Carbohydrate Recognition by an Architecturally Complex α-N-Acetylglucosaminidase from Clostridium perfringens

被引:40
作者
Ficko-Blean, Elizabeth [1 ]
Stuart, Christopher P. [1 ]
Suits, Michael D. [1 ]
Cid, Melissa [1 ]
Tessier, Matthew [2 ]
Woods, Robert J. [2 ,3 ]
Boraston, Alisdair B. [1 ]
机构
[1] Univ Victoria, Victoria, BC, Canada
[2] Univ Georgia, Complex Carbohydrate Res Ctr, Athens, GA 30602 USA
[3] Natl Univ Ireland, Sch Chem, Galway, Ireland
基金
加拿大健康研究院;
关键词
BINDING MODULE; CELL-CARCINOMA; MUCUS LAYERS; MUCIN; SIALIDASE; ACETYLGALACTOSAMINIDASES; ALGORITHMS; EXPRESSION; DYNAMICS; TISSUES;
D O I
10.1371/journal.pone.0033524
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
CpGH89 is a large multimodular enzyme produced by the human and animal pathogen Clostridium perfringens. The catalytic activity of this exo-alpha-D-N-acetylglucosaminidase is directed towards a rare carbohydrate motif, N-acetyl-beta-D-glucosamine-alpha-1,4-D-galactose, which is displayed on the class III mucins deep within the gastric mucosa. In addition to the family 89 glycoside hydrolase catalytic module this enzyme has six modules that share sequence similarity to the family 32 carbohydrate-binding modules (CBM32s), suggesting the enzyme has considerable capacity to adhere to carbohydrates. Here we suggest that two of the modules, CBM32-1 and CBM32-6, are not functional as carbohydrate-binding modules (CBMs) and demonstrate that three of the CBMs, CBM32-3, CBM32-4, and CBM32-5, are indeed capable of binding carbohydrates. CBM32-3 and CBM32-4 have a novel binding specificity for N-acetyl-beta-D-glucosamine-alpha-1,4-D-galactose, which thus complements the specificity of the catalytic module. The X-ray crystal structure of CBM32-4 in complex with this disaccharide reveals a mode of recognition that is based primarily on accommodation of the unique bent shape of this sugar. In contrast, as revealed by a series of X-ray crystal structures and quantitative binding studies, CBM32-5 displays the structural and functional features of galactose binding that is commonly associated with CBM family 32. The functional CBM32s that CpGH89 contains suggest the possibility for multivalent binding events and the partitioning of this enzyme to highly specific regions within the gastrointestinal tract.
引用
收藏
页数:15
相关论文
共 59 条
[1]   Insight into ligand diversity and novel biological roles for family 32 carbohydrate-binding modules [J].
Abbott, D. Wade ;
Eirin-Lopez, Jose Maria ;
Boraston, Alisdair B. .
MOLECULAR BIOLOGY AND EVOLUTION, 2008, 25 (01) :155-167
[2]   PHENIX: a comprehensive Python']Python-based system for macromolecular structure solution [J].
Adams, Paul D. ;
Afonine, Pavel V. ;
Bunkoczi, Gabor ;
Chen, Vincent B. ;
Davis, Ian W. ;
Echols, Nathaniel ;
Headd, Jeffrey J. ;
Hung, Li-Wei ;
Kapral, Gary J. ;
Grosse-Kunstleve, Ralf W. ;
McCoy, Airlie J. ;
Moriarty, Nigel W. ;
Oeffner, Robert ;
Read, Randy J. ;
Richardson, David C. ;
Richardson, Jane S. ;
Terwilliger, Thomas C. ;
Zwart, Peter H. .
ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY, 2010, 66 :213-221
[3]   HISTOCHEMICAL-DEMONSTRATION OF MUCINS IN THE INTRAMUCOSAL LAMINATED STRUCTURE OF HUMAN GASTRIC SIGNET RING CELL-CARCINOMA AND ITS RELATION TO SUBMUCOSAL INVASION [J].
AKAMATSU, T ;
KATSUYAMA, T .
HISTOCHEMICAL JOURNAL, 1990, 22 (08) :416-425
[4]   Characterization of two different endo-α-N-acetylgalactosaminidases from probiotic and pathogenic enterobacteria, Bifidobacterium longum and Clostridium perfringens [J].
Ashida, Hisashi ;
Maki, Riichi ;
Ozawa, Hayato ;
Tani, Yasushi ;
Kiyohara, Masashi ;
Fujita, Masaya ;
Imamura, Akihiro ;
Ishida, Hideharu ;
Kiso, Makoto ;
Yamamoto, Kenji .
GLYCOBIOLOGY, 2008, 18 (09) :727-734
[5]   The adherent gastrointestinal mucus gel layer: thickness and physical state in vivo [J].
Atuma, C ;
Strugala, V ;
Allen, A ;
Holm, L .
AMERICAN JOURNAL OF PHYSIOLOGY-GASTROINTESTINAL AND LIVER PHYSIOLOGY, 2001, 280 (05) :G922-G929
[6]   Structure and ligand binding of carbohydrate-binding module CsCBM6-3 reveals similarities with fucose-specific lectins and "galactose-binding" domains [J].
Boraston, AB ;
Notenboom, V ;
Warren, RAJ ;
Kilburn, DG ;
Rose, DR ;
Davies, G .
JOURNAL OF MOLECULAR BIOLOGY, 2003, 327 (03) :659-669
[7]   β-1,3-glucan binding by a thermostable carbohydrate-binding module from Thermotoga maritima [J].
Boraston, AB ;
Warren, RAJ ;
Kilburn, DG .
BIOCHEMISTRY, 2001, 40 (48) :14679-14685
[8]   Carbohydrate-binding modules: fine-tuning polysaccharide recognition [J].
Boraston, AB ;
Bolam, DN ;
Gilbert, HJ ;
Davies, GJ .
BIOCHEMICAL JOURNAL, 2004, 382 (03) :769-781
[9]   Carbohydrate recognition by a large sialidase toxin from Clostridium perfringenis [J].
Boraston, Alisdair B. ;
Ficko-Blean, Elizabeth ;
HealeyT, Michael .
BIOCHEMISTRY, 2007, 46 (40) :11352-11360
[10]  
Case D.A., 2010, AMBER 11