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Molecular Characterization of a Novel Cold-Active Hormone-Sensitive Lipase (HaHSL) from Halocynthiibacter Arcticus

Bacterial hormone-sensitive lipases (bHSLs), which are homologous to the catalytic domains of human HSLs, have received great interest due to their uses in the preparation of highly valuable biochemicals, such as drug intermediates or chiral building blocks. Here, a novel cold-active HSL from Halocy...

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Autores principales: Le, Ly Thi Huong Luu, Yoo, Wanki, Lee, Changwoo, Wang, Ying, Jeon, Sangeun, Kim, Kyeong Kyu, Lee, Jun Hyuck, Kim, T. Doohun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6921082/
https://www.ncbi.nlm.nih.gov/pubmed/31694309
http://dx.doi.org/10.3390/biom9110704
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author Le, Ly Thi Huong Luu
Yoo, Wanki
Lee, Changwoo
Wang, Ying
Jeon, Sangeun
Kim, Kyeong Kyu
Lee, Jun Hyuck
Kim, T. Doohun
author_facet Le, Ly Thi Huong Luu
Yoo, Wanki
Lee, Changwoo
Wang, Ying
Jeon, Sangeun
Kim, Kyeong Kyu
Lee, Jun Hyuck
Kim, T. Doohun
author_sort Le, Ly Thi Huong Luu
collection PubMed
description Bacterial hormone-sensitive lipases (bHSLs), which are homologous to the catalytic domains of human HSLs, have received great interest due to their uses in the preparation of highly valuable biochemicals, such as drug intermediates or chiral building blocks. Here, a novel cold-active HSL from Halocynthiibacter arcticus (HaHSL) was examined and its enzymatic properties were investigated using several biochemical and biophysical methods. Interestingly, HaHSL acted on a large variety of substrates including tertiary alcohol esters and fish oils. Additionally, this enzyme was highly tolerant to high concentrations of salt, detergents, and glycerol. Furthermore, immobilized HaHSL retained its activity for up to six cycles of use. Homology modeling suggested that aromatic amino acids (Trp(23), Tyr(74), Phe(78), Trp(83), and Phe(245)) in close proximity to the substrate-binding pocket were important for enzyme activity. Mutational analysis revealed that Tyr(74) played an important role in substrate specificity, thermostability, and enantioselectivity. In summary, the current study provides an invaluable insight into the novel cold-active HaHSL from H. arcticus, which can be efficiently and sustainably used in a wide range of biotechnological applications.
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spelling pubmed-69210822019-12-24 Molecular Characterization of a Novel Cold-Active Hormone-Sensitive Lipase (HaHSL) from Halocynthiibacter Arcticus Le, Ly Thi Huong Luu Yoo, Wanki Lee, Changwoo Wang, Ying Jeon, Sangeun Kim, Kyeong Kyu Lee, Jun Hyuck Kim, T. Doohun Biomolecules Article Bacterial hormone-sensitive lipases (bHSLs), which are homologous to the catalytic domains of human HSLs, have received great interest due to their uses in the preparation of highly valuable biochemicals, such as drug intermediates or chiral building blocks. Here, a novel cold-active HSL from Halocynthiibacter arcticus (HaHSL) was examined and its enzymatic properties were investigated using several biochemical and biophysical methods. Interestingly, HaHSL acted on a large variety of substrates including tertiary alcohol esters and fish oils. Additionally, this enzyme was highly tolerant to high concentrations of salt, detergents, and glycerol. Furthermore, immobilized HaHSL retained its activity for up to six cycles of use. Homology modeling suggested that aromatic amino acids (Trp(23), Tyr(74), Phe(78), Trp(83), and Phe(245)) in close proximity to the substrate-binding pocket were important for enzyme activity. Mutational analysis revealed that Tyr(74) played an important role in substrate specificity, thermostability, and enantioselectivity. In summary, the current study provides an invaluable insight into the novel cold-active HaHSL from H. arcticus, which can be efficiently and sustainably used in a wide range of biotechnological applications. MDPI 2019-11-05 /pmc/articles/PMC6921082/ /pubmed/31694309 http://dx.doi.org/10.3390/biom9110704 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Le, Ly Thi Huong Luu
Yoo, Wanki
Lee, Changwoo
Wang, Ying
Jeon, Sangeun
Kim, Kyeong Kyu
Lee, Jun Hyuck
Kim, T. Doohun
Molecular Characterization of a Novel Cold-Active Hormone-Sensitive Lipase (HaHSL) from Halocynthiibacter Arcticus
title Molecular Characterization of a Novel Cold-Active Hormone-Sensitive Lipase (HaHSL) from Halocynthiibacter Arcticus
title_full Molecular Characterization of a Novel Cold-Active Hormone-Sensitive Lipase (HaHSL) from Halocynthiibacter Arcticus
title_fullStr Molecular Characterization of a Novel Cold-Active Hormone-Sensitive Lipase (HaHSL) from Halocynthiibacter Arcticus
title_full_unstemmed Molecular Characterization of a Novel Cold-Active Hormone-Sensitive Lipase (HaHSL) from Halocynthiibacter Arcticus
title_short Molecular Characterization of a Novel Cold-Active Hormone-Sensitive Lipase (HaHSL) from Halocynthiibacter Arcticus
title_sort molecular characterization of a novel cold-active hormone-sensitive lipase (hahsl) from halocynthiibacter arcticus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6921082/
https://www.ncbi.nlm.nih.gov/pubmed/31694309
http://dx.doi.org/10.3390/biom9110704
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