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Bradykinin Release Avoids High Molecular Weight Kininogen Endocytosis

Human H-kininogen (120 kDa) plays a role in many pathophysiological processes and interacts with the cell surface through protein receptors and proteoglycans, which mediate H-kininogen endocytosis. In the present work we demonstrate that H-kininogen containing bradykinin domain is internalized and d...

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Autores principales: Damasceno, Igor Z., Melo, Katia R. B., Nascimento, Fabio D., Souza, Daianne S. P., Araujo, Mariana S., Souza, Sinval E. G., Sampaio, Misako U., Nader, Helena B., Tersariol, Ivarne L. S., Motta, Guacyara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4379145/
https://www.ncbi.nlm.nih.gov/pubmed/25822177
http://dx.doi.org/10.1371/journal.pone.0121721
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author Damasceno, Igor Z.
Melo, Katia R. B.
Nascimento, Fabio D.
Souza, Daianne S. P.
Araujo, Mariana S.
Souza, Sinval E. G.
Sampaio, Misako U.
Nader, Helena B.
Tersariol, Ivarne L. S.
Motta, Guacyara
author_facet Damasceno, Igor Z.
Melo, Katia R. B.
Nascimento, Fabio D.
Souza, Daianne S. P.
Araujo, Mariana S.
Souza, Sinval E. G.
Sampaio, Misako U.
Nader, Helena B.
Tersariol, Ivarne L. S.
Motta, Guacyara
author_sort Damasceno, Igor Z.
collection PubMed
description Human H-kininogen (120 kDa) plays a role in many pathophysiological processes and interacts with the cell surface through protein receptors and proteoglycans, which mediate H-kininogen endocytosis. In the present work we demonstrate that H-kininogen containing bradykinin domain is internalized and different endogenous kininogenases are present in CHO-K1 cells. We used CHO-K1 (wild type) and CHO-745 (mutant deficient in proteoglycans biosynthesis) cell lines. H-kininogen endocytosis was studied using confocal microscopy, and its hydrolysis by cell lysate fraction was determined by immunoblotting. Bradykinin release was also measured by radioimmunoassay. H-kininogen interaction with the cell surface of CHO-745 cells resulted in bradykinin release by serine proteases. In CHO-K1 cells, which produce heparan and chondroitin sulfate proteoglycans, internalization of H-kininogen through its bradykinin domain can occur on lipid raft domains/caveolae. Nevertheless bradykinin-free H-kininogen was not internalized by CHO-K1 cells. The H-kininogen present in acidic endosomal vesicles in CHO-K1 was approximately 10-fold higher than the levels in CHO-745. CHO-K1 lysate fractions were assayed at pH 5.5 and intact H-kininogen was totally hydrolyzed into a 62 kDa fragment. By contrast, at an assay pH 7.4, the remained fragments were 115 kDa, 83 kDa, 62 kDa and 48 kDa in size. The antipain-Sepharose chromatography separated endogenous kininogenases from CHO-K1 lysate fraction. No difference was detected in the assays at pH 5.5 or 7.4, but the proteins in the fraction bound to the resin released bradykinin from H-kininogen. However, the proteins in the unbound fraction cleaved intact H-kininogen at other sites but did not release bradykinin. H-kininogen can interact with extravascular cells, and is internalized dependent on its bradykinin domain and cell surface proteoglycans. After internalization, H-kininogen is proteolytically processed by intracellular kininogenases. The present data also demonstrates that serine or cysteine proteases in lipid raft domains/caveolae on the CHO cell can hydrolyze H-kininogen, thus releasing kinins.
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spelling pubmed-43791452015-04-09 Bradykinin Release Avoids High Molecular Weight Kininogen Endocytosis Damasceno, Igor Z. Melo, Katia R. B. Nascimento, Fabio D. Souza, Daianne S. P. Araujo, Mariana S. Souza, Sinval E. G. Sampaio, Misako U. Nader, Helena B. Tersariol, Ivarne L. S. Motta, Guacyara PLoS One Research Article Human H-kininogen (120 kDa) plays a role in many pathophysiological processes and interacts with the cell surface through protein receptors and proteoglycans, which mediate H-kininogen endocytosis. In the present work we demonstrate that H-kininogen containing bradykinin domain is internalized and different endogenous kininogenases are present in CHO-K1 cells. We used CHO-K1 (wild type) and CHO-745 (mutant deficient in proteoglycans biosynthesis) cell lines. H-kininogen endocytosis was studied using confocal microscopy, and its hydrolysis by cell lysate fraction was determined by immunoblotting. Bradykinin release was also measured by radioimmunoassay. H-kininogen interaction with the cell surface of CHO-745 cells resulted in bradykinin release by serine proteases. In CHO-K1 cells, which produce heparan and chondroitin sulfate proteoglycans, internalization of H-kininogen through its bradykinin domain can occur on lipid raft domains/caveolae. Nevertheless bradykinin-free H-kininogen was not internalized by CHO-K1 cells. The H-kininogen present in acidic endosomal vesicles in CHO-K1 was approximately 10-fold higher than the levels in CHO-745. CHO-K1 lysate fractions were assayed at pH 5.5 and intact H-kininogen was totally hydrolyzed into a 62 kDa fragment. By contrast, at an assay pH 7.4, the remained fragments were 115 kDa, 83 kDa, 62 kDa and 48 kDa in size. The antipain-Sepharose chromatography separated endogenous kininogenases from CHO-K1 lysate fraction. No difference was detected in the assays at pH 5.5 or 7.4, but the proteins in the fraction bound to the resin released bradykinin from H-kininogen. However, the proteins in the unbound fraction cleaved intact H-kininogen at other sites but did not release bradykinin. H-kininogen can interact with extravascular cells, and is internalized dependent on its bradykinin domain and cell surface proteoglycans. After internalization, H-kininogen is proteolytically processed by intracellular kininogenases. The present data also demonstrates that serine or cysteine proteases in lipid raft domains/caveolae on the CHO cell can hydrolyze H-kininogen, thus releasing kinins. Public Library of Science 2015-03-30 /pmc/articles/PMC4379145/ /pubmed/25822177 http://dx.doi.org/10.1371/journal.pone.0121721 Text en © 2015 Damasceno et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Damasceno, Igor Z.
Melo, Katia R. B.
Nascimento, Fabio D.
Souza, Daianne S. P.
Araujo, Mariana S.
Souza, Sinval E. G.
Sampaio, Misako U.
Nader, Helena B.
Tersariol, Ivarne L. S.
Motta, Guacyara
Bradykinin Release Avoids High Molecular Weight Kininogen Endocytosis
title Bradykinin Release Avoids High Molecular Weight Kininogen Endocytosis
title_full Bradykinin Release Avoids High Molecular Weight Kininogen Endocytosis
title_fullStr Bradykinin Release Avoids High Molecular Weight Kininogen Endocytosis
title_full_unstemmed Bradykinin Release Avoids High Molecular Weight Kininogen Endocytosis
title_short Bradykinin Release Avoids High Molecular Weight Kininogen Endocytosis
title_sort bradykinin release avoids high molecular weight kininogen endocytosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4379145/
https://www.ncbi.nlm.nih.gov/pubmed/25822177
http://dx.doi.org/10.1371/journal.pone.0121721
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