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Inter-α-inhibitor Impairs TSG-6-induced Hyaluronan Cross-linking

Under inflammatory conditions and in the matrix of the cumulus-oocyte complex, the polysaccharide hyaluronan (HA) becomes decorated covalently with heavy chains (HCs) of the serum glycoprotein inter-α-inhibitor (IαI). This alters the functional properties of the HA as well as its structural role wit...

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Autores principales: Baranova, Natalia S., Foulcer, Simon J., Briggs, David C., Tilakaratna, Viranga, Enghild, Jan J., Milner, Caroline M., Day, Anthony J., Richter, Ralf P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3795262/
https://www.ncbi.nlm.nih.gov/pubmed/24005673
http://dx.doi.org/10.1074/jbc.M113.477422
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author Baranova, Natalia S.
Foulcer, Simon J.
Briggs, David C.
Tilakaratna, Viranga
Enghild, Jan J.
Milner, Caroline M.
Day, Anthony J.
Richter, Ralf P.
author_facet Baranova, Natalia S.
Foulcer, Simon J.
Briggs, David C.
Tilakaratna, Viranga
Enghild, Jan J.
Milner, Caroline M.
Day, Anthony J.
Richter, Ralf P.
author_sort Baranova, Natalia S.
collection PubMed
description Under inflammatory conditions and in the matrix of the cumulus-oocyte complex, the polysaccharide hyaluronan (HA) becomes decorated covalently with heavy chains (HCs) of the serum glycoprotein inter-α-inhibitor (IαI). This alters the functional properties of the HA as well as its structural role within extracellular matrices. The covalent transfer of HCs from IαI to HA is catalyzed by TSG-6 (tumor necrosis factor-stimulated gene-6), but TSG-6 is also known as a HA cross-linker that induces condensation of the HA matrix. Here, we investigate the interplay of these two distinct functions of TSG-6 by studying the ternary interactions of IαI and TSG-6 with well defined films of end-grafted HA chains. We demonstrate that TSG-6-mediated cross-linking of HA films is impaired in the presence of IαI and that this effect suppresses the TSG-6-mediated enhancement of HA binding to CD44-positive cells. Furthermore, we find that the interaction of TSG-6 and IαI in the presence of HA gives rise to two types of complexes that independently promote the covalent transfer of heavy chains to HA. One type of complex interacts very weakly with HA and is likely to correspond to the previously reported covalent HC·TSG-6 complexes. The other type of complex is novel and binds stably but noncovalently to HA. Prolonged incubation with TSG-6 and IαI leads to HA films that contain, in addition to covalently HA-bound HCs, several tightly but noncovalently bound molecular species. These findings have important implications for understanding how the biological activities of TSG-6 are regulated, such that the presence or absence of IαI will dictate its function.
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spelling pubmed-37952622013-10-11 Inter-α-inhibitor Impairs TSG-6-induced Hyaluronan Cross-linking Baranova, Natalia S. Foulcer, Simon J. Briggs, David C. Tilakaratna, Viranga Enghild, Jan J. Milner, Caroline M. Day, Anthony J. Richter, Ralf P. J Biol Chem Glycobiology and Extracellular Matrices Under inflammatory conditions and in the matrix of the cumulus-oocyte complex, the polysaccharide hyaluronan (HA) becomes decorated covalently with heavy chains (HCs) of the serum glycoprotein inter-α-inhibitor (IαI). This alters the functional properties of the HA as well as its structural role within extracellular matrices. The covalent transfer of HCs from IαI to HA is catalyzed by TSG-6 (tumor necrosis factor-stimulated gene-6), but TSG-6 is also known as a HA cross-linker that induces condensation of the HA matrix. Here, we investigate the interplay of these two distinct functions of TSG-6 by studying the ternary interactions of IαI and TSG-6 with well defined films of end-grafted HA chains. We demonstrate that TSG-6-mediated cross-linking of HA films is impaired in the presence of IαI and that this effect suppresses the TSG-6-mediated enhancement of HA binding to CD44-positive cells. Furthermore, we find that the interaction of TSG-6 and IαI in the presence of HA gives rise to two types of complexes that independently promote the covalent transfer of heavy chains to HA. One type of complex interacts very weakly with HA and is likely to correspond to the previously reported covalent HC·TSG-6 complexes. The other type of complex is novel and binds stably but noncovalently to HA. Prolonged incubation with TSG-6 and IαI leads to HA films that contain, in addition to covalently HA-bound HCs, several tightly but noncovalently bound molecular species. These findings have important implications for understanding how the biological activities of TSG-6 are regulated, such that the presence or absence of IαI will dictate its function. American Society for Biochemistry and Molecular Biology 2013-10-11 2013-09-04 /pmc/articles/PMC3795262/ /pubmed/24005673 http://dx.doi.org/10.1074/jbc.M113.477422 Text en © 2013 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/) applies to Author Choice Articles
spellingShingle Glycobiology and Extracellular Matrices
Baranova, Natalia S.
Foulcer, Simon J.
Briggs, David C.
Tilakaratna, Viranga
Enghild, Jan J.
Milner, Caroline M.
Day, Anthony J.
Richter, Ralf P.
Inter-α-inhibitor Impairs TSG-6-induced Hyaluronan Cross-linking
title Inter-α-inhibitor Impairs TSG-6-induced Hyaluronan Cross-linking
title_full Inter-α-inhibitor Impairs TSG-6-induced Hyaluronan Cross-linking
title_fullStr Inter-α-inhibitor Impairs TSG-6-induced Hyaluronan Cross-linking
title_full_unstemmed Inter-α-inhibitor Impairs TSG-6-induced Hyaluronan Cross-linking
title_short Inter-α-inhibitor Impairs TSG-6-induced Hyaluronan Cross-linking
title_sort inter-α-inhibitor impairs tsg-6-induced hyaluronan cross-linking
topic Glycobiology and Extracellular Matrices
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3795262/
https://www.ncbi.nlm.nih.gov/pubmed/24005673
http://dx.doi.org/10.1074/jbc.M113.477422
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