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The Mechanism by Which Arabinoxylanases Can Recognize Highly Decorated Xylans
The enzymatic degradation of plant cell walls is an important biological process of increasing environmental and industrial significance. Xylan, a major component of the plant cell wall, consists of a backbone of β-1,4-xylose (Xylp) units that are often decorated with arabinofuranose (Araf) side cha...
Autores principales: | , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Biochemistry and Molecular Biology
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5063996/ https://www.ncbi.nlm.nih.gov/pubmed/27531750 http://dx.doi.org/10.1074/jbc.M116.743948 |
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author | Labourel, Aurore Crouch, Lucy I. Brás, Joana L. A. Jackson, Adam Rogowski, Artur Gray, Joseph Yadav, Madhav P. Henrissat, Bernard Fontes, Carlos M. G. A. Gilbert, Harry J. Najmudin, Shabir Baslé, Arnaud Cuskin, Fiona |
author_facet | Labourel, Aurore Crouch, Lucy I. Brás, Joana L. A. Jackson, Adam Rogowski, Artur Gray, Joseph Yadav, Madhav P. Henrissat, Bernard Fontes, Carlos M. G. A. Gilbert, Harry J. Najmudin, Shabir Baslé, Arnaud Cuskin, Fiona |
author_sort | Labourel, Aurore |
collection | PubMed |
description | The enzymatic degradation of plant cell walls is an important biological process of increasing environmental and industrial significance. Xylan, a major component of the plant cell wall, consists of a backbone of β-1,4-xylose (Xylp) units that are often decorated with arabinofuranose (Araf) side chains. A large penta-modular enzyme, CtXyl5A, was shown previously to specifically target arabinoxylans. The mechanism of substrate recognition displayed by the enzyme, however, remains unclear. Here we report the crystal structure of the arabinoxylanase and the enzyme in complex with ligands. The data showed that four of the protein modules adopt a rigid structure, which stabilizes the catalytic domain. The C-terminal non-catalytic carbohydrate binding module could not be observed in the crystal structure, suggesting positional flexibility. The structure of the enzyme in complex with Xylp-β-1,4-Xylp-β-1,4-Xylp-[α-1,3-Araf]-β-1,4-Xylp showed that the Araf decoration linked O(3) to the xylose in the active site is located in the pocket (−2* subsite) that abuts onto the catalytic center. The −2* subsite can also bind to Xylp and Arap, explaining why the enzyme can utilize xylose and arabinose as specificity determinants. Alanine substitution of Glu(68), Tyr(92), or Asn(139), which interact with arabinose and xylose side chains at the −2* subsite, abrogates catalytic activity. Distal to the active site, the xylan backbone makes limited apolar contacts with the enzyme, and the hydroxyls are solvent-exposed. This explains why CtXyl5A is capable of hydrolyzing xylans that are extensively decorated and that are recalcitrant to classic endo-xylanase attack. |
format | Online Article Text |
id | pubmed-5063996 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | American Society for Biochemistry and Molecular Biology |
record_format | MEDLINE/PubMed |
spelling | pubmed-50639962016-10-26 The Mechanism by Which Arabinoxylanases Can Recognize Highly Decorated Xylans Labourel, Aurore Crouch, Lucy I. Brás, Joana L. A. Jackson, Adam Rogowski, Artur Gray, Joseph Yadav, Madhav P. Henrissat, Bernard Fontes, Carlos M. G. A. Gilbert, Harry J. Najmudin, Shabir Baslé, Arnaud Cuskin, Fiona J Biol Chem Enzymology The enzymatic degradation of plant cell walls is an important biological process of increasing environmental and industrial significance. Xylan, a major component of the plant cell wall, consists of a backbone of β-1,4-xylose (Xylp) units that are often decorated with arabinofuranose (Araf) side chains. A large penta-modular enzyme, CtXyl5A, was shown previously to specifically target arabinoxylans. The mechanism of substrate recognition displayed by the enzyme, however, remains unclear. Here we report the crystal structure of the arabinoxylanase and the enzyme in complex with ligands. The data showed that four of the protein modules adopt a rigid structure, which stabilizes the catalytic domain. The C-terminal non-catalytic carbohydrate binding module could not be observed in the crystal structure, suggesting positional flexibility. The structure of the enzyme in complex with Xylp-β-1,4-Xylp-β-1,4-Xylp-[α-1,3-Araf]-β-1,4-Xylp showed that the Araf decoration linked O(3) to the xylose in the active site is located in the pocket (−2* subsite) that abuts onto the catalytic center. The −2* subsite can also bind to Xylp and Arap, explaining why the enzyme can utilize xylose and arabinose as specificity determinants. Alanine substitution of Glu(68), Tyr(92), or Asn(139), which interact with arabinose and xylose side chains at the −2* subsite, abrogates catalytic activity. Distal to the active site, the xylan backbone makes limited apolar contacts with the enzyme, and the hydroxyls are solvent-exposed. This explains why CtXyl5A is capable of hydrolyzing xylans that are extensively decorated and that are recalcitrant to classic endo-xylanase attack. American Society for Biochemistry and Molecular Biology 2016-10-14 2016-08-16 /pmc/articles/PMC5063996/ /pubmed/27531750 http://dx.doi.org/10.1074/jbc.M116.743948 Text en © 2016 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) . |
spellingShingle | Enzymology Labourel, Aurore Crouch, Lucy I. Brás, Joana L. A. Jackson, Adam Rogowski, Artur Gray, Joseph Yadav, Madhav P. Henrissat, Bernard Fontes, Carlos M. G. A. Gilbert, Harry J. Najmudin, Shabir Baslé, Arnaud Cuskin, Fiona The Mechanism by Which Arabinoxylanases Can Recognize Highly Decorated Xylans |
title | The Mechanism by Which Arabinoxylanases Can Recognize Highly Decorated Xylans |
title_full | The Mechanism by Which Arabinoxylanases Can Recognize Highly Decorated Xylans |
title_fullStr | The Mechanism by Which Arabinoxylanases Can Recognize Highly Decorated Xylans |
title_full_unstemmed | The Mechanism by Which Arabinoxylanases Can Recognize Highly Decorated Xylans |
title_short | The Mechanism by Which Arabinoxylanases Can Recognize Highly Decorated Xylans |
title_sort | mechanism by which arabinoxylanases can recognize highly decorated xylans |
topic | Enzymology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5063996/ https://www.ncbi.nlm.nih.gov/pubmed/27531750 http://dx.doi.org/10.1074/jbc.M116.743948 |
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