Literature DB >> 27766358

GH115 α-glucuronidase and GH11 xylanase from Paenibacillus sp. JDR-2: potential roles in processing glucuronoxylans.

Mun Su Rhee1,2, Neha Sawhney1,3, Young Sik Kim1, Hyun Jee Rhee1,4, Jason C Hurlbert5, Franz J St John6, Guang Nong1, John D Rice1, James F Preston7.   

Abstract

Paenibacillus sp. JDR-2 (Pjdr2) has been studied as a model for development of bacterial biocatalysts for efficient processing of xylans, methylglucuronoxylan, and methylglucuronoarabinoxylan, the predominant hemicellulosic polysaccharides found in dicots and monocots, respectively. Pjdr2 produces a cell-associated GH10 endoxylanase (Xyn10A1) that catalyzes depolymerization of xylans to xylobiose, xylotriose, and methylglucuronoxylotriose with methylglucuronate-linked α-1,2 to the nonreducing terminal xylose. A GH10/GH67 xylan utilization regulon includes genes encoding an extracellular cell-associated Xyn10A1 endoxylanase and an intracellular GH67 α-glucuronidase active on methylglucuronoxylotriose generated by Xyn10A1 but without activity on methylglucuronoxylotetraose generated by a GH11 endoxylanase. The sequenced genome of Pjdr2 contains three paralogous genes potentially encoding GH115 α-glucuronidases found in certain bacteria and fungi. One of these, Pjdr2_5977, shows enhanced expression during growth on xylans along with Pjdr2_4664 encoding a GH11 endoxylanase. Here, we show that Pjdr2_5977 encodes a GH115 α-glucuronidase, Agu115A, with maximal activity on the aldouronate methylglucuronoxylotetraose selectively generated by a GH11 endoxylanase Xyn11 encoded by Pjdr2_4664. Growth of Pjdr2 on this methylglucuronoxylotetraose supports a process for Xyn11-mediated extracellular depolymerization of methylglucuronoxylan and Agu115A-mediated intracellular deglycosylation as an alternative to the GH10/GH67 system previously defined in this bacterium. A recombinantly expressed enzyme encoded by the Pjdr2 agu115A gene catalyzes removal of 4-O-methylglucuronate residues α-1,2 linked to internal xylose residues in oligoxylosides generated by GH11 and GH30 xylanases and releases methylglucuronate from polymeric methylglucuronoxylan. The GH115 α-glucuronidase from Pjdr2 extends the discovery of this activity to members of the phylum Firmicutes and contributes to a novel system for bioprocessing hemicelluloses.

Entities:  

Keywords:  Biofuels and chemicals; GH11 endoxylanase; GH115 α-glucuronidase; Paenibacillus sp. JDR-2; Xylans

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Year:  2016        PMID: 27766358     DOI: 10.1007/s00253-016-7899-4

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


  5 in total

Review 1.  A mini review of xylanolytic enzymes with regards to their synergistic interactions during hetero-xylan degradation.

Authors:  Samkelo Malgas; Mpho S Mafa; Lithalethu Mkabayi; Brett I Pletschke
Journal:  World J Microbiol Biotechnol       Date:  2019-11-14       Impact factor: 3.312

2.  Metagenome-assembled genome of a Chitinophaga sp. and its potential in plant biomass degradation, as well of affiliated Pandoraea and Labrys species.

Authors:  Michelli Inácio Gonçalves Funnicelli; Daniel Guariz Pinheiro; Elisângela Soares Gomes-Pepe; Lucas Amoroso Lopes de Carvalho; João Carlos Campanharo; Camila Cesário Fernandes; Luciano Takeshi Kishi; Lúcia Maria Carareto Alves; Eliana Gertrudes de Macedo Lemos
Journal:  World J Microbiol Biotechnol       Date:  2021-08-27       Impact factor: 3.312

3.  Bacterial xylan utilization regulons: systems for coupling depolymerization of methylglucuronoxylans with assimilation and metabolism.

Authors:  Virgina Chow; Guang Nong; Franz J St John; Neha Sawhney; John D Rice; James F Preston
Journal:  J Ind Microbiol Biotechnol       Date:  2022-04-14       Impact factor: 4.258

4.  The coordinated action of glucuronoyl esterase and α-glucuronidase promotes the disassembly of lignin-carbohydrate complexes.

Authors:  Olanrewaju Raji; Jenny Arnling Bååth; Thu V Vuong; Johan Larsbrink; Lisbeth Olsson; Emma R Master
Journal:  FEBS Lett       Date:  2021-01-10       Impact factor: 4.124

5.  Unraveling Synergism between Various GH Family Xylanases and Debranching Enzymes during Hetero-Xylan Degradation.

Authors:  Samkelo Malgas; Mpho S Mafa; Brian N Mathibe; Brett I Pletschke
Journal:  Molecules       Date:  2021-11-09       Impact factor: 4.411

  5 in total

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