Literature DB >> 32715363

Screening and characterization of an α-L-fucosidase from Bacteroides fragilis NCTC9343 for synthesis of fucosyl-N-acetylglucosamine disaccharides.

Peng Liu1, Huaqin Zhang1, Yuying Wang1, Xiaodi Chen1,2, Lan Jin1, Li Xu3, Min Xiao4.   

Abstract

Fucosyl-N-acetylglucosamine disaccharides are present in many biologically important oligosaccharides, such as human milk oligosaccharides, Lewis carbohydrate antigens, and glycans on cell-surface glycoconjugate receptors, and thus have vast potential for infant formulas, prebiotics, and pharmaceutical applications. In this work, in order to screen biocatalysts for enzymatic synthesis of fucosyl-N-acetylglucosamine disaccharides, we performed sequence analysis of 12 putative and one known α-L-fucosidases of Bacteroides fragilis NCTC9343 and constructed a phylogenetic tree of the nine GH29 α-L-fucosidases. After that, five GH29A α-L-fucosidases were cloned, and four of them were successfully heterogeneous expressed and screened for transglycosylation activity, and a GH29A α-L-fucosidase (BF3242) that synthesized a mix of Fuc-α-1,3/1,6-GlcNAc disaccharides using pNPαFuc as donor and GlcNAc as acceptor was characterized. The effects of initial substrate concentration, pH, temperature, and reaction time on its transglycosylation activity were studied in detail. Under the optimum conditions of 0.05 U/mL enzyme, 20 mM pNPαFuc, and 500 mM GlcNAc in sodium buffer (pH 7.5) at 37 °C for 45 min, BF3242 efficiently synthesized Fuc-α-1,3/1,6-GlcNAc at a maximum yield of 79.0% with the ratio of 0.48 for 1,3/1,6. The molecular dynamics simulation analysis revealed that Loop-4 (His220-Ser245) in the putative 3D model of BF3242 displayed significant changes throughout the thermal simulations, might being responsible for the changes in the ratio of two regioisomeric products at different temperatures. This work provided not only a potential synthetic tool for enzymatic synthesis of fucosyl-N-acetylglucosamine disaccharides but also a possibility for the formation of regioisomeric products in glycosidase-catalyzed transglycosylation. KEY POINTS: • Sequence analysis of α-L-fucosidases of Bacteroides fragilis NCTC9343 • Obtainment of an α-L-fucosidase with high transglycosylation activity • Explanation why temperature affected the ratio of two regioisomeric products.

Entities:  

Keywords:  Bacteroides fragilis; Fucosyl-N-acetylglucosamine disaccharides; Transglycosylation; α-L-Fucosidases

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Year:  2020        PMID: 32715363     DOI: 10.1007/s00253-020-10759-w

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  4 in total

1.  Evaluation of the Effects of Different Bacteroides vulgatus Strains against DSS-Induced Colitis.

Authors:  Sijia Li; Chen Wang; Chengcheng Zhang; Yanhong Luo; Qianqian Cheng; Leilei Yu; Zhen Sun
Journal:  J Immunol Res       Date:  2021-05-29       Impact factor: 4.818

Review 2.  How microbial glycosyl hydrolase activity in the gut mucosa initiates microbial cross-feeding.

Authors:  Maryse D Berkhout; Caroline M Plugge; Clara Belzer
Journal:  Glycobiology       Date:  2022-03-30       Impact factor: 4.313

3.  Infant Gut Microbial Metagenome Mining of α-l-Fucosidases with Activity on Fucosylated Human Milk Oligosaccharides and Glycoconjugates.

Authors:  Eva M Moya-Gonzálvez; Nazaret Peña-Gil; Antonio Rubio-Del-Campo; José M Coll-Marqués; Roberto Gozalbo-Rovira; Vicente Monedero; Jesús Rodríguez-Díaz; María J Yebra
Journal:  Microbiol Spectr       Date:  2022-08-09

4.  Improvement of Fucosylated Oligosaccharides Synthesis by α-L-Fucosidase from Thermotoga maritima in Water-Organic Cosolvent Reaction System.

Authors:  Mónica A Robles-Arias; Mariano García-Garibay; Sergio Alatorre-Santamaría; Salvador R Tello-Solís; Francisco Guzmán-Rodriguez; Lorena Gómez-Ruiz; Gabriela Rodríguez-Serrano; Alma E Cruz-Guerrero
Journal:  Appl Biochem Biotechnol       Date:  2021-07-26       Impact factor: 2.926

  4 in total

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