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Molecular Docking Insight into the Label-Free Fluorescence Aptasensor for Ochratoxin A Detection

Ochratoxin A (OTA) is the most common mycotoxin and can be found in wheat, corn and other grain products. As OTA pollution in these grain products is gaining prominence as a global issue, the demand to develop OTA detection technology has attracted increasing attention. Recently, a variety of label-...

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Autores principales: Ye, Hua, Wang, Mengyuan, Yu, Xi, Ma, Pengfei, Zhu, Ping, Zhong, Jianjun, He, Kuo, Guo, Yuanxin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10304070/
https://www.ncbi.nlm.nih.gov/pubmed/37375396
http://dx.doi.org/10.3390/molecules28124841
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author Ye, Hua
Wang, Mengyuan
Yu, Xi
Ma, Pengfei
Zhu, Ping
Zhong, Jianjun
He, Kuo
Guo, Yuanxin
author_facet Ye, Hua
Wang, Mengyuan
Yu, Xi
Ma, Pengfei
Zhu, Ping
Zhong, Jianjun
He, Kuo
Guo, Yuanxin
author_sort Ye, Hua
collection PubMed
description Ochratoxin A (OTA) is the most common mycotoxin and can be found in wheat, corn and other grain products. As OTA pollution in these grain products is gaining prominence as a global issue, the demand to develop OTA detection technology has attracted increasing attention. Recently, a variety of label-free fluorescence biosensors based on aptamer have been established. However, the binding mechanisms of some aptasensors are still unclear. Herein, a label-free fluorescent aptasensor employing Thioflavin T (ThT) as donor for OTA detection was constructed based on the G-quadruplex aptamer of the OTA aptamer itself. The key binding region of aptamer was revealed by using molecular docking technology. In the absence of the OTA target, ThT fluorescent dye binds with the OTA aptamer to form an aptamer/ThT complex, and results in the fluorescence intensity being obviously enhanced. In the presence of OTA, the OTA aptamer binds to OTA because of its high affinity and specificity to form an aptamer/OTA complex, and the ThT fluorescent dye is released from the OTA aptamer into the solution. Therefore, the fluorescence intensity is significantly decreased. Molecular docking results revealed that OTA is binding to the pocket-like structure and surrounded by the A29-T3 base pair and C4, T30, G6 and G7 of the aptamer. Meanwhile, this aptasensor shows good selectivity, sensitivity and an excellent recovery rate of the wheat flour spiked experiment.
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spelling pubmed-103040702023-06-29 Molecular Docking Insight into the Label-Free Fluorescence Aptasensor for Ochratoxin A Detection Ye, Hua Wang, Mengyuan Yu, Xi Ma, Pengfei Zhu, Ping Zhong, Jianjun He, Kuo Guo, Yuanxin Molecules Article Ochratoxin A (OTA) is the most common mycotoxin and can be found in wheat, corn and other grain products. As OTA pollution in these grain products is gaining prominence as a global issue, the demand to develop OTA detection technology has attracted increasing attention. Recently, a variety of label-free fluorescence biosensors based on aptamer have been established. However, the binding mechanisms of some aptasensors are still unclear. Herein, a label-free fluorescent aptasensor employing Thioflavin T (ThT) as donor for OTA detection was constructed based on the G-quadruplex aptamer of the OTA aptamer itself. The key binding region of aptamer was revealed by using molecular docking technology. In the absence of the OTA target, ThT fluorescent dye binds with the OTA aptamer to form an aptamer/ThT complex, and results in the fluorescence intensity being obviously enhanced. In the presence of OTA, the OTA aptamer binds to OTA because of its high affinity and specificity to form an aptamer/OTA complex, and the ThT fluorescent dye is released from the OTA aptamer into the solution. Therefore, the fluorescence intensity is significantly decreased. Molecular docking results revealed that OTA is binding to the pocket-like structure and surrounded by the A29-T3 base pair and C4, T30, G6 and G7 of the aptamer. Meanwhile, this aptasensor shows good selectivity, sensitivity and an excellent recovery rate of the wheat flour spiked experiment. MDPI 2023-06-18 /pmc/articles/PMC10304070/ /pubmed/37375396 http://dx.doi.org/10.3390/molecules28124841 Text en © 2023 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
Ye, Hua
Wang, Mengyuan
Yu, Xi
Ma, Pengfei
Zhu, Ping
Zhong, Jianjun
He, Kuo
Guo, Yuanxin
Molecular Docking Insight into the Label-Free Fluorescence Aptasensor for Ochratoxin A Detection
title Molecular Docking Insight into the Label-Free Fluorescence Aptasensor for Ochratoxin A Detection
title_full Molecular Docking Insight into the Label-Free Fluorescence Aptasensor for Ochratoxin A Detection
title_fullStr Molecular Docking Insight into the Label-Free Fluorescence Aptasensor for Ochratoxin A Detection
title_full_unstemmed Molecular Docking Insight into the Label-Free Fluorescence Aptasensor for Ochratoxin A Detection
title_short Molecular Docking Insight into the Label-Free Fluorescence Aptasensor for Ochratoxin A Detection
title_sort molecular docking insight into the label-free fluorescence aptasensor for ochratoxin a detection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10304070/
https://www.ncbi.nlm.nih.gov/pubmed/37375396
http://dx.doi.org/10.3390/molecules28124841
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