4.6 Article

New Family of Carbohydrate-Binding Modules Defined by a Galactosyl-Binding Protein Module from a Cellvibrio japonicus Endo-Xyloglucanase

期刊

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/AEM.02634-20

关键词

carbohydrate-binding modules (CBMs); glycoside hydrolase; xyloglucan; plant biomass; Bacteroidetes; Cellvibrio; Gammaproteobacteria; carbohydrate-active enzyme; mannan; polysaccharide; xyloglucanase

资金

  1. Natural Sciences and Engineering Research Council of Canada [RGPIN 43522313, RGPIN-2018-03892, NETGP 45131-13]
  2. Canada Foundation for Innovation
  3. British Columbia Knowledge Development Fund
  4. Michael Smith Laboratories

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This study identifies CBM88 as a new family of galactose-binding protein modules, with the X181 module defined as a member of this CBM family. The results show specific binding preferences and will guide future bioinformatic and functional analyses across microbial genomes.
Carbohydrate-binding modules (CBMs) are usually appended to carbohydrate-active enzymes (CAZymes) and serve to potentiate catalytic activity, for example, by increasing substrate affinity. The Gram-negative soil saprophyte Cellvibrio japonicus is a valuable source for CAZyme and CBM discovery and characterization due to its innate ability to degrade a wide array of plant polysaccharides. Bioinformatic analysis of the CJA_2959 gene product from C. japonicus revealed a modular architecture consisting of a fibronectin type III (Fn3) module, a cryptic module of unknown function (X181), and a glycoside hydrolase family 5 subfamily 4 (GHS_4) catalytic module. We previously demonstrated that the last of these, CjGH5F, is an efficient and specific endo-xyloglucanase (M. A. Attia, C. E. Nelson, W. A. Offen, N. Jain, et al., Biotechnol Biofuels 11:45, 2018, https://doi.org/10.1186/s13068-018-1039-6). In the present study, C-terminal fusion of superfolder green fluorescent protein in tandem with the Fn3-X181 modules enabled recombinant production and purification from Escherichia coli. Native affinity gel electrophoresis revealed binding specificity for the terminal galactose-containing plant polysaccharides galactoxyloglucan and galactomannan. Isothermal titration calorimetry further evidenced a preference for galactoxyloglucan polysaccharide over short oligosaccharides comprising the limit-digest products of CjGH5F. Thus, our results identify the X181 module as the defining member of a new CBM family, CBM88. In addition to directly revealing the function of this CBM in the context of xyloglucan metabolism by C. japonicus, this study will guide future bioinformatic and functional analyses across microbial (meta)genomes. IMPORTANCE This study reveals carbohydrate-binding module family 88 (CBM88) as a new family of galactose-binding protein modules, which are found in series with diverse microbial glycoside hydrolases, polysaccharide lyases, and carbohydrate esterases. The definition of CBM88 in the carbohydrate-active enzymes classification (http:// www.cazy.org/CBM88.html) will significantly enable future microbial (meta)genome analysis and functional studies.

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