Distinct roles of carbohydrate-binding modules in multidomain β-1,3–1,4-glucanase on polysaccharide degradation
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Fu-Li Li | Ming Lu | M. Abdalla | H. Hamouda | H. Su | Yixuan Fan | Yi-Xuan Fan | Mohnad Abdalla
[1] Fu-Li Li,et al. Exploration of Two Pectate Lyases from Caldicellulosiruptor bescii Reveals that the CBM66 Module Has a Crucial Role in Pectic Biomass Degradation , 2020, Applied and Environmental Microbiology.
[2] S. Linton,et al. Invited review: The structure and function of cellulase (endo-β-1,4-glucanase) and hemicellulase (β-1,3-glucanase and endo-β-1,4-mannase) enzymes in invertebrates that consume materials ranging from microbes, algae to leaf litter. , 2020, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.
[3] M. Jiang,et al. Enzymatic properties of a multi-specific β-(1,3)-glucanase from Corallococcus sp. EGB and its potential antifungal applications. , 2019, Protein expression and purification.
[4] Matthew R. Tucker,et al. Barley grain (1,3;1,4)-β-glucan content: effects of transcript and sequence variation in genes encoding the corresponding synthase and endohydrolase enzymes , 2019, Scientific Reports.
[5] Shaoqing Yang,et al. A novel thermostable β-1,3-1,4-glucanase from Thermoascus aurantiacus and its application in oligosaccharide production from oat bran. , 2018, Carbohydrate research.
[6] I. Kong,et al. Immobilization of β-1,3-1,4-glucanase from Bacillus sp. on porous silica for production of β-glucooligosaccharides. , 2018, Enzyme and microbial technology.
[7] B. Henrissat,et al. A metagenome-derived thermostable β-glucanase with an unusual module architecture which defines the new glycoside hydrolase family GH148 , 2017, Scientific Reports.
[8] M. Tanokura,et al. Laminarinase from Flavobacterium sp. reveals the structural basis of thermostability and substrate specificity , 2017, Scientific Reports.
[9] Sheng Yuan,et al. Gene cloning, heterologous expression and characterization of a Coprinopsis cinerea endo-β-1,3(4)-glucanase. , 2017, Fungal biology.
[10] Lin Zhang,et al. Purification and characterization of a thermophilic 1,3-1,4-β-glucanase from Bacillus methylotrophicus S2 isolated from booklice. , 2016, Journal of bioscience and bioengineering.
[11] Fu-Li Li,et al. Characterization of a thermostable endo-1,3(4)-β-glucanase from Caldicellulosiruptor sp. strain F32 and its application for yeast lysis , 2016, Applied Microbiology and Biotechnology.
[12] H. Santos,et al. 1,3-1,4-β-Glucanases and not 1,4-β-glucanases improve the nutritive value of barley-based diets for broilers , 2016 .
[13] Y. Ying,et al. Depiction of carbohydrate-active enzyme diversity in Caldicellulosiruptor sp. F32 at the genome level reveals insights into distinct polysaccharide degradation features. , 2015, Molecular bioSystems.
[14] Colm P. O'Donnell,et al. Extraction, structure and biofunctional activities of laminarin from brown algae , 2015 .
[15] Baojun Xu,et al. Skin Health Promotion Effects of Natural Beta‐Glucan Derived from Cereals and Microorganisms: A Review , 2014, Phytotherapy research : PTR.
[16] C. Nombela,et al. Activation of the yeast cell wall integrity MAPK pathway by zymolyase depends on protease and glucanase activities and requires the mucin‐like protein Hkr1 but not Msb2 , 2013, FEBS Letters.
[17] S. Bejar,et al. Purification and biochemical characterization of a novel thermostable lichenase from Aspergillus niger US368. , 2013, Carbohydrate polymers.
[18] Chia-Chi Liu,et al. Cloning and functional characterization of a complex endo-β-1,3-glucanase from Paenibacillus sp. , 2009, Applied Microbiology and Biotechnology.
[19] Ming Luo,et al. Improving solubility of Shewanella oneidensis MR-1 and Clostridium thermocellum JW-20 proteins expressed into Esherichia coli. , 2005, Journal of proteome research.
[20] D. von Wettstein,et al. Supplements of transgenic malt or grain containing (1,3-1,4)-ß-glucanase increase the nutritive value of barley-based broiler diets to that of maize , 2003, British poultry science.
[21] V. Zverlov,et al. Lic16A of Clostridium thermocellum, a non-cellulosomal, highly complex endo-beta-1,3-glucanase bound to the outer cell surface. , 2003, Microbiology.
[22] T. Hong,et al. Biochemical characterization and antifungal activity of an endo-1,3-β-glucanase of Paenibacillus sp. isolated from garden soil , 2003, Applied Microbiology and Biotechnology.
[23] E. S. Olafsdottir,et al. Polysaccharides from Lichens: Structural Characteristics and Biological Activity , 2001, Planta medica.
[24] F. Klis. Review: Cell wall assembly in yeast , 1994, Yeast.
[25] A Bairoch,et al. New families in the classification of glycosyl hydrolases based on amino acid sequence similarities. , 1993, The Biochemical journal.
[26] P. Bonin,et al. Marinobacter hydrocarbonoclasticus gen. nov., sp. nov., a new, extremely halotolerant, hydrocarbon-degrading marine bacterium. , 1992, International journal of systematic bacteriology.
[27] M. M. Bradford. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. , 1976, Analytical biochemistry.