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A Group of Sequence-Related Sphingomonad Enzymes Catalyzes Cleavage of β-Aryl Ether Linkages in Lignin β-Guaiacyl and β-Syringyl Ether Dimers
[Image: see text] Lignin biosynthesis occurs via radical coupling of guaiacyl and syringyl hydroxycinnamyl alcohol monomers (i.e., “monolignols”) through chemical condensation with the growing lignin polymer. With each chain-extension step, monolignols invariably couple at their β-positions, generat...
Autores principales: | , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American
Chemical Society
2014
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4207535/ https://www.ncbi.nlm.nih.gov/pubmed/25232892 http://dx.doi.org/10.1021/es503886d |
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author | Gall, Daniel L. Ralph, John Donohue, Timothy J. Noguera, Daniel R. |
author_facet | Gall, Daniel L. Ralph, John Donohue, Timothy J. Noguera, Daniel R. |
author_sort | Gall, Daniel L. |
collection | PubMed |
description | [Image: see text] Lignin biosynthesis occurs via radical coupling of guaiacyl and syringyl hydroxycinnamyl alcohol monomers (i.e., “monolignols”) through chemical condensation with the growing lignin polymer. With each chain-extension step, monolignols invariably couple at their β-positions, generating chiral centers. Here, we report on activities of bacterial glutathione-S-transferase (GST) enzymes that cleave β-aryl ether bonds in lignin dimers that are composed of different monomeric units. Our data reveal that these sequence-related enzymes from Novosphingobium sp. strain PP1Y, Novosphingobium aromaticivorans strain DSM12444, and Sphingobium sp. strain SYK-6 have conserved functions as β-etherases, catalyzing cleavage of each of the four dimeric α-keto-β-aryl ether-linked substrates (i.e., guaiacyl-β-guaiacyl, guaiacyl-β-syringyl, syringyl-β-guaiacyl, and syringyl-β-syringyl). Although each β-etherase cleaves β-guaiacyl and β-syringyl substrates, we have found that each is stereospecific for a given β-enantiomer in a racemic substrate; LigE and LigP β-etherase homologues exhibited stereospecificity toward β(R)-enantiomers whereas LigF and its homologues exhibited β(S)-stereospecificity. Given the diversity of lignin’s monomeric units and the racemic nature of lignin polymers, we propose that bacterial catabolic pathways have overcome the existence of diverse lignin-derived substrates in nature by evolving multiple enzymes with broad substrate specificities. Thus, each bacterial β-etherase is able to cleave β-guaiacyl and β-syringyl ether-linked compounds while retaining either β(R)- or β(S)-stereospecificity. |
format | Online Article Text |
id | pubmed-4207535 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | American
Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-42075352014-10-27 A Group of Sequence-Related Sphingomonad Enzymes Catalyzes Cleavage of β-Aryl Ether Linkages in Lignin β-Guaiacyl and β-Syringyl Ether Dimers Gall, Daniel L. Ralph, John Donohue, Timothy J. Noguera, Daniel R. Environ Sci Technol [Image: see text] Lignin biosynthesis occurs via radical coupling of guaiacyl and syringyl hydroxycinnamyl alcohol monomers (i.e., “monolignols”) through chemical condensation with the growing lignin polymer. With each chain-extension step, monolignols invariably couple at their β-positions, generating chiral centers. Here, we report on activities of bacterial glutathione-S-transferase (GST) enzymes that cleave β-aryl ether bonds in lignin dimers that are composed of different monomeric units. Our data reveal that these sequence-related enzymes from Novosphingobium sp. strain PP1Y, Novosphingobium aromaticivorans strain DSM12444, and Sphingobium sp. strain SYK-6 have conserved functions as β-etherases, catalyzing cleavage of each of the four dimeric α-keto-β-aryl ether-linked substrates (i.e., guaiacyl-β-guaiacyl, guaiacyl-β-syringyl, syringyl-β-guaiacyl, and syringyl-β-syringyl). Although each β-etherase cleaves β-guaiacyl and β-syringyl substrates, we have found that each is stereospecific for a given β-enantiomer in a racemic substrate; LigE and LigP β-etherase homologues exhibited stereospecificity toward β(R)-enantiomers whereas LigF and its homologues exhibited β(S)-stereospecificity. Given the diversity of lignin’s monomeric units and the racemic nature of lignin polymers, we propose that bacterial catabolic pathways have overcome the existence of diverse lignin-derived substrates in nature by evolving multiple enzymes with broad substrate specificities. Thus, each bacterial β-etherase is able to cleave β-guaiacyl and β-syringyl ether-linked compounds while retaining either β(R)- or β(S)-stereospecificity. American Chemical Society 2014-09-18 2014-10-21 /pmc/articles/PMC4207535/ /pubmed/25232892 http://dx.doi.org/10.1021/es503886d Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) |
spellingShingle | Gall, Daniel L. Ralph, John Donohue, Timothy J. Noguera, Daniel R. A Group of Sequence-Related Sphingomonad Enzymes Catalyzes Cleavage of β-Aryl Ether Linkages in Lignin β-Guaiacyl and β-Syringyl Ether Dimers |
title | A Group
of Sequence-Related Sphingomonad Enzymes Catalyzes
Cleavage of β-Aryl Ether Linkages in Lignin β-Guaiacyl
and β-Syringyl Ether Dimers |
title_full | A Group
of Sequence-Related Sphingomonad Enzymes Catalyzes
Cleavage of β-Aryl Ether Linkages in Lignin β-Guaiacyl
and β-Syringyl Ether Dimers |
title_fullStr | A Group
of Sequence-Related Sphingomonad Enzymes Catalyzes
Cleavage of β-Aryl Ether Linkages in Lignin β-Guaiacyl
and β-Syringyl Ether Dimers |
title_full_unstemmed | A Group
of Sequence-Related Sphingomonad Enzymes Catalyzes
Cleavage of β-Aryl Ether Linkages in Lignin β-Guaiacyl
and β-Syringyl Ether Dimers |
title_short | A Group
of Sequence-Related Sphingomonad Enzymes Catalyzes
Cleavage of β-Aryl Ether Linkages in Lignin β-Guaiacyl
and β-Syringyl Ether Dimers |
title_sort | group
of sequence-related sphingomonad enzymes catalyzes
cleavage of β-aryl ether linkages in lignin β-guaiacyl
and β-syringyl ether dimers |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4207535/ https://www.ncbi.nlm.nih.gov/pubmed/25232892 http://dx.doi.org/10.1021/es503886d |
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