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Fibulin-1C, C1 Esterase Inhibitor and Glucose Regulated Protein 75 Interact with the CREC Proteins, Calumenin and Reticulocalbin

Affinity purification, immunoprecipitation, gel electrophoresis and mass spectrometry were used to identify fibulin-1C, C1 esterase inhibitor and glucose regulated protein 75, grp75, as binding partners of the CREC proteins, calumenin and reticulocalbin. Surface plasmon resonance was used to verify...

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Autores principales: Aune Westergaard Hansen, Gry, Ludvigsen, Maja, Jacobsen, Christian, Cangemi, Claudia, Melholt Rasmussen, Lars, Vorum, Henrik, Honoré, Bent
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4498735/
https://www.ncbi.nlm.nih.gov/pubmed/26161649
http://dx.doi.org/10.1371/journal.pone.0132283
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author Aune Westergaard Hansen, Gry
Ludvigsen, Maja
Jacobsen, Christian
Cangemi, Claudia
Melholt Rasmussen, Lars
Vorum, Henrik
Honoré, Bent
author_facet Aune Westergaard Hansen, Gry
Ludvigsen, Maja
Jacobsen, Christian
Cangemi, Claudia
Melholt Rasmussen, Lars
Vorum, Henrik
Honoré, Bent
author_sort Aune Westergaard Hansen, Gry
collection PubMed
description Affinity purification, immunoprecipitation, gel electrophoresis and mass spectrometry were used to identify fibulin-1C, C1 esterase inhibitor and glucose regulated protein 75, grp75, as binding partners of the CREC proteins, calumenin and reticulocalbin. Surface plasmon resonance was used to verify the interaction of all three proteins with each of the CREC proteins. Fibulin-1C interacts with calumenin and reticulocalbin with an estimated dissociation constant around 50-60 nM. The interaction, at least for reticulocalbin, was not dependent upon the presence of Ca(2+). C1 esterase inhibitor interacted with both proteins with an estimated dissociation constant at 1 μM for reticulocalbin and 150 nM for calumenin. The interaction, at least for calumenin, was dependent upon the presence of Ca(2+) with strong interaction at 3.5 mM while no detectable interaction could be found at 0.1 mM. Grp75 binds with an affinity of approximately 3-7 nM with reticulocalbin as well as with calumenin. These interactions suggest functional participation of the CREC proteins in chaperone activity, cell proliferation and transformation, cellular aging, haemostasis and thrombosis as well as modulation of the complement system in fighting bacterial infection.
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spelling pubmed-44987352015-07-17 Fibulin-1C, C1 Esterase Inhibitor and Glucose Regulated Protein 75 Interact with the CREC Proteins, Calumenin and Reticulocalbin Aune Westergaard Hansen, Gry Ludvigsen, Maja Jacobsen, Christian Cangemi, Claudia Melholt Rasmussen, Lars Vorum, Henrik Honoré, Bent PLoS One Research Article Affinity purification, immunoprecipitation, gel electrophoresis and mass spectrometry were used to identify fibulin-1C, C1 esterase inhibitor and glucose regulated protein 75, grp75, as binding partners of the CREC proteins, calumenin and reticulocalbin. Surface plasmon resonance was used to verify the interaction of all three proteins with each of the CREC proteins. Fibulin-1C interacts with calumenin and reticulocalbin with an estimated dissociation constant around 50-60 nM. The interaction, at least for reticulocalbin, was not dependent upon the presence of Ca(2+). C1 esterase inhibitor interacted with both proteins with an estimated dissociation constant at 1 μM for reticulocalbin and 150 nM for calumenin. The interaction, at least for calumenin, was dependent upon the presence of Ca(2+) with strong interaction at 3.5 mM while no detectable interaction could be found at 0.1 mM. Grp75 binds with an affinity of approximately 3-7 nM with reticulocalbin as well as with calumenin. These interactions suggest functional participation of the CREC proteins in chaperone activity, cell proliferation and transformation, cellular aging, haemostasis and thrombosis as well as modulation of the complement system in fighting bacterial infection. Public Library of Science 2015-07-10 /pmc/articles/PMC4498735/ /pubmed/26161649 http://dx.doi.org/10.1371/journal.pone.0132283 Text en © 2015 Hansen 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
Aune Westergaard Hansen, Gry
Ludvigsen, Maja
Jacobsen, Christian
Cangemi, Claudia
Melholt Rasmussen, Lars
Vorum, Henrik
Honoré, Bent
Fibulin-1C, C1 Esterase Inhibitor and Glucose Regulated Protein 75 Interact with the CREC Proteins, Calumenin and Reticulocalbin
title Fibulin-1C, C1 Esterase Inhibitor and Glucose Regulated Protein 75 Interact with the CREC Proteins, Calumenin and Reticulocalbin
title_full Fibulin-1C, C1 Esterase Inhibitor and Glucose Regulated Protein 75 Interact with the CREC Proteins, Calumenin and Reticulocalbin
title_fullStr Fibulin-1C, C1 Esterase Inhibitor and Glucose Regulated Protein 75 Interact with the CREC Proteins, Calumenin and Reticulocalbin
title_full_unstemmed Fibulin-1C, C1 Esterase Inhibitor and Glucose Regulated Protein 75 Interact with the CREC Proteins, Calumenin and Reticulocalbin
title_short Fibulin-1C, C1 Esterase Inhibitor and Glucose Regulated Protein 75 Interact with the CREC Proteins, Calumenin and Reticulocalbin
title_sort fibulin-1c, c1 esterase inhibitor and glucose regulated protein 75 interact with the crec proteins, calumenin and reticulocalbin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4498735/
https://www.ncbi.nlm.nih.gov/pubmed/26161649
http://dx.doi.org/10.1371/journal.pone.0132283
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