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Affinity maturation generates greatly improved xyloglucan-specific carbohydrate binding modules

BACKGROUND: Molecular evolution of carbohydrate binding modules (CBM) is a new approach for the generation of glycan-specific molecular probes. To date, the possibility of performing affinity maturation on CBM has not been investigated. In this study we show that binding characteristics such as affi...

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Autores principales: von Schantz, Laura, Gullfot, Fredrika, Scheer, Sebastian, Filonova, Lada, Cicortas Gunnarsson, Lavinia, Flint, James E, Daniel, Geoffrey, Nordberg-Karlsson, Eva, Brumer, Harry, Ohlin, Mats
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2783032/
https://www.ncbi.nlm.nih.gov/pubmed/19878581
http://dx.doi.org/10.1186/1472-6750-9-92
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author von Schantz, Laura
Gullfot, Fredrika
Scheer, Sebastian
Filonova, Lada
Cicortas Gunnarsson, Lavinia
Flint, James E
Daniel, Geoffrey
Nordberg-Karlsson, Eva
Brumer, Harry
Ohlin, Mats
author_facet von Schantz, Laura
Gullfot, Fredrika
Scheer, Sebastian
Filonova, Lada
Cicortas Gunnarsson, Lavinia
Flint, James E
Daniel, Geoffrey
Nordberg-Karlsson, Eva
Brumer, Harry
Ohlin, Mats
author_sort von Schantz, Laura
collection PubMed
description BACKGROUND: Molecular evolution of carbohydrate binding modules (CBM) is a new approach for the generation of glycan-specific molecular probes. To date, the possibility of performing affinity maturation on CBM has not been investigated. In this study we show that binding characteristics such as affinity can be improved for CBM generated from the CBM4-2 scaffold by using random mutagenesis in combination with phage display technology. RESULTS: Two modified proteins with greatly improved affinity for xyloglucan, a key polysaccharide abundant in the plant kingdom crucial for providing plant support, were generated. Both improved modules differ from other existing xyloglucan probes by binding to galactose-decorated subunits of xyloglucan. The usefulness of the evolved binders was verified by staining of plant sections, where they performed better than the xyloglucan-binding module from which they had been derived. They discriminated non-fucosylated from fucosylated xyloglucan as shown by their ability to stain only the endosperm, rich in non-fucosylated xyloglucan, but not the integument rich in fucosylated xyloglucan, on tamarind seed sections. CONCLUSION: We conclude that affinity maturation of CBM selected from molecular libraries based on the CBM4-2 scaffold is possible and has the potential to generate new analytical tools for detection of plant carbohydrates.
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spelling pubmed-27830322009-11-26 Affinity maturation generates greatly improved xyloglucan-specific carbohydrate binding modules von Schantz, Laura Gullfot, Fredrika Scheer, Sebastian Filonova, Lada Cicortas Gunnarsson, Lavinia Flint, James E Daniel, Geoffrey Nordberg-Karlsson, Eva Brumer, Harry Ohlin, Mats BMC Biotechnol Research article BACKGROUND: Molecular evolution of carbohydrate binding modules (CBM) is a new approach for the generation of glycan-specific molecular probes. To date, the possibility of performing affinity maturation on CBM has not been investigated. In this study we show that binding characteristics such as affinity can be improved for CBM generated from the CBM4-2 scaffold by using random mutagenesis in combination with phage display technology. RESULTS: Two modified proteins with greatly improved affinity for xyloglucan, a key polysaccharide abundant in the plant kingdom crucial for providing plant support, were generated. Both improved modules differ from other existing xyloglucan probes by binding to galactose-decorated subunits of xyloglucan. The usefulness of the evolved binders was verified by staining of plant sections, where they performed better than the xyloglucan-binding module from which they had been derived. They discriminated non-fucosylated from fucosylated xyloglucan as shown by their ability to stain only the endosperm, rich in non-fucosylated xyloglucan, but not the integument rich in fucosylated xyloglucan, on tamarind seed sections. CONCLUSION: We conclude that affinity maturation of CBM selected from molecular libraries based on the CBM4-2 scaffold is possible and has the potential to generate new analytical tools for detection of plant carbohydrates. BioMed Central 2009-10-31 /pmc/articles/PMC2783032/ /pubmed/19878581 http://dx.doi.org/10.1186/1472-6750-9-92 Text en Copyright ©2009 von Schantz et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research article
von Schantz, Laura
Gullfot, Fredrika
Scheer, Sebastian
Filonova, Lada
Cicortas Gunnarsson, Lavinia
Flint, James E
Daniel, Geoffrey
Nordberg-Karlsson, Eva
Brumer, Harry
Ohlin, Mats
Affinity maturation generates greatly improved xyloglucan-specific carbohydrate binding modules
title Affinity maturation generates greatly improved xyloglucan-specific carbohydrate binding modules
title_full Affinity maturation generates greatly improved xyloglucan-specific carbohydrate binding modules
title_fullStr Affinity maturation generates greatly improved xyloglucan-specific carbohydrate binding modules
title_full_unstemmed Affinity maturation generates greatly improved xyloglucan-specific carbohydrate binding modules
title_short Affinity maturation generates greatly improved xyloglucan-specific carbohydrate binding modules
title_sort affinity maturation generates greatly improved xyloglucan-specific carbohydrate binding modules
topic Research article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2783032/
https://www.ncbi.nlm.nih.gov/pubmed/19878581
http://dx.doi.org/10.1186/1472-6750-9-92
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