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Biochemical characterization of an alkaline and detergent-stable Lipase from Fusarium annulatum Bugnicourt strain CBS associated with olive tree dieback

This work describes a novel extracellular lipolytic carboxylester hydrolase named FAL, with lipase and phospholipase A(1) (PLA(1)) activity, from a newly isolated filamentous fungus Ascomycota CBS strain, identified as Fusarium annulatum Bunigcourt. FAL was purified to about 62-fold using ammonium s...

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Autores principales: Dab, Ahlem, Hasnaoui, Ismail, Mechri, Sondes, Allala, Fawzi, Bouacem, Khelifa, Noiriel, Alexandre, Bouanane-Darenfed, Amel, Saalaoui, Ennouamane, Asehraou, Abdeslam, Wang, Fanghua, Abousalham, Abdelkarim, Jaouadi, Bassem
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10198573/
https://www.ncbi.nlm.nih.gov/pubmed/37205651
http://dx.doi.org/10.1371/journal.pone.0286091
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author Dab, Ahlem
Hasnaoui, Ismail
Mechri, Sondes
Allala, Fawzi
Bouacem, Khelifa
Noiriel, Alexandre
Bouanane-Darenfed, Amel
Saalaoui, Ennouamane
Asehraou, Abdeslam
Wang, Fanghua
Abousalham, Abdelkarim
Jaouadi, Bassem
author_facet Dab, Ahlem
Hasnaoui, Ismail
Mechri, Sondes
Allala, Fawzi
Bouacem, Khelifa
Noiriel, Alexandre
Bouanane-Darenfed, Amel
Saalaoui, Ennouamane
Asehraou, Abdeslam
Wang, Fanghua
Abousalham, Abdelkarim
Jaouadi, Bassem
author_sort Dab, Ahlem
collection PubMed
description This work describes a novel extracellular lipolytic carboxylester hydrolase named FAL, with lipase and phospholipase A(1) (PLA(1)) activity, from a newly isolated filamentous fungus Ascomycota CBS strain, identified as Fusarium annulatum Bunigcourt. FAL was purified to about 62-fold using ammonium sulphate precipitation, Superdex(®) 200 Increase gel filtration and Q-Sepharose Fast Flow columns, with a total yield of 21%. The specific activity of FAL was found to be 3500 U/mg at pH 9 and 40°C and 5000 U/mg at pH 11 and 45°C, on emulsions of triocanoin and egg yolk phosphatidylcholine, respectively. SDS-PAGE and zymography analysis estimated the molecular weight of FAL to be 33 kDa. FAL was shown to be a PLA(1) with a regioselectivity to the sn-1 position of surface-coated phospholipids esterified with α-eleostearic acid. FAL is a serine enzyme since its activity on triglycerides and phospholipids was completely inhibited by the lipase inhibitor Orlistat (40 μM). Interestingly, compared to Fusarium graminearum lipase (GZEL) and the Thermomyces lanuginosus lipase (Lipolase(®)), this novel fungal (phospho)lipase showed extreme tolerance to the presence of non-polar organic solvents, non-ionic and anionic surfactants, and oxidants, in addition to significant compatibility and stability with some available laundry detergents. The analysis of washing performance showed that it has the capability to efficiently eliminate oil-stains. Overall, FAL could be an ideal choice for application in detergents.
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spelling pubmed-101985732023-05-20 Biochemical characterization of an alkaline and detergent-stable Lipase from Fusarium annulatum Bugnicourt strain CBS associated with olive tree dieback Dab, Ahlem Hasnaoui, Ismail Mechri, Sondes Allala, Fawzi Bouacem, Khelifa Noiriel, Alexandre Bouanane-Darenfed, Amel Saalaoui, Ennouamane Asehraou, Abdeslam Wang, Fanghua Abousalham, Abdelkarim Jaouadi, Bassem PLoS One Research Article This work describes a novel extracellular lipolytic carboxylester hydrolase named FAL, with lipase and phospholipase A(1) (PLA(1)) activity, from a newly isolated filamentous fungus Ascomycota CBS strain, identified as Fusarium annulatum Bunigcourt. FAL was purified to about 62-fold using ammonium sulphate precipitation, Superdex(®) 200 Increase gel filtration and Q-Sepharose Fast Flow columns, with a total yield of 21%. The specific activity of FAL was found to be 3500 U/mg at pH 9 and 40°C and 5000 U/mg at pH 11 and 45°C, on emulsions of triocanoin and egg yolk phosphatidylcholine, respectively. SDS-PAGE and zymography analysis estimated the molecular weight of FAL to be 33 kDa. FAL was shown to be a PLA(1) with a regioselectivity to the sn-1 position of surface-coated phospholipids esterified with α-eleostearic acid. FAL is a serine enzyme since its activity on triglycerides and phospholipids was completely inhibited by the lipase inhibitor Orlistat (40 μM). Interestingly, compared to Fusarium graminearum lipase (GZEL) and the Thermomyces lanuginosus lipase (Lipolase(®)), this novel fungal (phospho)lipase showed extreme tolerance to the presence of non-polar organic solvents, non-ionic and anionic surfactants, and oxidants, in addition to significant compatibility and stability with some available laundry detergents. The analysis of washing performance showed that it has the capability to efficiently eliminate oil-stains. Overall, FAL could be an ideal choice for application in detergents. Public Library of Science 2023-05-19 /pmc/articles/PMC10198573/ /pubmed/37205651 http://dx.doi.org/10.1371/journal.pone.0286091 Text en © 2023 Dab et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Dab, Ahlem
Hasnaoui, Ismail
Mechri, Sondes
Allala, Fawzi
Bouacem, Khelifa
Noiriel, Alexandre
Bouanane-Darenfed, Amel
Saalaoui, Ennouamane
Asehraou, Abdeslam
Wang, Fanghua
Abousalham, Abdelkarim
Jaouadi, Bassem
Biochemical characterization of an alkaline and detergent-stable Lipase from Fusarium annulatum Bugnicourt strain CBS associated with olive tree dieback
title Biochemical characterization of an alkaline and detergent-stable Lipase from Fusarium annulatum Bugnicourt strain CBS associated with olive tree dieback
title_full Biochemical characterization of an alkaline and detergent-stable Lipase from Fusarium annulatum Bugnicourt strain CBS associated with olive tree dieback
title_fullStr Biochemical characterization of an alkaline and detergent-stable Lipase from Fusarium annulatum Bugnicourt strain CBS associated with olive tree dieback
title_full_unstemmed Biochemical characterization of an alkaline and detergent-stable Lipase from Fusarium annulatum Bugnicourt strain CBS associated with olive tree dieback
title_short Biochemical characterization of an alkaline and detergent-stable Lipase from Fusarium annulatum Bugnicourt strain CBS associated with olive tree dieback
title_sort biochemical characterization of an alkaline and detergent-stable lipase from fusarium annulatum bugnicourt strain cbs associated with olive tree dieback
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10198573/
https://www.ncbi.nlm.nih.gov/pubmed/37205651
http://dx.doi.org/10.1371/journal.pone.0286091
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