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Interaction of the Emerging Mycotoxins Beauvericin, Cyclopiazonic Acid, and Sterigmatocystin with Human Serum Albumin

Beauvericin (BEA), cyclopiazonic acid (CPA), and sterigmatocystin (STC) are emerging mycotoxins. They appear as contaminants in food and animal feed, leading to economic losses and health risks. Human serum albumin (HSA) forms stable complexes with certain mycotoxins, including ochratoxins, alternar...

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Autores principales: Fliszár-Nyúl, Eszter, Faisal, Zelma, Skaper, Renáta, Lemli, Beáta, Bayartsetseg, Bayarsaikhan, Hetényi, Csaba, Gömbös, Patrik, Szabó, András, Poór, Miklós
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9406214/
https://www.ncbi.nlm.nih.gov/pubmed/36009000
http://dx.doi.org/10.3390/biom12081106
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author Fliszár-Nyúl, Eszter
Faisal, Zelma
Skaper, Renáta
Lemli, Beáta
Bayartsetseg, Bayarsaikhan
Hetényi, Csaba
Gömbös, Patrik
Szabó, András
Poór, Miklós
author_facet Fliszár-Nyúl, Eszter
Faisal, Zelma
Skaper, Renáta
Lemli, Beáta
Bayartsetseg, Bayarsaikhan
Hetényi, Csaba
Gömbös, Patrik
Szabó, András
Poór, Miklós
author_sort Fliszár-Nyúl, Eszter
collection PubMed
description Beauvericin (BEA), cyclopiazonic acid (CPA), and sterigmatocystin (STC) are emerging mycotoxins. They appear as contaminants in food and animal feed, leading to economic losses and health risks. Human serum albumin (HSA) forms stable complexes with certain mycotoxins, including ochratoxins, alternariol, citrinin, and zearalenone. HSA binding can influence the toxicokinetics of xenobiotics, and albumin can also be considered and applied as a relatively cheap affinity protein. Therefore, we examined the potential interactions of BEA, CPA, and STC with HSA employing fluorescence spectroscopy, ultracentrifugation, ultrafiltration, and molecular modeling. Spectroscopic and ultracentrifugation studies demonstrated the formation of low-affinity BEA–HSA (K(a) ≈ 10(3) L/mol) and moderately strong CPA–HSA and STC–HSA complexes (K(a) ≈ 10(4) L/mol). In ultrafiltration experiments, CPA slightly displaced each site marker (warfarin, naproxen, and camptothecin) tested, while BEA and STC did not affect significantly the albumin binding of these drugs. Modeling studies suggest that CPA occupies Sudlow’s site I, while STC binds to the Heme site (FA1) on HSA. Considering the interactions of CPA with the site markers, the CPA–HSA interaction may have toxicological importance.
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spelling pubmed-94062142022-08-26 Interaction of the Emerging Mycotoxins Beauvericin, Cyclopiazonic Acid, and Sterigmatocystin with Human Serum Albumin Fliszár-Nyúl, Eszter Faisal, Zelma Skaper, Renáta Lemli, Beáta Bayartsetseg, Bayarsaikhan Hetényi, Csaba Gömbös, Patrik Szabó, András Poór, Miklós Biomolecules Article Beauvericin (BEA), cyclopiazonic acid (CPA), and sterigmatocystin (STC) are emerging mycotoxins. They appear as contaminants in food and animal feed, leading to economic losses and health risks. Human serum albumin (HSA) forms stable complexes with certain mycotoxins, including ochratoxins, alternariol, citrinin, and zearalenone. HSA binding can influence the toxicokinetics of xenobiotics, and albumin can also be considered and applied as a relatively cheap affinity protein. Therefore, we examined the potential interactions of BEA, CPA, and STC with HSA employing fluorescence spectroscopy, ultracentrifugation, ultrafiltration, and molecular modeling. Spectroscopic and ultracentrifugation studies demonstrated the formation of low-affinity BEA–HSA (K(a) ≈ 10(3) L/mol) and moderately strong CPA–HSA and STC–HSA complexes (K(a) ≈ 10(4) L/mol). In ultrafiltration experiments, CPA slightly displaced each site marker (warfarin, naproxen, and camptothecin) tested, while BEA and STC did not affect significantly the albumin binding of these drugs. Modeling studies suggest that CPA occupies Sudlow’s site I, while STC binds to the Heme site (FA1) on HSA. Considering the interactions of CPA with the site markers, the CPA–HSA interaction may have toxicological importance. MDPI 2022-08-11 /pmc/articles/PMC9406214/ /pubmed/36009000 http://dx.doi.org/10.3390/biom12081106 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fliszár-Nyúl, Eszter
Faisal, Zelma
Skaper, Renáta
Lemli, Beáta
Bayartsetseg, Bayarsaikhan
Hetényi, Csaba
Gömbös, Patrik
Szabó, András
Poór, Miklós
Interaction of the Emerging Mycotoxins Beauvericin, Cyclopiazonic Acid, and Sterigmatocystin with Human Serum Albumin
title Interaction of the Emerging Mycotoxins Beauvericin, Cyclopiazonic Acid, and Sterigmatocystin with Human Serum Albumin
title_full Interaction of the Emerging Mycotoxins Beauvericin, Cyclopiazonic Acid, and Sterigmatocystin with Human Serum Albumin
title_fullStr Interaction of the Emerging Mycotoxins Beauvericin, Cyclopiazonic Acid, and Sterigmatocystin with Human Serum Albumin
title_full_unstemmed Interaction of the Emerging Mycotoxins Beauvericin, Cyclopiazonic Acid, and Sterigmatocystin with Human Serum Albumin
title_short Interaction of the Emerging Mycotoxins Beauvericin, Cyclopiazonic Acid, and Sterigmatocystin with Human Serum Albumin
title_sort interaction of the emerging mycotoxins beauvericin, cyclopiazonic acid, and sterigmatocystin with human serum albumin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9406214/
https://www.ncbi.nlm.nih.gov/pubmed/36009000
http://dx.doi.org/10.3390/biom12081106
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