Literature DB >> 33097594

Ascertaining the biochemical function of an essential pectin methylesterase in the gut microbe Bacteroides thetaiotaomicron.

Cheng-Jie Duan1, Arnaud Baslé2, Marcelo Visona Liberato3, Joseph Gray2, Sergey A Nepogodiev4, Robert A Field5, Nathalie Juge6, Didier Ndeh7.   

Abstract

Pectins are a major dietary nutrient source for the human gut microbiota. The prominent gut microbe Bacteroides thetaiotaomicron was recently shown to encode the founding member (BT1017) of a new family of pectin methylesterases essential for the metabolism of the complex pectin rhamnogalacturonan-II (RG-II). However, biochemical and structural knowledge of this family is lacking. Here, we showed that BT1017 is critical for the metabolism of an RG-II-derived oligosaccharide ΔBT1017oligoB generated by a BT1017 deletion mutant (ΔBT1017) during growth on carbohydrate extract from apple juice. Structural analyses of ΔBT1017oligoB using a combination of enzymatic, mass spectrometric, and NMR approaches revealed that it is a bimethylated nonaoligosaccharide (GlcA-β1,4-(2-O-Me-Xyl-α1,3)-Fuc-α1,4-(GalA-β1,3)-Rha-α1,3-Api-β1,2-(Araf-α1,3)-(GalA-α1,4)-GalA) containing components of the RG-II backbone and its side chains. We showed that the catalytic module of BT1017 adopts an α/β-hydrolase fold, consisting of a central twisted 10-stranded β-sheet sandwiched by several α-helices. This constitutes a new fold for pectin methylesterases, which are predominantly right-handed β-helical proteins. Bioinformatic analyses revealed that the family is dominated by sequences from prominent genera of the human gut microbiota, including Bacteroides and Prevotella Our re-sults not only highlight the critical role played by this family of enzymes in pectin metabolism but also provide new insights into the molecular basis of the adaptation of B. thetaiotaomicron to the human gut.
© 2020 Duan et al.

Entities:  

Keywords:  BT1017; Bacteroides thetaiotaomicron; enzyme; enzyme structure; glycobiology; microbiology; microbiome; pectin methylesterase; rhamnogalacturonan II

Mesh:

Substances:

Year:  2020        PMID: 33097594      PMCID: PMC7939467          DOI: 10.1074/jbc.RA120.014974

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  31 in total

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Authors:  E V Pindel; N Y Kedishvili; T L Abraham; M R Brzezinski; J Zhang; R A Dean; W F Bosron
Journal:  J Biol Chem       Date:  1997-06-06       Impact factor: 5.157

2.  Rhamnogalacturonan II structure shows variation in the side chains monosaccharide composition and methylation status within and across different plant species.

Authors:  Martin Pabst; Richard M Fischl; Lothar Brecker; Willy Morelle; Alexander Fauland; Harald Köfeler; Friedrich Altmann; Renaud Léonard
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8.  Dietary pectic glycans are degraded by coordinated enzyme pathways in human colonic Bacteroides.

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10.  Complex pectin metabolism by gut bacteria reveals novel catalytic functions.

Authors:  Didier Ndeh; Artur Rogowski; Alan Cartmell; Ana S Luis; Arnaud Baslé; Joseph Gray; Immacolata Venditto; Jonathon Briggs; Xiaoyang Zhang; Aurore Labourel; Nicolas Terrapon; Fanny Buffetto; Sergey Nepogodiev; Yao Xiao; Robert A Field; Yanping Zhu; Malcolm A O'Neil; Breeana R Urbanowicz; William S York; Gideon J Davies; D Wade Abbott; Marie-Christine Ralet; Eric C Martens; Bernard Henrissat; Harry J Gilbert
Journal:  Nature       Date:  2017-03-22       Impact factor: 69.504

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