Journal of Structural Biology 2016-03-01

Structural insight into potential cold adaptation mechanism through a psychrophilic glycoside hydrolase family 10 endo-β-1,4-xylanase.

Yingying Zheng, Yujie Li, Weidong Liu, Chun-Chi Chen, Tzu-Ping Ko, Miao He, Zhongxia Xu, Meixia Liu, Huiying Luo, Rey-Ting Guo, Bin Yao, Yanhe Ma

Index: J. Struct. Biol. 193 , 206-11, (2016)

Full Text: HTML

Abstract

The cold-adapted xylanases can catalyze at low temperature and hold great potential in food industry applications. Here we describe the first crystal structure of a cold-adapted glycoside hydrolase (GH) family 10 xylanase XynGR40 and its complex with xylobiose at 2.15 and 2.50Å resolution. The enzyme folds into a typical GH10 (β/α)8 TIM-barrel, with E132 and E243 serving as the catalytic residues. The xylobiose was observed to occupy the -1 and -2 subsites. Structural comparison with a thermophilic GH10 xylanase highlighting various parameters that may explain the cold adaptation features were analyzed. Synergistic effects of the increased exposure of hydrophobic residues, the higher flexibility of substrate-binding residues, more flexible loops, and the ratios of special amino acid residues, may result in the cold adaptation of XynGR40. Copyright © 2015 Elsevier Inc. All rights reserved.


Related Compounds

Related Articles:

Characterization of the biochemical properties of recombinant Xyn10C from a marine bacterium, Saccharophagus degradans 2-40.

2016-04-01

[Bioprocess Biosyst. Eng. 39 , 677-84, (2016)]

Characterization of (Glucurono)arabinoxylans from Oats Using Enzymatic Fingerprinting.

2015-12-23

[J. Agric. Food Chem. 63 , 10822-30, (2015)]

Comparative Analysis of End Point Enzymatic Digests of Arabino-Xylan Isolated from Switchgrass (Panicum virgatum L) of Varying Maturities using LC-MSn.

2012-01-01

[Metabolites 2 , 959-82, (2014)]

A novel highly thermostable xylanase stimulated by Ca2+ from Thermotoga thermarum: cloning, expression and characterization.

2013-01-01

[Biotechnol. Biofuels 6 , 26, (2013)]

Purification and biochemical characterization of a specific beta-glucosidase from the digestive fluid of larvae of the palm weevil, Rhynchophorus palmarum.

2009-01-01

[J. Insect Sci. 9 , 4, (2009)]

More Articles...