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Studying the Structural Significance of Galectin Design by Playing a Modular Puzzle: Homodimer Generation from Human Tandem-Repeat-Type (Heterodimeric) Galectin-8 by Domain Shuffling

Tissue lectins are emerging (patho)physiological effectors with broad significance. The capacity of adhesion/growth-regulatory galectins to form functional complexes with distinct cellular glycoconjugates is based on molecular selection of matching partners. Engineering of variants by changing the t...

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Autores principales: Ludwig, Anna-Kristin, Michalak, Malwina, Shilova, Nadya, André, Sabine, Kaltner, Herbert, Bovin, Nicolai V., Kopitz, Jürgen, Gabius, Hans-Joachim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6151538/
https://www.ncbi.nlm.nih.gov/pubmed/28925965
http://dx.doi.org/10.3390/molecules22091572
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author Ludwig, Anna-Kristin
Michalak, Malwina
Shilova, Nadya
André, Sabine
Kaltner, Herbert
Bovin, Nicolai V.
Kopitz, Jürgen
Gabius, Hans-Joachim
author_facet Ludwig, Anna-Kristin
Michalak, Malwina
Shilova, Nadya
André, Sabine
Kaltner, Herbert
Bovin, Nicolai V.
Kopitz, Jürgen
Gabius, Hans-Joachim
author_sort Ludwig, Anna-Kristin
collection PubMed
description Tissue lectins are emerging (patho)physiological effectors with broad significance. The capacity of adhesion/growth-regulatory galectins to form functional complexes with distinct cellular glycoconjugates is based on molecular selection of matching partners. Engineering of variants by changing the topological display of carbohydrate recognition domains (CRDs) provides tools to understand the inherent specificity of the functional pairing. We here illustrate its practical implementation in the case of human tandem-repeat-type galectin-8 (Gal-8). It is termed Gal-8 (NC) due to presence of two different CRDs at the N- and C-terminal positions. Gal-8N exhibits exceptionally high affinity for 3′-sialylated/sulfated β-galactosides. This protein is turned into a new homodimer, i.e., Gal-8 (NN), by engineering. The product maintained activity for lactose-inhibitable binding of glycans and glycoproteins. Preferential association with 3′-sialylated/sulfated (and 6-sulfated) β-galactosides was seen by glycan-array analysis when compared to the wild-type protein, which also strongly bound to ABH-type epitopes. Agglutination of erythrocytes documented functional bivalency. This result substantiates the potential for comparative functional studies between the variant and natural Gal-8 (NC)/Gal-8N.
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spelling pubmed-61515382018-11-13 Studying the Structural Significance of Galectin Design by Playing a Modular Puzzle: Homodimer Generation from Human Tandem-Repeat-Type (Heterodimeric) Galectin-8 by Domain Shuffling Ludwig, Anna-Kristin Michalak, Malwina Shilova, Nadya André, Sabine Kaltner, Herbert Bovin, Nicolai V. Kopitz, Jürgen Gabius, Hans-Joachim Molecules Article Tissue lectins are emerging (patho)physiological effectors with broad significance. The capacity of adhesion/growth-regulatory galectins to form functional complexes with distinct cellular glycoconjugates is based on molecular selection of matching partners. Engineering of variants by changing the topological display of carbohydrate recognition domains (CRDs) provides tools to understand the inherent specificity of the functional pairing. We here illustrate its practical implementation in the case of human tandem-repeat-type galectin-8 (Gal-8). It is termed Gal-8 (NC) due to presence of two different CRDs at the N- and C-terminal positions. Gal-8N exhibits exceptionally high affinity for 3′-sialylated/sulfated β-galactosides. This protein is turned into a new homodimer, i.e., Gal-8 (NN), by engineering. The product maintained activity for lactose-inhibitable binding of glycans and glycoproteins. Preferential association with 3′-sialylated/sulfated (and 6-sulfated) β-galactosides was seen by glycan-array analysis when compared to the wild-type protein, which also strongly bound to ABH-type epitopes. Agglutination of erythrocytes documented functional bivalency. This result substantiates the potential for comparative functional studies between the variant and natural Gal-8 (NC)/Gal-8N. MDPI 2017-09-19 /pmc/articles/PMC6151538/ /pubmed/28925965 http://dx.doi.org/10.3390/molecules22091572 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ludwig, Anna-Kristin
Michalak, Malwina
Shilova, Nadya
André, Sabine
Kaltner, Herbert
Bovin, Nicolai V.
Kopitz, Jürgen
Gabius, Hans-Joachim
Studying the Structural Significance of Galectin Design by Playing a Modular Puzzle: Homodimer Generation from Human Tandem-Repeat-Type (Heterodimeric) Galectin-8 by Domain Shuffling
title Studying the Structural Significance of Galectin Design by Playing a Modular Puzzle: Homodimer Generation from Human Tandem-Repeat-Type (Heterodimeric) Galectin-8 by Domain Shuffling
title_full Studying the Structural Significance of Galectin Design by Playing a Modular Puzzle: Homodimer Generation from Human Tandem-Repeat-Type (Heterodimeric) Galectin-8 by Domain Shuffling
title_fullStr Studying the Structural Significance of Galectin Design by Playing a Modular Puzzle: Homodimer Generation from Human Tandem-Repeat-Type (Heterodimeric) Galectin-8 by Domain Shuffling
title_full_unstemmed Studying the Structural Significance of Galectin Design by Playing a Modular Puzzle: Homodimer Generation from Human Tandem-Repeat-Type (Heterodimeric) Galectin-8 by Domain Shuffling
title_short Studying the Structural Significance of Galectin Design by Playing a Modular Puzzle: Homodimer Generation from Human Tandem-Repeat-Type (Heterodimeric) Galectin-8 by Domain Shuffling
title_sort studying the structural significance of galectin design by playing a modular puzzle: homodimer generation from human tandem-repeat-type (heterodimeric) galectin-8 by domain shuffling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6151538/
https://www.ncbi.nlm.nih.gov/pubmed/28925965
http://dx.doi.org/10.3390/molecules22091572
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