Literature DB >> 14993226

Structural basis for acceptor substrate recognition of a human glucuronyltransferase, GlcAT-P, an enzyme critical in the biosynthesis of the carbohydrate epitope HNK-1.

Shinako Kakuda1, Tomoo Shiba, Masji Ishiguro, Hideki Tagawa, Shogo Oka, Yasuhiro Kajihara, Toshisuke Kawasaki, Soichi Wakatsuki, Ryuichi Kato.   

Abstract

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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Year:  2004        PMID: 14993226     DOI: 10.1074/jbc.M400622200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  20 in total

Review 1.  Regulated expression and neural functions of human natural killer-1 (HNK-1) carbohydrate.

Authors:  Yasuhiko Kizuka; Shogo Oka
Journal:  Cell Mol Life Sci       Date:  2012-06-06       Impact factor: 9.261

Review 2.  Structure-function relationships of membrane-associated GT-B glycosyltransferases.

Authors:  David Albesa-Jové; David Giganti; Mary Jackson; Pedro M Alzari; Marcelo E Guerin
Journal:  Glycobiology       Date:  2013-11-18       Impact factor: 4.313

3.  Composition, Assembly, and Trafficking of a Wheat Xylan Synthase Complex.

Authors:  Nan Jiang; Richard E Wiemels; Aaron Soya; Rebekah Whitley; Michael Held; Ahmed Faik
Journal:  Plant Physiol       Date:  2016-02-25       Impact factor: 8.340

4.  Phylogenetic and mutational analyses reveal key residues for UDP-glucuronic acid binding and activity of beta1,3-glucuronosyltransferase I (GlcAT-I).

Authors:  Magali Fondeur-Gelinotte; Virginie Lattard; Rafael Oriol; Rosella Mollicone; Jean-Claude Jacquinet; Guillermo Mulliert; Sandrine Gulberti; Patrick Netter; Jacques Magdalou; Mohamed Ouzzine; Sylvie Fournel-Gigleux
Journal:  Protein Sci       Date:  2006-07       Impact factor: 6.725

5.  Direct identification of nonreducing GlcNAc residues on N-glycans of glycoproteins using a novel chemoenzymatic method.

Authors:  Elizabeth Boeggeman; Boopathy Ramakrishnan; Charlton Kilgore; Nelly Khidekel; Linda C Hsieh-Wilson; John T Simpson; Pradman K Qasba
Journal:  Bioconjug Chem       Date:  2007-03-20       Impact factor: 4.774

6.  Conserved residues Arg188 and Asp302 are critical for active site organization and catalysis in human ABO(H) blood group A and B glycosyltransferases.

Authors:  Susannah M L Gagnon; Max S G Legg; Robert Polakowski; James A Letts; Mattias Persson; Shuangjun Lin; Ruixiang Blake Zheng; Brian Rempel; Brock Schuman; Omid Haji-Ghassemi; Svetlana N Borisova; Monica M Palcic; Stephen V Evans
Journal:  Glycobiology       Date:  2018-08-01       Impact factor: 4.313

Review 7.  Mutant glycosyltransferases assist in the development of a targeted drug delivery system and contrast agents for MRI.

Authors:  Pradman K Qasba; Boopathy Ramakrishnan; Elizabeth Boeggeman
Journal:  AAPS J       Date:  2006-03-24       Impact factor: 4.009

8.  Bisecting GlcNAc Is a General Suppressor of Terminal Modification of N-glycan.

Authors:  Miyako Nakano; Sushil K Mishra; Yuko Tokoro; Keiko Sato; Kazuki Nakajima; Yoshiki Yamaguchi; Naoyuki Taniguchi; Yasuhiko Kizuka
Journal:  Mol Cell Proteomics       Date:  2019-08-02       Impact factor: 5.911

9.  Identification of residues important for the activity of Haloferax volcanii AglD, a component of the archaeal N-glycosylation pathway.

Authors:  Lina Kaminski; Jerry Eichler
Journal:  Archaea       Date:  2010-05-06       Impact factor: 3.273

10.  2-o-phosphorylation of xylose and 6-o-sulfation of galactose in the protein linkage region of glycosaminoglycans influence the glucuronyltransferase-I activity involved in the linkage region synthesis.

Authors:  Yuko Tone; Lars C Pedersen; Tomoko Yamamoto; Tomomi Izumikawa; Hiroshi Kitagawa; Junko Nishihara; Jun-Ichi Tamura; Masahiko Negishi; Kazuyuki Sugahara
Journal:  J Biol Chem       Date:  2008-04-09       Impact factor: 5.157

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