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1v84

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(New page: 200px<br /> <applet load="1v84" size="450" color="white" frame="true" align="right" spinBox="true" caption="1v84, resolution 1.82&Aring;" /> '''Crystal structure o...)
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[[Image:1v84.gif|left|200px]]<br />
 
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<applet load="1v84" size="450" color="white" frame="true" align="right" spinBox="true"
 
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caption="1v84, resolution 1.82&Aring;" />
 
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'''Crystal structure of human GlcAT-P in complex with N-acetyllactosamine, Udp, and Mn2+'''<br />
 
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==Overview==
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==Crystal structure of human GlcAT-P in complex with N-acetyllactosamine, Udp, and Mn2+==
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The HNK-1 carbohydrate epitope is found on many neural cell adhesion, molecules. Its structure is characterized by a terminal sulfated, glucuronyl acid. The glucuronyltransferases, GlcAT-P and GlcAT-S, are, involved in the biosynthesis of the HNK-1 epitope, GlcAT-P as the major, enzyme. We overexpressed and purified the recombinant human GlcAT-P from, Escherichia coli. Analysis of its enzymatic activity showed that it, catalyzed the transfer reaction for N-acetyllactosamine (Galbeta1-4GlcNAc), but not lacto-N-biose (Galbeta1-3GlcNAc) as an acceptor substrate., Subsequently, we determined the first x-ray crystal structures of human, GlcAT-P, in the absence and presence of a donor substrate product UDP, catalytic Mn(2+), and an acceptor substrate analogue N-acetyllactosamine, (Galbeta1-4GlcNAc) or an asparagine-linked biantennary nonasaccharide. The, asymmetric unit contains two independent molecules. Each molecule is an, alpha/beta protein with two regions that constitute the donor and acceptor, substrate binding sites. The UDP moiety of donor nucleotide sugar is, recognized by conserved amino acid residues including a DXD motif, (Asp(195)-Asp(196)-Asp(197)). Other conserved amino acid residues interact, with the terminal galactose moiety of the acceptor substrate. In addition, Val(320) and Asn(321), which are located on the C-terminal long loop from, a neighboring molecule, and Phe(245) contribute to the interaction with, GlcNAc moiety. These three residues play a key role in establishing the, acceptor substrate specificity.
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<StructureSection load='1v84' size='340' side='right'caption='[[1v84]], [[Resolution|resolution]] 1.82&Aring;' scene=''>
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== Structural highlights ==
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<table><tr><td colspan='2'>[[1v84]] is a 2 chain structure with sequence from [https://en.wikipedia.org/wiki/Homo_sapiens Homo sapiens]. Full crystallographic information is available from [http://oca.weizmann.ac.il/oca-bin/ocashort?id=1V84 OCA]. For a <b>guided tour on the structure components</b> use [https://proteopedia.org/fgij/fg.htm?mol=1V84 FirstGlance]. <br>
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</td></tr><tr id='method'><td class="sblockLbl"><b>[[Empirical_models|Method:]]</b></td><td class="sblockDat" id="methodDat">X-ray diffraction, [[Resolution|Resolution]] 1.82&#8491;</td></tr>
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<tr id='ligand'><td class="sblockLbl"><b>[[Ligand|Ligands:]]</b></td><td class="sblockDat" id="ligandDat"><scene name='pdbligand=GAL:BETA-D-GALACTOSE'>GAL</scene>, <scene name='pdbligand=MN:MANGANESE+(II)+ION'>MN</scene>, <scene name='pdbligand=NAG:N-ACETYL-D-GLUCOSAMINE'>NAG</scene>, <scene name='pdbligand=NDG:2-(ACETYLAMINO)-2-DEOXY-A-D-GLUCOPYRANOSE'>NDG</scene>, <scene name='pdbligand=PRD_900019:N-acetyl-alpha-lactosamine'>PRD_900019</scene>, <scene name='pdbligand=TLA:L(+)-TARTARIC+ACID'>TLA</scene>, <scene name='pdbligand=UDP:URIDINE-5-DIPHOSPHATE'>UDP</scene></td></tr>
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<tr id='resources'><td class="sblockLbl"><b>Resources:</b></td><td class="sblockDat"><span class='plainlinks'>[https://proteopedia.org/fgij/fg.htm?mol=1v84 FirstGlance], [http://oca.weizmann.ac.il/oca-bin/ocaids?id=1v84 OCA], [https://pdbe.org/1v84 PDBe], [https://www.rcsb.org/pdb/explore.do?structureId=1v84 RCSB], [https://www.ebi.ac.uk/pdbsum/1v84 PDBsum], [https://prosat.h-its.org/prosat/prosatexe?pdbcode=1v84 ProSAT]</span></td></tr>
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</table>
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== Function ==
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[https://www.uniprot.org/uniprot/B3GA1_HUMAN B3GA1_HUMAN] Involved in the biosynthesis of L2/HNK-1 carbohydrate epitope on glycoproteins. Can also play a role in glycosaminoglycan biosynthesis. Substrates include asialo-orosomucoid (ASOR), asialo-fetuin, and asialo-neural cell adhesion molecule. Requires sphingomyelin for activity: stearoyl-sphingomyelin was the most effective, followed by palmitoyl-sphingomyelin and lignoceroyl-sphingomyelin. Activity was demonstrated only for sphingomyelin with a saturated fatty acid and not for that with an unsaturated fatty acid, regardless of the length of the acyl group (By similarity).
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== Evolutionary Conservation ==
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[[Image:Consurf_key_small.gif|200px|right]]
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Check<jmol>
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<jmolCheckbox>
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<scriptWhenChecked>; select protein; define ~consurf_to_do selected; consurf_initial_scene = true; script "/wiki/ConSurf/v8/1v84_consurf.spt"</scriptWhenChecked>
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<scriptWhenUnchecked>script /wiki/extensions/Proteopedia/spt/initialview01.spt</scriptWhenUnchecked>
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<text>to colour the structure by Evolutionary Conservation</text>
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</jmolCheckbox>
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</jmol>, as determined by [http://consurfdb.tau.ac.il/ ConSurfDB]. You may read the [[Conservation%2C_Evolutionary|explanation]] of the method and the full data available from [http://bental.tau.ac.il/new_ConSurfDB/main_output.php?pdb_ID=1v84 ConSurf].
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<div style="clear:both"></div>
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<div style="background-color:#fffaf0;">
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== Publication Abstract from PubMed ==
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The HNK-1 carbohydrate epitope is found on many neural cell adhesion molecules. Its structure is characterized by a terminal sulfated glucuronyl acid. The glucuronyltransferases, GlcAT-P and GlcAT-S, are involved in the biosynthesis of the HNK-1 epitope, GlcAT-P as the major enzyme. We overexpressed and purified the recombinant human GlcAT-P from Escherichia coli. Analysis of its enzymatic activity showed that it catalyzed the transfer reaction for N-acetyllactosamine (Galbeta1-4GlcNAc) but not lacto-N-biose (Galbeta1-3GlcNAc) as an acceptor substrate. Subsequently, we determined the first x-ray crystal structures of human GlcAT-P, in the absence and presence of a donor substrate product UDP, catalytic Mn(2+), and an acceptor substrate analogue N-acetyllactosamine (Galbeta1-4GlcNAc) or an asparagine-linked biantennary nonasaccharide. The asymmetric unit contains two independent molecules. Each molecule is an alpha/beta protein with two regions that constitute the donor and acceptor substrate binding sites. The UDP moiety of donor nucleotide sugar is recognized by conserved amino acid residues including a DXD motif (Asp(195)-Asp(196)-Asp(197)). Other conserved amino acid residues interact with the terminal galactose moiety of the acceptor substrate. In addition, Val(320) and Asn(321), which are located on the C-terminal long loop from a neighboring molecule, and Phe(245) contribute to the interaction with GlcNAc moiety. These three residues play a key role in establishing the acceptor substrate specificity.
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==About this Structure==
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Structural basis for acceptor substrate recognition of a human glucuronyltransferase, GlcAT-P, an enzyme critical in the biosynthesis of the carbohydrate epitope HNK-1.,Kakuda S, Shiba T, Ishiguro M, Tagawa H, Oka S, Kajihara Y, Kawasaki T, Wakatsuki S, Kato R J Biol Chem. 2004 May 21;279(21):22693-703. Epub 2004 Mar 1. PMID:14993226<ref>PMID:14993226</ref>
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1V84 is a [http://en.wikipedia.org/wiki/Single_protein Single protein] structure of sequence from [http://en.wikipedia.org/wiki/Homo_sapiens Homo sapiens] with MN, TLA and UDP as [http://en.wikipedia.org/wiki/ligands ligands]. Active as [http://en.wikipedia.org/wiki/Galactosylgalactosylxylosylprotein_3-beta-glucuronosyltransferase Galactosylgalactosylxylosylprotein 3-beta-glucuronosyltransferase], with EC number [http://www.brenda-enzymes.info/php/result_flat.php4?ecno=2.4.1.135 2.4.1.135] Full crystallographic information is available from [http://ispc.weizmann.ac.il/oca-bin/ocashort?id=1V84 OCA].
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==Reference==
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From MEDLINE&reg;/PubMed&reg;, a database of the U.S. National Library of Medicine.<br>
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Structural basis for acceptor substrate recognition of a human glucuronyltransferase, GlcAT-P, an enzyme critical in the biosynthesis of the carbohydrate epitope HNK-1., Kakuda S, Shiba T, Ishiguro M, Tagawa H, Oka S, Kajihara Y, Kawasaki T, Wakatsuki S, Kato R, J Biol Chem. 2004 May 21;279(21):22693-703. Epub 2004 Mar 1. PMID:[http://ispc.weizmann.ac.il//pmbin/getpm?pmid=14993226 14993226]
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</div>
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[[Category: Galactosylgalactosylxylosylprotein 3-beta-glucuronosyltransferase]]
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<div class="pdbe-citations 1v84" style="background-color:#fffaf0;"></div>
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== References ==
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<references/>
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__TOC__
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</StructureSection>
[[Category: Homo sapiens]]
[[Category: Homo sapiens]]
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[[Category: Single protein]]
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[[Category: Large Structures]]
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[[Category: Ishiguro, M.]]
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[[Category: Ishiguro M]]
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[[Category: Kajihara, Y.]]
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[[Category: Kajihara Y]]
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[[Category: Kakuda, S.]]
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[[Category: Kakuda S]]
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[[Category: Kato, R.]]
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[[Category: Kato R]]
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[[Category: Kawasaki, T.]]
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[[Category: Kawasaki T]]
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[[Category: Oka, S.]]
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[[Category: Oka S]]
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[[Category: Shiba, T.]]
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[[Category: Shiba T]]
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[[Category: Tagawa, H.]]
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[[Category: Tagawa H]]
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[[Category: Wakatsuki, S.]]
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[[Category: Wakatsuki S]]
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[[Category: MN]]
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[[Category: TLA]]
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[[Category: UDP]]
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[[Category: glycocyltransferase]]
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[[Category: glycoprotein]]
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[[Category: hnk-1 epitope]]
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[[Category: transferase]]
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''Page seeded by [http://ispc.weizmann.ac.il/oca OCA ] on Mon Nov 12 19:42:10 2007''
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Current revision

Crystal structure of human GlcAT-P in complex with N-acetyllactosamine, Udp, and Mn2+

PDB ID 1v84

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