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- 23:41, 25 June 2023 Lucas Xavier da Cunha talk contribs uploaded a new version of File:PEPC reaction mechanism.png (Catalytic mechanism of PEPC based on maize C4-PEPC and E. coli PEPC crystal structures and the three-step reaction model. The hydrophobic pocket is shown as yellow circles and the residues show maize numbering. Adapted from Izui K, Matsumura H, Furumoto T)
- 23:41, 25 June 2023 Lucas Xavier da Cunha talk contribs uploaded a new version of File:C4 photosynthesis cycle.png (Diagrammatic representation of the C4 photosynthetic pathway as it occurs in plants of the NADP-malic enzyme (NADP-ME) subtype. Adapted from Sage RF, Sage TL, Kocacinar F. Photorespiration and the evolution of C4 photosynthesis. Annu Rev Plant Biol. 2012;)
- 23:37, 25 June 2023 Lucas Xavier da Cunha talk contribs uploaded a new version of File:Inhibitor-binding site of Flaverina trinervia C4 PEPC.png (Inhibitor-binding site of Flaverina trinervia’s C4 PEPC. Adapted from Paulus JK, Schlieper D, Groth G. Greater efficiency of photosynthetic carbon fixation due to single amino-acid substitution. Nat Commun. 2013 Feb 26;4:1518. doi: 10.1038/ncomms2504. P)
- 23:36, 25 June 2023 Lucas Xavier da Cunha talk contribs uploaded a new version of File:4BXC F.trinervia PEPC+G6P crystral structure.png (X-ray crystal structure of Flaverina trinervia’s C4 PEPC bound to glucose 6-phosphate (magenta). Two strongly bound dimers (left and right sides of the structure) form the tetrameric quaternary structure. Adapted from Schlieper, D., Förster, K., Paulus)
- 23:31, 25 June 2023 Lucas Xavier da Cunha talk contribs uploaded a new version of File:C4 PEPC reaction and regulation.png (Schematic representation of PEPC catalysis of phosphoenolpyruvate carboxylation. Adapted from Svensson P, Bläsing OE, Westhoff P. Evolution of C4 phosphoenolpyruvate carboxylase. Arch Biochem Biophys. 2003 Jun 15;414(2):180-8. PMID:12781769 doi:10.1016/s)
- 22:59, 25 June 2023 Lucas Xavier da Cunha talk contribs uploaded File:Inhibitor-binding site of Flaverina trinervia C4 PEPC.png (Inhibitor-binding site of Flaverina trinervia’s C4 PEPC. Adapted from Paulus JK, Schlieper D, Groth G. Greater efficiency of photosynthetic carbon fixation due to single amino-acid substitution. Nat Commun. 2013 Feb 26;4:1518. doi: 10.1038/ncomms2504. P)
- 22:56, 25 June 2023 Lucas Xavier da Cunha talk contribs uploaded File:Inhibitor-binding site of Flaverina trinervia’s C4 PEPC.png (Inhibitor-binding site of Flaverina trinervia’s C4 PEPC. Adapted from Paulus JK, Schlieper D, Groth G. Greater efficiency of photosynthetic carbon fixation due to single amino-acid substitution. Nat Commun. 2013 Feb 26;4:1518. doi: 10.1038/ncomms2504. P)
- 22:53, 25 June 2023 Lucas Xavier da Cunha talk contribs uploaded File:4BXC F.trinervia PEPC+G6P crystral structure.png (X-ray crystal structure of Flaverina trinervia’s C4 PEPC bound to glucose 6-phosphate (magenta). Two strongly bound dimers (left and right sides of the structure) form the tetrameric quaternary structure. Adapted from <ref>PMID: 24043710</ref>)
- 22:46, 25 June 2023 Lucas Xavier da Cunha talk contribs uploaded File:C4 PEPC reaction and regulation.png (Schematic representation of PEPC catalysis of phosphoenolpyruvate carboxylation. Adapted from Svensson P, Bläsing OE, Westhoff P. Evolution of C4 phosphoenolpyruvate carboxylase. Arch Biochem Biophys. 2003 Jun 15;414(2):180-8. PMID:12781769 doi:10.1016/s)
- 22:44, 25 June 2023 Lucas Xavier da Cunha talk contribs uploaded File:C4 photosynthesis cycle.png (Diagrammatic representation of the C4 photosynthetic pathway as it occurs in plants of the NADP-malic enzyme (NADP-ME) subtype. Adapted from Sage RF, Sage TL, Kocacinar F. Photorespiration and the evolution of C4 photosynthesis. Annu Rev Plant Biol. 2012;)
- 22:42, 25 June 2023 Lucas Xavier da Cunha talk contribs uploaded File:PEPC reaction mechanism.png ( Catalytic mechanism of PEPC based on maize C4-PEPC and E. coli PEPC crystal structures and the three-step reaction model. The hydrophobic pocket is shown as yellow circles and the residues show maize numbering. Adapted from Izui K, Matsumura H, Furumoto )