Importance of hydrophobic and polar residues in ligand binding in the family 15 carbohydrate-binding module from Cellvibrio japonicus Xyn10C

被引:53
作者
Pell, G [1 ]
Williamson, MP [1 ]
Walters, C [1 ]
Du, HM [1 ]
Gilbert, HJ [1 ]
Bolam, DN [1 ]
机构
[1] Newcastle Univ, Sch Cell & Mol Biosci, Newcastle Upon Tyne NE1 7RU, Tyne & Wear, England
关键词
D O I
10.1021/bi0347510
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Modular glycoside hydrolases that degrade the plant cell wall often contain noncatalytic carbohydrate-binding modules (CBMs) that interact with specific polysaccharides within this complex macromolecule. CBMs, by bringing the appended catalytic module into intimate and prolonged association with the substrate, increase the rate at which these enzymes are able to hydrolyze glycosidic bonds. Recently, the crystal structure of the family 15 CBM (CBM15) from Cellvibrio japonicus (formerly Pseudomonas cellulosa) Xyn10C was determined in complex with the ligand xylopentaose. In this report we have used a rational design approach, informed by the crystal structure of the CBM15-ligand complex, to probe the importance of hydrophobic stacking interactions and both direct and water-mediated hydrogen bonds in the binding of this protein to xylan and xylohexaose. The data show that replacing either Trp 171 or Trp 186, which stack against xylose residues n and n + 2 in xylopentaose, with alanine abolished ligand binding. Similarly, replacing Asn 106, Gln 171, and Gln 217, which make direct hydrogen bonds with xylopentaose, with alanine greatly reduced the affinity of the protein for its saccharide ligands. By contrast, disrupting water-mediated hydrogen bonds between CBM15 and xylopentaose by introducing the mutations S108A, Q167A, Q221A, and K223A had little effect on the affinity of the protein for xylan or xylohexaose. These data indicate that CBM15 binds xylan and xylooligosaccharides via the same interactions and provide clear evidence that direct hydrogen bonds are a key determinant of affinity in a type B CBM. The generic importance of these data is discussed.
引用
收藏
页码:9316 / 9323
页数:8
相关论文
共 44 条
[1]  
ATKINS EDT, 1992, PROGR BIOTECHNOL, V7, P39
[2]   Evidence for synergy between family 2b carbohydrate binding modules in Cellulomonas fimi xylanase 11A [J].
Bolam, DN ;
Xie, HF ;
White, P ;
Simpson, PJ ;
Hancock, SM ;
Williamson, MP ;
Gilbert, HJ .
BIOCHEMISTRY, 2001, 40 (08) :2468-2477
[3]   Pseudomonas cellulose-binding domains mediate their effects by increasing enzyme substrate proximity [J].
Bolam, DN ;
Ciruela, A ;
McQueen-Mason, S ;
Simpson, P ;
Williamson, MP ;
Rixon, JE ;
Boraston, A ;
Hazlewood, GP ;
Gilbert, HJ .
BIOCHEMICAL JOURNAL, 1998, 331 :775-781
[4]   Differential oligosaccharide recognition by evolutionarily-related β-1,4 and β-1,3 glucan-binding modules [J].
Boraston, AB ;
Nurizzo, D ;
Notenboom, V ;
Ducros, V ;
Rose, DR ;
Kilburn, DG ;
Davies, GJ .
JOURNAL OF MOLECULAR BIOLOGY, 2002, 319 (05) :1143-1156
[5]  
Boraston AB, 1999, ROY SOC CH, P202
[6]   Probing the role of tryptophan residues in a cellulose-binding domain by chemical modification [J].
Bray, MR ;
Johnson, PE ;
Gilkes, NR ;
McIntosh, LP ;
Kilburn, DG ;
Warren, RAJ .
PROTEIN SCIENCE, 1996, 5 (11) :2311-2318
[7]  
BRETT CT, 1996, PHYSL BIOCH PLANT CE, V1
[8]   The topology of the substrate binding clefts of glycosyl hydrolase family 10 xylanases are not conserved [J].
Charnock, SJ ;
Spurway, TD ;
Xie, HF ;
Beylot, MH ;
Virden, R ;
Warren, RAJ ;
Hazlewood, GP ;
Gilbert, HJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (48) :32187-32199
[9]   Promiscuity in ligand-binding:: The three-dimensional structure of a Piromyces carbohydrate-binding module, CBM29-2, in complex with cello-and mannohexaose [J].
Charnock, SJ ;
Bolam, DN ;
Nurizzo, D ;
Szabó, L ;
McKie, VA ;
Gilbert, HJ ;
Davies, GJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (22) :14077-14082
[10]   Key residues in subsite F play a critical role in the activity of Pseudomonas fluorescens subspecies cellulosa xylanase A against xylooligosaccharides but not against highly polymeric substrates such as xylan [J].
Charnock, SJ ;
Lakey, JH ;
Virden, R ;
Hughes, N ;
Sinnott, ML ;
Hazlewood, GP ;
Pickersgill, R ;
Gilbert, HJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (05) :2942-2951