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Characterization of an α-Amylase from the Honeybee Chalk Brood Pathogen Ascosphaera apis
The insect pathogenic fungus, Ascosphaera apis, is the causative agent of honeybee chalk brood disease. Amylases are secreted by many plant pathogenic fungi to access host nutrients through the metabolism of starch, and the identification of new amylases can have important biotechnological applicati...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10672707/ https://www.ncbi.nlm.nih.gov/pubmed/37998887 http://dx.doi.org/10.3390/jof9111082 |
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author | Li, Jincheng Liu, Sen Yang, Chenjie Keyhani, Nemat O. Pu, Huili Lin, Longbin Li, Xiaoxia Jia, Peisong Wu, Dongmei Pan, Jieming Stevenson, Philip C. Fernández-Grandon, G Mandela Zhang, Liaoyuan Chen, Yuxi Guan, Xiayu Qiu, Junzhi |
author_facet | Li, Jincheng Liu, Sen Yang, Chenjie Keyhani, Nemat O. Pu, Huili Lin, Longbin Li, Xiaoxia Jia, Peisong Wu, Dongmei Pan, Jieming Stevenson, Philip C. Fernández-Grandon, G Mandela Zhang, Liaoyuan Chen, Yuxi Guan, Xiayu Qiu, Junzhi |
author_sort | Li, Jincheng |
collection | PubMed |
description | The insect pathogenic fungus, Ascosphaera apis, is the causative agent of honeybee chalk brood disease. Amylases are secreted by many plant pathogenic fungi to access host nutrients through the metabolism of starch, and the identification of new amylases can have important biotechnological applications. Production of amylase by A. apis in submerged culture was optimized using the response surface method (RSM). Media composition was modeled using Box–Behnken design (BBD) at three levels of three variables, and the model was experimentally validated to predict amylase activity (R(2) = 0.9528). Amylase activity was highest (45.28 ± 1.16 U/mL, mean ± SE) in media composed of 46 g/L maltose and1.51 g/L CaCl(2) at a pH of 6.6, where total activity was ~11-fold greater as compared to standard basal media. The enzyme was purified to homogeneity with a 2.5% yield and 14-fold purification. The purified enzyme had a molecular weight of 75 kDa and was thermostable and active in a broad pH range (> 80% activity at a pH range of 7–10), with optimal activity at 55 °C and pH = 7.5. Kinetic analyses revealed a K(m) of 6.22 mmol/L and a V(max) of 4.21 μmol/mL·min using soluble starch as the substrate. Activity was significantly stimulated by Fe(2+) and completely inhibited by Cu(2+), Mn(2+), and Ba(2+) (10 mM). Ethanol and chloroform (10% v/v) also caused significant levels of inhibition. The purified amylase essentially exhibited activity only on hydrolyzed soluble starch, producing mainly glucose and maltose, indicating that it is an endo-amylase (α-amylase). Amylase activity peaked at 99.38 U/mL fermented in a 3.7 L-bioreactor (2.15-fold greater than what was observed in flask cultures). These data provide a strategy for optimizing the production of enzymes from fungi and provide insight into the α-amylase of A. apis. |
format | Online Article Text |
id | pubmed-10672707 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-106727072023-11-05 Characterization of an α-Amylase from the Honeybee Chalk Brood Pathogen Ascosphaera apis Li, Jincheng Liu, Sen Yang, Chenjie Keyhani, Nemat O. Pu, Huili Lin, Longbin Li, Xiaoxia Jia, Peisong Wu, Dongmei Pan, Jieming Stevenson, Philip C. Fernández-Grandon, G Mandela Zhang, Liaoyuan Chen, Yuxi Guan, Xiayu Qiu, Junzhi J Fungi (Basel) Article The insect pathogenic fungus, Ascosphaera apis, is the causative agent of honeybee chalk brood disease. Amylases are secreted by many plant pathogenic fungi to access host nutrients through the metabolism of starch, and the identification of new amylases can have important biotechnological applications. Production of amylase by A. apis in submerged culture was optimized using the response surface method (RSM). Media composition was modeled using Box–Behnken design (BBD) at three levels of three variables, and the model was experimentally validated to predict amylase activity (R(2) = 0.9528). Amylase activity was highest (45.28 ± 1.16 U/mL, mean ± SE) in media composed of 46 g/L maltose and1.51 g/L CaCl(2) at a pH of 6.6, where total activity was ~11-fold greater as compared to standard basal media. The enzyme was purified to homogeneity with a 2.5% yield and 14-fold purification. The purified enzyme had a molecular weight of 75 kDa and was thermostable and active in a broad pH range (> 80% activity at a pH range of 7–10), with optimal activity at 55 °C and pH = 7.5. Kinetic analyses revealed a K(m) of 6.22 mmol/L and a V(max) of 4.21 μmol/mL·min using soluble starch as the substrate. Activity was significantly stimulated by Fe(2+) and completely inhibited by Cu(2+), Mn(2+), and Ba(2+) (10 mM). Ethanol and chloroform (10% v/v) also caused significant levels of inhibition. The purified amylase essentially exhibited activity only on hydrolyzed soluble starch, producing mainly glucose and maltose, indicating that it is an endo-amylase (α-amylase). Amylase activity peaked at 99.38 U/mL fermented in a 3.7 L-bioreactor (2.15-fold greater than what was observed in flask cultures). These data provide a strategy for optimizing the production of enzymes from fungi and provide insight into the α-amylase of A. apis. MDPI 2023-11-05 /pmc/articles/PMC10672707/ /pubmed/37998887 http://dx.doi.org/10.3390/jof9111082 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 Li, Jincheng Liu, Sen Yang, Chenjie Keyhani, Nemat O. Pu, Huili Lin, Longbin Li, Xiaoxia Jia, Peisong Wu, Dongmei Pan, Jieming Stevenson, Philip C. Fernández-Grandon, G Mandela Zhang, Liaoyuan Chen, Yuxi Guan, Xiayu Qiu, Junzhi Characterization of an α-Amylase from the Honeybee Chalk Brood Pathogen Ascosphaera apis |
title | Characterization of an α-Amylase from the Honeybee Chalk Brood Pathogen Ascosphaera apis |
title_full | Characterization of an α-Amylase from the Honeybee Chalk Brood Pathogen Ascosphaera apis |
title_fullStr | Characterization of an α-Amylase from the Honeybee Chalk Brood Pathogen Ascosphaera apis |
title_full_unstemmed | Characterization of an α-Amylase from the Honeybee Chalk Brood Pathogen Ascosphaera apis |
title_short | Characterization of an α-Amylase from the Honeybee Chalk Brood Pathogen Ascosphaera apis |
title_sort | characterization of an α-amylase from the honeybee chalk brood pathogen ascosphaera apis |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10672707/ https://www.ncbi.nlm.nih.gov/pubmed/37998887 http://dx.doi.org/10.3390/jof9111082 |
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