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The structure of the AliC GH13 α-amylase from Alicyclobacillus sp. reveals the accommodation of starch branching points in the α-amylase family

α-Amylases are glycoside hydrolases that break the α-1,4 bonds in starch and related glycans. The degradation of starch is rendered difficult by the presence of varying degrees of α-1,6 branch points and their possible accommodation within the active centre of α-amylase enzymes. Given the myriad ind...

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Autores principales: Agirre, Jon, Moroz, Olga, Meier, Sebastian, Brask, Jesper, Munch, Astrid, Hoff, Tine, Andersen, Carsten, Wilson, Keith S., Davies, Gideon J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6333287/
https://www.ncbi.nlm.nih.gov/pubmed/30644839
http://dx.doi.org/10.1107/S2059798318014900
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author Agirre, Jon
Moroz, Olga
Meier, Sebastian
Brask, Jesper
Munch, Astrid
Hoff, Tine
Andersen, Carsten
Wilson, Keith S.
Davies, Gideon J.
author_facet Agirre, Jon
Moroz, Olga
Meier, Sebastian
Brask, Jesper
Munch, Astrid
Hoff, Tine
Andersen, Carsten
Wilson, Keith S.
Davies, Gideon J.
author_sort Agirre, Jon
collection PubMed
description α-Amylases are glycoside hydrolases that break the α-1,4 bonds in starch and related glycans. The degradation of starch is rendered difficult by the presence of varying degrees of α-1,6 branch points and their possible accommodation within the active centre of α-amylase enzymes. Given the myriad industrial uses for starch and thus also for α-amylase-catalysed starch degradation and modification, there is considerable interest in how different α-amylases might accommodate these branches, thus impacting on the potential processing of highly branched post-hydrolysis remnants (known as limit dextrins) and societal applications. Here, it was sought to probe the branch-point accommodation of the Alicyclobacillus sp. CAZy family GH13 α-amylase AliC, prompted by the observation of a molecule of glucose in a position that may represent a branch point in an acarbose complex solved at 2.1 Å resolution. Limit digest analysis by two-dimensional NMR using both pullulan (a regular linear polysaccharide of α-1,4, α-1,4, α-1,6 repeating trisaccharides) and amylopectin starch showed how the Alicyclo­bacillus sp. enzyme could accept α-1,6 branches in at least the −2, +1 and +2 subsites, consistent with the three-dimensional structures with glucosyl moieties in the +1 and +2 subsites and the solvent-exposure of the −2 subsite 6-hydroxyl group. Together, the work provides a rare insight into branch-point acceptance in these industrial catalysts.
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spelling pubmed-63332872019-02-01 The structure of the AliC GH13 α-amylase from Alicyclobacillus sp. reveals the accommodation of starch branching points in the α-amylase family Agirre, Jon Moroz, Olga Meier, Sebastian Brask, Jesper Munch, Astrid Hoff, Tine Andersen, Carsten Wilson, Keith S. Davies, Gideon J. Acta Crystallogr D Struct Biol Research Papers α-Amylases are glycoside hydrolases that break the α-1,4 bonds in starch and related glycans. The degradation of starch is rendered difficult by the presence of varying degrees of α-1,6 branch points and their possible accommodation within the active centre of α-amylase enzymes. Given the myriad industrial uses for starch and thus also for α-amylase-catalysed starch degradation and modification, there is considerable interest in how different α-amylases might accommodate these branches, thus impacting on the potential processing of highly branched post-hydrolysis remnants (known as limit dextrins) and societal applications. Here, it was sought to probe the branch-point accommodation of the Alicyclobacillus sp. CAZy family GH13 α-amylase AliC, prompted by the observation of a molecule of glucose in a position that may represent a branch point in an acarbose complex solved at 2.1 Å resolution. Limit digest analysis by two-dimensional NMR using both pullulan (a regular linear polysaccharide of α-1,4, α-1,4, α-1,6 repeating trisaccharides) and amylopectin starch showed how the Alicyclo­bacillus sp. enzyme could accept α-1,6 branches in at least the −2, +1 and +2 subsites, consistent with the three-dimensional structures with glucosyl moieties in the +1 and +2 subsites and the solvent-exposure of the −2 subsite 6-hydroxyl group. Together, the work provides a rare insight into branch-point acceptance in these industrial catalysts. International Union of Crystallography 2019-01-04 /pmc/articles/PMC6333287/ /pubmed/30644839 http://dx.doi.org/10.1107/S2059798318014900 Text en © Agirre et al. 2019 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/2.0/uk/
spellingShingle Research Papers
Agirre, Jon
Moroz, Olga
Meier, Sebastian
Brask, Jesper
Munch, Astrid
Hoff, Tine
Andersen, Carsten
Wilson, Keith S.
Davies, Gideon J.
The structure of the AliC GH13 α-amylase from Alicyclobacillus sp. reveals the accommodation of starch branching points in the α-amylase family
title The structure of the AliC GH13 α-amylase from Alicyclobacillus sp. reveals the accommodation of starch branching points in the α-amylase family
title_full The structure of the AliC GH13 α-amylase from Alicyclobacillus sp. reveals the accommodation of starch branching points in the α-amylase family
title_fullStr The structure of the AliC GH13 α-amylase from Alicyclobacillus sp. reveals the accommodation of starch branching points in the α-amylase family
title_full_unstemmed The structure of the AliC GH13 α-amylase from Alicyclobacillus sp. reveals the accommodation of starch branching points in the α-amylase family
title_short The structure of the AliC GH13 α-amylase from Alicyclobacillus sp. reveals the accommodation of starch branching points in the α-amylase family
title_sort structure of the alic gh13 α-amylase from alicyclobacillus sp. reveals the accommodation of starch branching points in the α-amylase family
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6333287/
https://www.ncbi.nlm.nih.gov/pubmed/30644839
http://dx.doi.org/10.1107/S2059798318014900
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