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Generation of a Library of Carbohydrate-Active Enzymes for Plant Biomass Deconstruction

In nature, the deconstruction of plant carbohydrates is carried out by carbohydrate-active enzymes (CAZymes). A high-throughput (HTP) strategy was used to isolate and clone 1476 genes obtained from a diverse library of recombinant CAZymes covering a variety of sequence-based families, enzyme classes...

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Autores principales: Cardoso, Vânia, Brás, Joana L. A., Costa, Inês F., Ferreira, Luís M. A., Gama, Luís T., Vincentelli, Renaud, Henrissat, Bernard, Fontes, Carlos M. G. A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8999789/
https://www.ncbi.nlm.nih.gov/pubmed/35409382
http://dx.doi.org/10.3390/ijms23074024
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author Cardoso, Vânia
Brás, Joana L. A.
Costa, Inês F.
Ferreira, Luís M. A.
Gama, Luís T.
Vincentelli, Renaud
Henrissat, Bernard
Fontes, Carlos M. G. A.
author_facet Cardoso, Vânia
Brás, Joana L. A.
Costa, Inês F.
Ferreira, Luís M. A.
Gama, Luís T.
Vincentelli, Renaud
Henrissat, Bernard
Fontes, Carlos M. G. A.
author_sort Cardoso, Vânia
collection PubMed
description In nature, the deconstruction of plant carbohydrates is carried out by carbohydrate-active enzymes (CAZymes). A high-throughput (HTP) strategy was used to isolate and clone 1476 genes obtained from a diverse library of recombinant CAZymes covering a variety of sequence-based families, enzyme classes, and source organisms. All genes were successfully isolated by either PCR (61%) or gene synthesis (GS) (39%) and were subsequently cloned into Escherichia coli expression vectors. Most proteins (79%) were obtained at a good yield during recombinant expression. A significantly lower number (p < 0.01) of proteins from eukaryotic (57.7%) and archaeal (53.3%) origin were soluble compared to bacteria (79.7%). Genes obtained by GS gave a significantly lower number (p = 0.04) of soluble proteins while the green fluorescent protein tag improved protein solubility (p = 0.05). Finally, a relationship between the amino acid composition and protein solubility was observed. Thus, a lower percentage of non-polar and higher percentage of negatively charged amino acids in a protein may be a good predictor for higher protein solubility in E. coli. The HTP approach presented here is a powerful tool for producing recombinant CAZymes that can be used for future studies of plant cell wall degradation. Successful production and expression of soluble recombinant proteins at a high rate opens new possibilities for the high-throughput production of targets from limitless sources.
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spelling pubmed-89997892022-04-12 Generation of a Library of Carbohydrate-Active Enzymes for Plant Biomass Deconstruction Cardoso, Vânia Brás, Joana L. A. Costa, Inês F. Ferreira, Luís M. A. Gama, Luís T. Vincentelli, Renaud Henrissat, Bernard Fontes, Carlos M. G. A. Int J Mol Sci Article In nature, the deconstruction of plant carbohydrates is carried out by carbohydrate-active enzymes (CAZymes). A high-throughput (HTP) strategy was used to isolate and clone 1476 genes obtained from a diverse library of recombinant CAZymes covering a variety of sequence-based families, enzyme classes, and source organisms. All genes were successfully isolated by either PCR (61%) or gene synthesis (GS) (39%) and were subsequently cloned into Escherichia coli expression vectors. Most proteins (79%) were obtained at a good yield during recombinant expression. A significantly lower number (p < 0.01) of proteins from eukaryotic (57.7%) and archaeal (53.3%) origin were soluble compared to bacteria (79.7%). Genes obtained by GS gave a significantly lower number (p = 0.04) of soluble proteins while the green fluorescent protein tag improved protein solubility (p = 0.05). Finally, a relationship between the amino acid composition and protein solubility was observed. Thus, a lower percentage of non-polar and higher percentage of negatively charged amino acids in a protein may be a good predictor for higher protein solubility in E. coli. The HTP approach presented here is a powerful tool for producing recombinant CAZymes that can be used for future studies of plant cell wall degradation. Successful production and expression of soluble recombinant proteins at a high rate opens new possibilities for the high-throughput production of targets from limitless sources. MDPI 2022-04-05 /pmc/articles/PMC8999789/ /pubmed/35409382 http://dx.doi.org/10.3390/ijms23074024 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cardoso, Vânia
Brás, Joana L. A.
Costa, Inês F.
Ferreira, Luís M. A.
Gama, Luís T.
Vincentelli, Renaud
Henrissat, Bernard
Fontes, Carlos M. G. A.
Generation of a Library of Carbohydrate-Active Enzymes for Plant Biomass Deconstruction
title Generation of a Library of Carbohydrate-Active Enzymes for Plant Biomass Deconstruction
title_full Generation of a Library of Carbohydrate-Active Enzymes for Plant Biomass Deconstruction
title_fullStr Generation of a Library of Carbohydrate-Active Enzymes for Plant Biomass Deconstruction
title_full_unstemmed Generation of a Library of Carbohydrate-Active Enzymes for Plant Biomass Deconstruction
title_short Generation of a Library of Carbohydrate-Active Enzymes for Plant Biomass Deconstruction
title_sort generation of a library of carbohydrate-active enzymes for plant biomass deconstruction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8999789/
https://www.ncbi.nlm.nih.gov/pubmed/35409382
http://dx.doi.org/10.3390/ijms23074024
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