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Detection and Characterization of Phosphorylation, Glycosylation, and Fatty Acid Bound to Fetuin A in Human Blood

The hepatokine fetuin A (Fet A) has been associated with diverse pathological states such as insulin resistance, type 2 diabetes, macrovascular disease, and systemic ectopic and vascular calcification. Fet A may also play a role in tumor growth and metastasis. The biological activity of Fet A may be...

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Autores principales: Kovářová, Markéta, Kalbacher, Hubert, Peter, Andreas, Häring, Hans-Ulrich, Didangelos, Triantafyllos, Stefan, Norbert, Birkenfeld, Andreas, Schleicher, Erwin, Kantartzis, Konstantinos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7865524/
https://www.ncbi.nlm.nih.gov/pubmed/33499061
http://dx.doi.org/10.3390/jcm10030411
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author Kovářová, Markéta
Kalbacher, Hubert
Peter, Andreas
Häring, Hans-Ulrich
Didangelos, Triantafyllos
Stefan, Norbert
Birkenfeld, Andreas
Schleicher, Erwin
Kantartzis, Konstantinos
author_facet Kovářová, Markéta
Kalbacher, Hubert
Peter, Andreas
Häring, Hans-Ulrich
Didangelos, Triantafyllos
Stefan, Norbert
Birkenfeld, Andreas
Schleicher, Erwin
Kantartzis, Konstantinos
author_sort Kovářová, Markéta
collection PubMed
description The hepatokine fetuin A (Fet A) has been associated with diverse pathological states such as insulin resistance, type 2 diabetes, macrovascular disease, and systemic ectopic and vascular calcification. Fet A may also play a role in tumor growth and metastasis. The biological activity of Fet A may be affected by various modifications, including phosphorylation, O- and N-glycosylation and fatty acid binding. We developed an antibody-based assay for the detection of Fet A phosphorylated at serine 312. Fatty acid pattern was determined by gas chromatography. Using the antibody, we found that the phosphorylation was stable in human plasma or serum at room temperature for 8 h. We observed that Fet A is present in several glycosylation forms in human plasma, but the extent of Ser(312) phosphorylation was not associated with glycosylation. The phosphorylation pattern did not change during an oral glucose tolerance test (0–120 min). We further found that human Fet A binds preferentially saturated fatty acids (>90%) at the expense of mono- and poly-unsaturated fatty acids. Our results indicate that different molecular species of Fet A are present in human plasma and that these different modifications may determine the different biological effects of Fet A.
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spelling pubmed-78655242021-02-07 Detection and Characterization of Phosphorylation, Glycosylation, and Fatty Acid Bound to Fetuin A in Human Blood Kovářová, Markéta Kalbacher, Hubert Peter, Andreas Häring, Hans-Ulrich Didangelos, Triantafyllos Stefan, Norbert Birkenfeld, Andreas Schleicher, Erwin Kantartzis, Konstantinos J Clin Med Article The hepatokine fetuin A (Fet A) has been associated with diverse pathological states such as insulin resistance, type 2 diabetes, macrovascular disease, and systemic ectopic and vascular calcification. Fet A may also play a role in tumor growth and metastasis. The biological activity of Fet A may be affected by various modifications, including phosphorylation, O- and N-glycosylation and fatty acid binding. We developed an antibody-based assay for the detection of Fet A phosphorylated at serine 312. Fatty acid pattern was determined by gas chromatography. Using the antibody, we found that the phosphorylation was stable in human plasma or serum at room temperature for 8 h. We observed that Fet A is present in several glycosylation forms in human plasma, but the extent of Ser(312) phosphorylation was not associated with glycosylation. The phosphorylation pattern did not change during an oral glucose tolerance test (0–120 min). We further found that human Fet A binds preferentially saturated fatty acids (>90%) at the expense of mono- and poly-unsaturated fatty acids. Our results indicate that different molecular species of Fet A are present in human plasma and that these different modifications may determine the different biological effects of Fet A. MDPI 2021-01-22 /pmc/articles/PMC7865524/ /pubmed/33499061 http://dx.doi.org/10.3390/jcm10030411 Text en © 2021 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
Kovářová, Markéta
Kalbacher, Hubert
Peter, Andreas
Häring, Hans-Ulrich
Didangelos, Triantafyllos
Stefan, Norbert
Birkenfeld, Andreas
Schleicher, Erwin
Kantartzis, Konstantinos
Detection and Characterization of Phosphorylation, Glycosylation, and Fatty Acid Bound to Fetuin A in Human Blood
title Detection and Characterization of Phosphorylation, Glycosylation, and Fatty Acid Bound to Fetuin A in Human Blood
title_full Detection and Characterization of Phosphorylation, Glycosylation, and Fatty Acid Bound to Fetuin A in Human Blood
title_fullStr Detection and Characterization of Phosphorylation, Glycosylation, and Fatty Acid Bound to Fetuin A in Human Blood
title_full_unstemmed Detection and Characterization of Phosphorylation, Glycosylation, and Fatty Acid Bound to Fetuin A in Human Blood
title_short Detection and Characterization of Phosphorylation, Glycosylation, and Fatty Acid Bound to Fetuin A in Human Blood
title_sort detection and characterization of phosphorylation, glycosylation, and fatty acid bound to fetuin a in human blood
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7865524/
https://www.ncbi.nlm.nih.gov/pubmed/33499061
http://dx.doi.org/10.3390/jcm10030411
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