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Transglutaminase-2 Interaction with Heparin: IDENTIFICATION OF A HEPARIN BINDING SITE THAT REGULATES CELL ADHESION TO FIBRONECTIN-TRANSGLUTAMINASE-2 MATRIX

Heparan sulfate proteoglycans are critical binding partners for extracellular tranglutaminase-2 (TG2), a multifunctional protein involved in tissue remodeling events related to organ fibrosis and cancer progression. We previously showed that TG2 has a strong affinity for heparan sulfate (HS)/heparin...

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Autores principales: Lortat-Jacob, Hugues, Burhan, Izhar, Scarpellini, Alessandra, Thomas, Aline, Imberty, Anne, Vivès, Romain R., Johnson, Timothy, Gutierrez, Aldo, Verderio, Elisabetta A. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3365763/
https://www.ncbi.nlm.nih.gov/pubmed/22442151
http://dx.doi.org/10.1074/jbc.M111.337089
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author Lortat-Jacob, Hugues
Burhan, Izhar
Scarpellini, Alessandra
Thomas, Aline
Imberty, Anne
Vivès, Romain R.
Johnson, Timothy
Gutierrez, Aldo
Verderio, Elisabetta A. M.
author_facet Lortat-Jacob, Hugues
Burhan, Izhar
Scarpellini, Alessandra
Thomas, Aline
Imberty, Anne
Vivès, Romain R.
Johnson, Timothy
Gutierrez, Aldo
Verderio, Elisabetta A. M.
author_sort Lortat-Jacob, Hugues
collection PubMed
description Heparan sulfate proteoglycans are critical binding partners for extracellular tranglutaminase-2 (TG2), a multifunctional protein involved in tissue remodeling events related to organ fibrosis and cancer progression. We previously showed that TG2 has a strong affinity for heparan sulfate (HS)/heparin and reported that the heparan sulfate proteoglycan syndecan-4 acts as a receptor for TG2 via its HS chains in two ways: by increasing TG2-cell surface trafficking/externalization and by mediating RGD-independent cell adhesion to fibronectin-TG2 matrix during wound healing. Here we have investigated the molecular basis of this interaction. Site-directed mutagenesis revealed that either mutation of basic RRWK (262–265) or KQKRK (598–602) clusters, forming accessible heparin binding sequences on the TG2 three-dimensional structure, led to an almost complete reduction of heparin binding, indicating that both clusters contribute to form a single binding surface. Mutation of residues Arg(19) and Arg(28) also led to a significant reduction in heparin binding, suggesting their involvement. Our findings indicate that the heparin binding sites on TG2 mainly comprise two clusters of basic amino acids, which are distant in the linear sequence but brought into spatial proximity in the folded “closed” protein, forming a high affinity heparin binding site. Molecular modeling showed that the identified site can make contact with a single heparin-derived pentasaccharide. The TG2-heparin binding mutants supported only weak RGD-independent cell adhesion compared with wild type TG2 or mutants with retained heparin binding, and both heparin binding clusters were critical for TG2-mediated cell adhesion. These findings significantly advance our knowledge of how HS/heparin influences the adhesive function of TG2.
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spelling pubmed-33657632012-06-11 Transglutaminase-2 Interaction with Heparin: IDENTIFICATION OF A HEPARIN BINDING SITE THAT REGULATES CELL ADHESION TO FIBRONECTIN-TRANSGLUTAMINASE-2 MATRIX Lortat-Jacob, Hugues Burhan, Izhar Scarpellini, Alessandra Thomas, Aline Imberty, Anne Vivès, Romain R. Johnson, Timothy Gutierrez, Aldo Verderio, Elisabetta A. M. J Biol Chem Glycobiology and Extracellular Matrices Heparan sulfate proteoglycans are critical binding partners for extracellular tranglutaminase-2 (TG2), a multifunctional protein involved in tissue remodeling events related to organ fibrosis and cancer progression. We previously showed that TG2 has a strong affinity for heparan sulfate (HS)/heparin and reported that the heparan sulfate proteoglycan syndecan-4 acts as a receptor for TG2 via its HS chains in two ways: by increasing TG2-cell surface trafficking/externalization and by mediating RGD-independent cell adhesion to fibronectin-TG2 matrix during wound healing. Here we have investigated the molecular basis of this interaction. Site-directed mutagenesis revealed that either mutation of basic RRWK (262–265) or KQKRK (598–602) clusters, forming accessible heparin binding sequences on the TG2 three-dimensional structure, led to an almost complete reduction of heparin binding, indicating that both clusters contribute to form a single binding surface. Mutation of residues Arg(19) and Arg(28) also led to a significant reduction in heparin binding, suggesting their involvement. Our findings indicate that the heparin binding sites on TG2 mainly comprise two clusters of basic amino acids, which are distant in the linear sequence but brought into spatial proximity in the folded “closed” protein, forming a high affinity heparin binding site. Molecular modeling showed that the identified site can make contact with a single heparin-derived pentasaccharide. The TG2-heparin binding mutants supported only weak RGD-independent cell adhesion compared with wild type TG2 or mutants with retained heparin binding, and both heparin binding clusters were critical for TG2-mediated cell adhesion. These findings significantly advance our knowledge of how HS/heparin influences the adhesive function of TG2. American Society for Biochemistry and Molecular Biology 2012-05-25 2012-03-22 /pmc/articles/PMC3365763/ /pubmed/22442151 http://dx.doi.org/10.1074/jbc.M111.337089 Text en © 2012 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Glycobiology and Extracellular Matrices
Lortat-Jacob, Hugues
Burhan, Izhar
Scarpellini, Alessandra
Thomas, Aline
Imberty, Anne
Vivès, Romain R.
Johnson, Timothy
Gutierrez, Aldo
Verderio, Elisabetta A. M.
Transglutaminase-2 Interaction with Heparin: IDENTIFICATION OF A HEPARIN BINDING SITE THAT REGULATES CELL ADHESION TO FIBRONECTIN-TRANSGLUTAMINASE-2 MATRIX
title Transglutaminase-2 Interaction with Heparin: IDENTIFICATION OF A HEPARIN BINDING SITE THAT REGULATES CELL ADHESION TO FIBRONECTIN-TRANSGLUTAMINASE-2 MATRIX
title_full Transglutaminase-2 Interaction with Heparin: IDENTIFICATION OF A HEPARIN BINDING SITE THAT REGULATES CELL ADHESION TO FIBRONECTIN-TRANSGLUTAMINASE-2 MATRIX
title_fullStr Transglutaminase-2 Interaction with Heparin: IDENTIFICATION OF A HEPARIN BINDING SITE THAT REGULATES CELL ADHESION TO FIBRONECTIN-TRANSGLUTAMINASE-2 MATRIX
title_full_unstemmed Transglutaminase-2 Interaction with Heparin: IDENTIFICATION OF A HEPARIN BINDING SITE THAT REGULATES CELL ADHESION TO FIBRONECTIN-TRANSGLUTAMINASE-2 MATRIX
title_short Transglutaminase-2 Interaction with Heparin: IDENTIFICATION OF A HEPARIN BINDING SITE THAT REGULATES CELL ADHESION TO FIBRONECTIN-TRANSGLUTAMINASE-2 MATRIX
title_sort transglutaminase-2 interaction with heparin: identification of a heparin binding site that regulates cell adhesion to fibronectin-transglutaminase-2 matrix
topic Glycobiology and Extracellular Matrices
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3365763/
https://www.ncbi.nlm.nih.gov/pubmed/22442151
http://dx.doi.org/10.1074/jbc.M111.337089
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