Cargando…

A jacalin-related lectin domain-containing lipase from chestnut (Castanea crenata): Purification, characterization, and protein identification

A novel lipase (triacylglycerol acylhydrolase, EC 3.1.1.3) was discovered from Korean chestnut (Castanea crenata). The lipase was isolated and purified by ammonium sulfate precipitation and a fast protein liquid chromatography system equipped with HiTrap DEAE-Sepharose Fast Flow, HiTrap Q-Sepharose...

Descripción completa

Detalles Bibliográficos
Autores principales: Heo, Jun, Kwon, Chang Woo, Lee, Juno, Park, Haena, Yu, Hyunjong, Chang, Pahn-Shick
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9641177/
https://www.ncbi.nlm.nih.gov/pubmed/36387596
http://dx.doi.org/10.1016/j.crfs.2022.10.033
_version_ 1784826038559178752
author Heo, Jun
Kwon, Chang Woo
Lee, Juno
Park, Haena
Yu, Hyunjong
Chang, Pahn-Shick
author_facet Heo, Jun
Kwon, Chang Woo
Lee, Juno
Park, Haena
Yu, Hyunjong
Chang, Pahn-Shick
author_sort Heo, Jun
collection PubMed
description A novel lipase (triacylglycerol acylhydrolase, EC 3.1.1.3) was discovered from Korean chestnut (Castanea crenata). The lipase was isolated and purified by ammonium sulfate precipitation and a fast protein liquid chromatography system equipped with HiTrap DEAE-Sepharose Fast Flow, HiTrap Q-Sepharose Fast Flow, and HiPrep Sephacryl S-100 Hi-Resolution columns. The purified C. crenata lipase showed a 15.8% yield, purification fold number of 465.8, and specific activity against triolein of 88.5 mU/mg. The enzyme exhibited hydrolytic activity toward tributyrin, trilaurin, and triolein, and was maximally active at pH 8.0 and 35 °C, with triolein used as the substrate. The activation energy (E(a)) and deactivation energy (E(d)) of triolein hydrolysis were 38.41 and 83.35 kJ/mol, respectively. In the enzyme kinetic study, V(max), K(m), and k(cat) were 110.58 mU/mg, 0.11 mM, and 0.221 min(−1), respectively. The relatively low K(m) value indicated that the lipase has high affinity for its substrate. Moreover, Mg(2+) and Ca(2+) increased the lipase activity to 115.4% and 108.3%, respectively. The results of peptide fingerprinting revealed that the C. crenata lipase with a molecular weight of 33.3 kDa was structurally similar to the mannose-binding lectin of the jacalin-related lectin domain superfamily, implying that it has potential as a therapeutic agent for use in the biomedical industry.
format Online
Article
Text
id pubmed-9641177
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-96411772022-11-15 A jacalin-related lectin domain-containing lipase from chestnut (Castanea crenata): Purification, characterization, and protein identification Heo, Jun Kwon, Chang Woo Lee, Juno Park, Haena Yu, Hyunjong Chang, Pahn-Shick Curr Res Food Sci Research Article A novel lipase (triacylglycerol acylhydrolase, EC 3.1.1.3) was discovered from Korean chestnut (Castanea crenata). The lipase was isolated and purified by ammonium sulfate precipitation and a fast protein liquid chromatography system equipped with HiTrap DEAE-Sepharose Fast Flow, HiTrap Q-Sepharose Fast Flow, and HiPrep Sephacryl S-100 Hi-Resolution columns. The purified C. crenata lipase showed a 15.8% yield, purification fold number of 465.8, and specific activity against triolein of 88.5 mU/mg. The enzyme exhibited hydrolytic activity toward tributyrin, trilaurin, and triolein, and was maximally active at pH 8.0 and 35 °C, with triolein used as the substrate. The activation energy (E(a)) and deactivation energy (E(d)) of triolein hydrolysis were 38.41 and 83.35 kJ/mol, respectively. In the enzyme kinetic study, V(max), K(m), and k(cat) were 110.58 mU/mg, 0.11 mM, and 0.221 min(−1), respectively. The relatively low K(m) value indicated that the lipase has high affinity for its substrate. Moreover, Mg(2+) and Ca(2+) increased the lipase activity to 115.4% and 108.3%, respectively. The results of peptide fingerprinting revealed that the C. crenata lipase with a molecular weight of 33.3 kDa was structurally similar to the mannose-binding lectin of the jacalin-related lectin domain superfamily, implying that it has potential as a therapeutic agent for use in the biomedical industry. Elsevier 2022-11-02 /pmc/articles/PMC9641177/ /pubmed/36387596 http://dx.doi.org/10.1016/j.crfs.2022.10.033 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Heo, Jun
Kwon, Chang Woo
Lee, Juno
Park, Haena
Yu, Hyunjong
Chang, Pahn-Shick
A jacalin-related lectin domain-containing lipase from chestnut (Castanea crenata): Purification, characterization, and protein identification
title A jacalin-related lectin domain-containing lipase from chestnut (Castanea crenata): Purification, characterization, and protein identification
title_full A jacalin-related lectin domain-containing lipase from chestnut (Castanea crenata): Purification, characterization, and protein identification
title_fullStr A jacalin-related lectin domain-containing lipase from chestnut (Castanea crenata): Purification, characterization, and protein identification
title_full_unstemmed A jacalin-related lectin domain-containing lipase from chestnut (Castanea crenata): Purification, characterization, and protein identification
title_short A jacalin-related lectin domain-containing lipase from chestnut (Castanea crenata): Purification, characterization, and protein identification
title_sort jacalin-related lectin domain-containing lipase from chestnut (castanea crenata): purification, characterization, and protein identification
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9641177/
https://www.ncbi.nlm.nih.gov/pubmed/36387596
http://dx.doi.org/10.1016/j.crfs.2022.10.033
work_keys_str_mv AT heojun ajacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification
AT kwonchangwoo ajacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification
AT leejuno ajacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification
AT parkhaena ajacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification
AT yuhyunjong ajacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification
AT changpahnshick ajacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification
AT heojun jacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification
AT kwonchangwoo jacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification
AT leejuno jacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification
AT parkhaena jacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification
AT yuhyunjong jacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification
AT changpahnshick jacalinrelatedlectindomaincontaininglipasefromchestnutcastaneacrenatapurificationcharacterizationandproteinidentification