Blood group B galactosyltransferase: Insights into substrate binding from NMR experiments

被引:64
作者
Angulo, Jesus
Langpap, Brigitte
Blume, Astrid
Biet, Thorsten
Meyer, Bernd
Krishna, N. Rama
Peters, Hannelore
Palcic, Monica M.
Peters, Thomas
机构
[1] Med Univ Lubeck, Inst Chem, D-23538 Lubeck, Germany
[2] Univ Hamburg, Inst Organ Chem, D-20146 Hamburg, Germany
[3] Univ Alabama, Birmingham, AL 35294 USA
[4] Carlsberg Lab, DK-2500 Copenhagen, Denmark
关键词
D O I
10.1021/ja063550r
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The biosynthesis of human blood group B antigens is accomplished by a highly specific galactosyltransferase (GTB). On the basis of NMR experiments, we propose a "molecular tweezers mechanism" that accounts for the exquisite stereoselectivity of donor substrate selection. Transferred NOE experiments for the first time reveal the bioactive conformation of the donor substrate UDP-galactose (UDPGal) and of its enzymatically inactive analogue, UDP-glucose (UDP-Glc). Both bind to GTB in a folded conformation that is sparsely populated in solution, whereas acceptor ligands bind in a conformation that predominates in solution. The bound conformations of UDP-Gal and UDP-Glc are identical within experimental error. Therefore, GTB must discriminate between the two activated sugars on the basis of a hitherto unknown transition state that can only be formed in the case of UDP-Gal. A full relaxation and exchange matrix analysis of STD NMR experiments reveals that acceptor substrates dissociate significantly faster (k(off) > 100 Hz) from the binding pocket than donor substrates (k(off) approximate to 10 Hz). STD NMR experiments also directly show that proper recognition of the hexopyranose rings of the UDP sugars requires bivalent metal cations. At the same time, this analysis furnishes the complete three-dimensional structure of the enzyme with its bound donor substrate UDP-Gal on the basis of a prior crystal structure analysis. We propose that, upon acceptor binding, GTB uses the Asp 302 and Glu 303 side chains as "molecular tweezers" to promote bound UDP-Gal but not UDP-Glc into a transition state that leads to product formation.
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页码:13529 / 13538
页数:10
相关论文
共 30 条
[1]  
BLUME A, 2006, IN PRES J BIOL CHEM
[2]   Structure of UDP complex of UDP-galactose:β-galactoside-α-1,3-galactosyltransferase at 1.53-Å resolution reveals a conformational change in the catalytically important C terminus [J].
Boix, E ;
Swaminathan, GJ ;
Zhang, YN ;
Natesh, R ;
Brew, K ;
Acharya, KR .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (51) :48608-48614
[3]   Structural basis of ordered binding of donor and acceptor substrates to the retaining glycosyltransferase, α-1,3-galactosyltransferase [J].
Boix, E ;
Zhang, YN ;
Swaminathan, GJ ;
Brew, K ;
Acharya, KR .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (31) :28310-28318
[4]   Structural and functional features of glycosyltransferases [J].
Breton, C ;
Mucha, J ;
Jeanneau, C .
BIOCHIMIE, 2001, 83 (08) :713-718
[5]   An evolving hierarchical family classification for glycosyltransferases [J].
Coutinho, PM ;
Deleury, E ;
Davies, GJ ;
Henrissat, B .
JOURNAL OF MOLECULAR BIOLOGY, 2003, 328 (02) :307-317
[6]   Sweet secrets of synthesis [J].
Davies, GJ .
NATURE STRUCTURAL BIOLOGY, 2001, 8 (02) :98-100
[7]   Bovine α1,3-galactosyltransferase catalytic domain structure and its relationship with ABO histo-blood group and glycosphingolipid glycosyltransferases [J].
Gastinel, LN ;
Bignon, C ;
Misra, AK ;
Hindsgaul, O ;
Shaper, JH ;
Joziasse, DH .
EMBO JOURNAL, 2001, 20 (04) :638-649
[8]   MOLECULAR MODELING OF PROTEIN CARBOHYDRATE INTERACTIONS - UNDERSTANDING THE SPECIFICITIES OF 2 LEGUME LECTINS TOWARDS OLIGOSACCHARIDES [J].
IMBERTY, A ;
PEREZ, S .
GLYCOBIOLOGY, 1994, 4 (03) :351-366
[9]   Complete relaxation and conformational exchange matrix (CORCEMA) analysis of intermolecular saturation transfer effects in reversibly forming ligand-receptor complexes [J].
Jayalakshmi, V ;
Krishna, NR .
JOURNAL OF MAGNETIC RESONANCE, 2002, 155 (01) :106-118
[10]   Large-scale chemical and chemo-enzymatic synthesis of a spacer-containing Pk-trisaccharide [J].
Kamath, VP ;
Yeske, RE ;
Gregson, JM ;
Ratcliffe, RM ;
Fang, YR ;
Palcic, MM .
CARBOHYDRATE RESEARCH, 2004, 339 (06) :1141-1146