy Transfer. PNAS. 89:11764-11768.
  8. Auerbach, Gunter et al. 1997. Closed Structure of phosphoglycerate kinase from Thermotoga maritima reveals the catalytic mechanism and determinants of thermal stability. Structure. 5:1475-1483.
  9. Auerbach, Gunter et al. 1997. Closed Structure of phosphoglycerate kinase from Thermotoga maritima reveals the catalytic mechanism and determinants of thermal stability. Structure. 5:1475-1483.
  10. Scopes, Robert. 1977. The Steady State Kinetics of Yeast Phosphoglycerate Kinase. European Journal of Biochemistry. 85, 503-516
  11. Macioszek, Jerzy et al. 1990. Kinetics of the Two-Enzyme Phosphoglycerate Kinase/Glyceraldehyde-3-Phosphate Dehydrogenase Couple. Plant Physiology 94: 291-296.
  12. Shaobo, Wu et al. 2009. PGK1 expression responds to freezing, anoxia, and dehydration stresses in freeze tolerant wood frog, Rana sylvatica. Journal of Experimental Zoology. 311, 57-67
  13. Hogg, PJ. 2002. Biological Regulation through protein disulfide bond cleavage. Redox Report. 7(2), 71-77.

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