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Hydrolysis of three different head groups phospholipids by chicken group V phospholipase A2 using the monomolecular film technique

The kinetic aspects of lipolysis by pulmonary phospholipase A2 (ChPLA2-V), chicken intestinal phospholipase A2 (ChPLA2-IIA) and chicken pancreatic phospholipase A2 (ChPLA2-IB), from chicken have been compared using the monomolecular films technique, on short-chain phospholipids (with three different...

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Autores principales: Karray, Aida, Ali, Madiha Bou, Raida, Jallouli, Sofiane, Bezzine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6974423/
https://www.ncbi.nlm.nih.gov/pubmed/31919493
http://dx.doi.org/10.1042/BSR20192053
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author Karray, Aida
Ali, Madiha Bou
Raida, Jallouli
Sofiane, Bezzine
author_facet Karray, Aida
Ali, Madiha Bou
Raida, Jallouli
Sofiane, Bezzine
author_sort Karray, Aida
collection PubMed
description The kinetic aspects of lipolysis by pulmonary phospholipase A2 (ChPLA2-V), chicken intestinal phospholipase A2 (ChPLA2-IIA) and chicken pancreatic phospholipase A2 (ChPLA2-IB), from chicken have been compared using the monomolecular films technique, on short-chain phospholipids (with three different head groups) and on long-chain phospholipids. The main conclusions from our experimental data indicate that the maximum catalytic activities of ChPLA2-V on 1,2 phosphatidylcholine and 1,2 phosphatidylethanolamine reached 15.26 and 36.12 moles/cm(2).min.mM, respectively, at a pressure of 15 and 35 dynes/cm, respectively. Whereas, those of ChPLA2-IB were 3.58 (at the pressure of 20 dynes/cm) and 4.9 moles/cm(2).min.mM. However, hydrolysis of phosphatidylglycerol monolayers (C12PG), were very much higher compared with all the substrates tested with 122 moles/cm(2).min. Surprisingly, the hydrolysis rate of ChPLA2-V on long-chain phosphatidylglycerol (C18PG) was very low (1.45 moles/cm(2).min) compared with all tested substrates, even with the use of p-cyclodextrin. And thus, the fatty acid preference of ChPLA2-V was 2-decanoyl > 2-oleoyl with a PG head group. In order to gain significant correlations between enzyme’s structures and their relative functions, we tried to examine the surface electrostatic potentials of the various secreted phospholipase 2 (sPLA2) from chicken. In the present study, we detailed that the substrate affinity, specificity and the hydrolysis rates of sPLA2 at each interface is governed by the surface electrostatic potentials and hydrophobic interactions operative at this surface.
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spelling pubmed-69744232020-02-03 Hydrolysis of three different head groups phospholipids by chicken group V phospholipase A2 using the monomolecular film technique Karray, Aida Ali, Madiha Bou Raida, Jallouli Sofiane, Bezzine Biosci Rep Biotechnology The kinetic aspects of lipolysis by pulmonary phospholipase A2 (ChPLA2-V), chicken intestinal phospholipase A2 (ChPLA2-IIA) and chicken pancreatic phospholipase A2 (ChPLA2-IB), from chicken have been compared using the monomolecular films technique, on short-chain phospholipids (with three different head groups) and on long-chain phospholipids. The main conclusions from our experimental data indicate that the maximum catalytic activities of ChPLA2-V on 1,2 phosphatidylcholine and 1,2 phosphatidylethanolamine reached 15.26 and 36.12 moles/cm(2).min.mM, respectively, at a pressure of 15 and 35 dynes/cm, respectively. Whereas, those of ChPLA2-IB were 3.58 (at the pressure of 20 dynes/cm) and 4.9 moles/cm(2).min.mM. However, hydrolysis of phosphatidylglycerol monolayers (C12PG), were very much higher compared with all the substrates tested with 122 moles/cm(2).min. Surprisingly, the hydrolysis rate of ChPLA2-V on long-chain phosphatidylglycerol (C18PG) was very low (1.45 moles/cm(2).min) compared with all tested substrates, even with the use of p-cyclodextrin. And thus, the fatty acid preference of ChPLA2-V was 2-decanoyl > 2-oleoyl with a PG head group. In order to gain significant correlations between enzyme’s structures and their relative functions, we tried to examine the surface electrostatic potentials of the various secreted phospholipase 2 (sPLA2) from chicken. In the present study, we detailed that the substrate affinity, specificity and the hydrolysis rates of sPLA2 at each interface is governed by the surface electrostatic potentials and hydrophobic interactions operative at this surface. Portland Press Ltd. 2020-01-21 /pmc/articles/PMC6974423/ /pubmed/31919493 http://dx.doi.org/10.1042/BSR20192053 Text en © 2020 The Author(s). https://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY).
spellingShingle Biotechnology
Karray, Aida
Ali, Madiha Bou
Raida, Jallouli
Sofiane, Bezzine
Hydrolysis of three different head groups phospholipids by chicken group V phospholipase A2 using the monomolecular film technique
title Hydrolysis of three different head groups phospholipids by chicken group V phospholipase A2 using the monomolecular film technique
title_full Hydrolysis of three different head groups phospholipids by chicken group V phospholipase A2 using the monomolecular film technique
title_fullStr Hydrolysis of three different head groups phospholipids by chicken group V phospholipase A2 using the monomolecular film technique
title_full_unstemmed Hydrolysis of three different head groups phospholipids by chicken group V phospholipase A2 using the monomolecular film technique
title_short Hydrolysis of three different head groups phospholipids by chicken group V phospholipase A2 using the monomolecular film technique
title_sort hydrolysis of three different head groups phospholipids by chicken group v phospholipase a2 using the monomolecular film technique
topic Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6974423/
https://www.ncbi.nlm.nih.gov/pubmed/31919493
http://dx.doi.org/10.1042/BSR20192053
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