Structural insights into polysaccharide recognition by Flavobacterium johnsoniae dextranase, a member of glycoside hydrolase family 31

被引:15
作者
Tsutsumi, Kenta [1 ]
Gozu, Yoshifumi [1 ]
Nishikawa, Atsushi [1 ]
Tonozuka, Takashi [1 ]
机构
[1] Tokyo Univ Agr & Technol, Dept Appl Biol Sci, 3-5-8 Saiwai Cho, Fuchu, Tokyo 1838509, Japan
关键词
dextran; dextranase; Flavobacterium johnsoniae; GH31; isomaltose; CRYSTAL-STRUCTURE; MALTASE-GLUCOAMYLASE; ALPHA-GLUCOSIDASES; ENZYME; MECHANISM;
D O I
10.1111/febs.15074
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
Glycoside hydrolase family (GH) 31 contains a large variety of enzymes, but the major members are enzymes that act on relatively small oligosaccharides such as alpha-glucosidase. Here, we determined the crystal structure of Flavobacterium johnsoniae dextranase (FjDex31A), an enzyme from F. johnsoniae that hydrolyzes a polysaccharide, dextran. FjDex31A is composed of four domains: an N-terminal domain, a catalytic domain, a proximal C-terminal domain, and a distal C-terminal domain, as observed in typical GH31 enzymes. However, the architecture of active site residues in FjDex31A, other than subsite -1, is markedly different from that of other GH31 enzymes. The FjDex31A structure in complex with isomaltotriose shows that Gly273 and Tyr524, both of which interact with an alpha-glucose residue at subsite -2, as well as Trp376 and Leu308-cisGln309, are especially unique to FjDex31A. Site-directed mutagenesis of Gly273 and Tyr524 resulted in a decrease in the hydrolysis of polysaccharides dextran and pullulan, as well as that of the disaccharide isomaltose. These results suggest that, regardless of the length of sugar chains of the substrates, binding of FjDex31A to the substrates at subsite -2 is likely to be important for its activity. Database Structural data are available in the Protein Data Bank under the accession numbers , , and .
引用
收藏
页码:1195 / 1207
页数:13
相关论文
共 50 条
[41]   Gaining insight into the inhibition of glycoside hydrolase family 20 exo-β-N-acetylhexosaminidases using a structural approach [J].
Sumida, Tomomi ;
Stubbs, Keith A. ;
Ito, Makoto ;
Yokoyama, Shigeyuki .
ORGANIC & BIOMOLECULAR CHEMISTRY, 2012, 10 (13) :2607-2612
[42]   Structural, Biochemical, and Computational Characterization of the Glycoside Hydrolase Family 7 Cellobiohydrolase of the Tree-killing Fungus Heterobasidion irregulare [J].
Momeni, Majid Haddad ;
Payne, Christina M. ;
Hansson, Henrik ;
Mikkelsen, Nils Egil ;
Svedberg, Jesper ;
Engstrom, Ake ;
Sandgren, Mats ;
Beckham, Gregg T. ;
Stahlberg, Jerry .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2013, 288 (08) :5861-5872
[43]   Structural Determinants Responsible for Substrate Recognition and Mode of Action in Family 11 Polysaccharide Lyases [J].
Ochiai, Akihito ;
Itoh, Takafumi ;
Mikami, Bunzo ;
Hashimoto, Wataru ;
Murata, Kousaku .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (15) :10181-10189
[44]   Insights into an unusual Auxiliary Activity 9 family member lacking the histidine brace motif of lytic polysaccharide monooxygenases [J].
Frandsen, Kristian E. H. ;
Tovborg, Morten ;
Jorgensen, Christian, I ;
Spodsberg, Nikolai ;
Rosso, Marie-Noelle ;
Hemsworth, Glyn R. ;
Garman, Elspeth F. ;
Grime, Geoffrey W. ;
Poulsen, Jens-Christian N. ;
Batth, Tanveer S. ;
Miyauchi, Shingo ;
Lipzen, Anna ;
Daum, Chris ;
Grigoriev, Igor, V ;
Johansen, Katja S. ;
Henrissat, Bernard ;
Berrin, Jean-Guy ;
Lo Leggio, Leila .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2019, 294 (45) :17117-17130
[45]   Structural analysis of a glycoside hydrolase family 43 arabinoxylan arabinofuranohydrolase in complex with xylotetraose reveals a different binding mechanism compared with other members of the same family [J].
Vandermarliere, Elien ;
Bourgois, Tine M. ;
Winn, Martyn D. ;
Van Campenhout, Steven ;
Volckaert, Guido ;
Delcour, Jan A. ;
Strelkov, Sergei V. ;
Rabijns, Anja ;
Courtin, Christophe M. .
BIOCHEMICAL JOURNAL, 2009, 418 :39-47
[46]   Loop Motions Important to Product Expulsion in the Thermobifida fusca Glycoside Hydrolase Family 6 Cellobiohydrolase from Structural and Computational Studies [J].
Wu, Miao ;
Bu, Lintao ;
Vuong, Thu V. ;
Wilson, David B. ;
Crowley, Michael F. ;
Sandgren, Mats ;
Stahlberg, Jerry ;
Beckham, Gregg T. ;
Hansson, Henrik .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2013, 288 (46) :33107-33117
[47]   Structural inspection and protein motions modelling of a fungal glycoside hydrolase family 18 chitinase by crystallography depicts a dynamic enzymatic mechanism [J].
Jimenez-Ortega, Elena ;
Elias Kidibule, Peter ;
Fernandez-Lobato, Maria ;
Sanz-Aparicio, Julia .
COMPUTATIONAL AND STRUCTURAL BIOTECHNOLOGY JOURNAL, 2021, 19 :5466-5478
[48]   Insights into the structure and function of fungal β-mannosidases from glycoside hydrolase family 2 based on multiple crystal structures of the Trichoderma harzianum enzyme [J].
Nascimento, Alessandro S. ;
Muniz, Joao Renato C. ;
Aparicio, Ricardo ;
Golubev, Alexander M. ;
Polikarpov, Igor .
FEBS JOURNAL, 2014, 281 (18) :4165-4178
[49]   Structural and Evolutionary Insights within the Polysaccharide Deacetylase Gene Family of Bacillus anthracis and Bacillus cereus [J].
Andreou, Athena ;
Giastas, Petros ;
Christoforides, Elias ;
Eliopoulos, Elias E. .
GENES, 2018, 9 (08)
[50]   Structural insights into apoptotic regulation of human Bfk as a novel Bcl-2 family member [J].
Jang, Dong Man ;
Oh, Eun Kyung ;
Hahn, Hyunggu ;
Kim, Hyoun Sook ;
Han, Byung Woo .
COMPUTATIONAL AND STRUCTURAL BIOTECHNOLOGY JOURNAL, 2022, 20 :745-756