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7v58
From Proteopedia
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==Structural insights into the substrate selectivity of acyl-CoA transferase== | ==Structural insights into the substrate selectivity of acyl-CoA transferase== | ||
| - | <StructureSection load='7v58' size='340' side='right'caption='[[7v58]]' scene=''> | + | <StructureSection load='7v58' size='340' side='right'caption='[[7v58]], [[Resolution|resolution]] 1.84Å' scene=''> |
== Structural highlights == | == Structural highlights == | ||
| - | <table><tr><td colspan='2'>Full crystallographic information is available from [http://oca.weizmann.ac.il/oca-bin/ocashort?id=7V58 OCA]. For a <b>guided tour on the structure components</b> use [https://proteopedia.org/fgij/fg.htm?mol=7V58 FirstGlance]. <br> | + | <table><tr><td colspan='2'>[[7v58]] is a 2 chain structure. Full crystallographic information is available from [http://oca.weizmann.ac.il/oca-bin/ocashort?id=7V58 OCA]. For a <b>guided tour on the structure components</b> use [https://proteopedia.org/fgij/fg.htm?mol=7V58 FirstGlance]. <br> |
| - | </td></tr><tr id='resources'><td class="sblockLbl"><b>Resources:</b></td><td class="sblockDat"><span class='plainlinks'>[https://proteopedia.org/fgij/fg.htm?mol=7v58 FirstGlance], [http://oca.weizmann.ac.il/oca-bin/ocaids?id=7v58 OCA], [https://pdbe.org/7v58 PDBe], [https://www.rcsb.org/pdb/explore.do?structureId=7v58 RCSB], [https://www.ebi.ac.uk/pdbsum/7v58 PDBsum], [https://prosat.h-its.org/prosat/prosatexe?pdbcode=7v58 ProSAT]</span></td></tr> | + | </td></tr><tr id='ligand'><td class="sblockLbl"><b>[[Ligand|Ligands:]]</b></td><td class="sblockDat" id="ligandDat"><scene name='pdbligand=GLY:GLYCINE'>GLY</scene>, <scene name='pdbligand=MES:2-(N-MORPHOLINO)-ETHANESULFONIC+ACID'>MES</scene>, <scene name='pdbligand=PLP:PYRIDOXAL-5-PHOSPHATE'>PLP</scene>, <scene name='pdbligand=SO4:SULFATE+ION'>SO4</scene></td></tr> |
| + | <tr id='activity'><td class="sblockLbl"><b>Activity:</b></td><td class="sblockDat"><span class='plainlinks'>[https://en.wikipedia.org/wiki/Glycine_C-acetyltransferase Glycine C-acetyltransferase], with EC number [https://www.brenda-enzymes.info/php/result_flat.php4?ecno=2.3.1.29 2.3.1.29] </span></td></tr> | ||
| + | <tr id='resources'><td class="sblockLbl"><b>Resources:</b></td><td class="sblockDat"><span class='plainlinks'>[https://proteopedia.org/fgij/fg.htm?mol=7v58 FirstGlance], [http://oca.weizmann.ac.il/oca-bin/ocaids?id=7v58 OCA], [https://pdbe.org/7v58 PDBe], [https://www.rcsb.org/pdb/explore.do?structureId=7v58 RCSB], [https://www.ebi.ac.uk/pdbsum/7v58 PDBsum], [https://prosat.h-its.org/prosat/prosatexe?pdbcode=7v58 ProSAT]</span></td></tr> | ||
</table> | </table> | ||
| + | == Function == | ||
| + | [[https://www.uniprot.org/uniprot/U3BPN5_VIBPR U3BPN5_VIBPR]] Catalyzes the cleavage of 2-amino-3-ketobutyrate to glycine and acetyl-CoA.[HAMAP-Rule:MF_00985] | ||
| + | <div style="background-color:#fffaf0;"> | ||
| + | == Publication Abstract from PubMed == | ||
| + | Pyridoxal phosphate (PLP)-dependent alpha-oxoamine synthases are generally believed to be responsible for offloading and elongating polyketides or catalyzing the condensation of amino acids and acyl-CoA thioester substrates, such as serine into sphingolipids and cysteate into sulfonolipids. Previously, we discovered vitroprocines, which are tyrosine- and phenylalanine-polyketide derivatives, as potential new antibiotics from the genus Vibrio. Using bioinformatics analysis, we identified putative genes of PLP-dependent enzyme from marine Vibrio sp. QWI-06, implying a capability to produce amino-polyketide derivatives. One of these genes was cloned, and the recombinant protein, termed Vibrio sp. QWI-06 alpha-oxoamine synthases-1 (VsAOS1), was overexpressed for structural and biochemical characterization. The crystal structure of the dimeric VsAOS1 was determined at 1.8-A resolution in the presence of L-glycine. The electron density map indicated a glycine molecule occupying the pyridoxal binding site in one monomer, suggesting a snapshot of the initiation process upon the loading of amino acid substrate. In mass spectrometry analysis, VsAOS1 strictly acted to condense L-glycine with C12 or C16 acyl-CoA, including unsaturated acyl analog. Furthermore, a single residue replacement of VsAOS1 (G243S) allowed the enzyme to generate sphingoid derivative when L-serine and lauroyl-CoA were used as substrates. Our data elucidate the mechanism of substrate binding and selectivity by the VsAOS1 and provide a thorough understanding of the molecular basis for the amino acid preference of AOS members. | ||
| + | |||
| + | Structural insights into the substrate selectivity of alpha-oxoamine synthases from marine Vibrio sp. QWI-06.,Chang HY, Lo LH, Lan YH, Hong MX, Chan YT, Ko TP, Huang YR, Cheng TH, Liaw CC Colloids Surf B Biointerfaces. 2021 Nov 16:112224. doi:, 10.1016/j.colsurfb.2021.112224. PMID:34838420<ref>PMID:34838420</ref> | ||
| + | |||
| + | From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine.<br> | ||
| + | </div> | ||
| + | <div class="pdbe-citations 7v58" style="background-color:#fffaf0;"></div> | ||
| + | == References == | ||
| + | <references/> | ||
__TOC__ | __TOC__ | ||
</StructureSection> | </StructureSection> | ||
| + | [[Category: Glycine C-acetyltransferase]] | ||
[[Category: Large Structures]] | [[Category: Large Structures]] | ||
| - | [[Category: Chang | + | [[Category: Chang, H Y]] |
| - | [[Category: Ko | + | [[Category: Ko, T P]] |
| + | [[Category: Acyltransferase]] | ||
| + | [[Category: Pyridoxal phosphate]] | ||
| + | [[Category: Sphingolipid]] | ||
| + | [[Category: Transferase]] | ||
Revision as of 11:12, 16 February 2022
Structural insights into the substrate selectivity of acyl-CoA transferase
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