Cargando…

Biochemical and Structural Characterization of a novel thermophilic esterase EstD11 provide catalytic insights for the HSL family

A novel esterase, EstD11, has been discovered in a hot spring metagenomic library. It is a thermophilic and thermostable esterase with an optimum temperature of 60°C. A detailed substrate preference analysis of EstD11 was done using a library of chromogenic ester substrate that revealed the broad su...

Descripción completa

Detalles Bibliográficos
Autores principales: Miguel-Ruano, Vega, Rivera, Ivanna, Rajkovic, Jelena, Knapik, Kamila, Torrado, Ana, Otero, José Manuel, Beneventi, Elisa, Becerra, Manuel, Sánchez-Costa, Mercedes, Hidalgo, Aurelio, Berenguer, José, González-Siso, María-Isabel, Cruces, Jacobo, Rúa, María L., Hermoso, Juan A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Research Network of Computational and Structural Biotechnology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7905190/
https://www.ncbi.nlm.nih.gov/pubmed/33680362
http://dx.doi.org/10.1016/j.csbj.2021.01.047
_version_ 1783655062514434048
author Miguel-Ruano, Vega
Rivera, Ivanna
Rajkovic, Jelena
Knapik, Kamila
Torrado, Ana
Otero, José Manuel
Beneventi, Elisa
Becerra, Manuel
Sánchez-Costa, Mercedes
Hidalgo, Aurelio
Berenguer, José
González-Siso, María-Isabel
Cruces, Jacobo
Rúa, María L.
Hermoso, Juan A.
author_facet Miguel-Ruano, Vega
Rivera, Ivanna
Rajkovic, Jelena
Knapik, Kamila
Torrado, Ana
Otero, José Manuel
Beneventi, Elisa
Becerra, Manuel
Sánchez-Costa, Mercedes
Hidalgo, Aurelio
Berenguer, José
González-Siso, María-Isabel
Cruces, Jacobo
Rúa, María L.
Hermoso, Juan A.
author_sort Miguel-Ruano, Vega
collection PubMed
description A novel esterase, EstD11, has been discovered in a hot spring metagenomic library. It is a thermophilic and thermostable esterase with an optimum temperature of 60°C. A detailed substrate preference analysis of EstD11 was done using a library of chromogenic ester substrate that revealed the broad substrate specificity of EstD11 with significant measurable activity against 16 substrates with varied chain length, steric hindrance, aromaticity and flexibility of the linker between the carboxyl and the alcohol moiety of the ester. The tridimensional structures of EstD11 and the inactive mutant have been determined at atomic resolutions. Structural and bioinformatic analysis, confirm that EstD11 belongs to the family IV, the hormone-sensitive lipase (HSL) family, from the α/β-hydrolase superfamily. The canonical α/β-hydrolase domain is completed by a cap domain, composed by two subdomains that can unmask of the active site to allow the substrate to enter. Eight crystallographic complexes were solved with different substrates and reaction products that allowed identification of the hot-spots in the active site underlying the specificity of the protein. Crystallization and/or incubation of EstD11 at high temperature provided unique information on cap dynamics and a first glimpse of enzymatic activity in vivo. Very interestingly, we have discovered a unique Met zipper lining the active site and the cap domains that could be essential in pivotal aspects as thermo-stability and substrate promiscuity in EstD11.
format Online
Article
Text
id pubmed-7905190
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Research Network of Computational and Structural Biotechnology
record_format MEDLINE/PubMed
spelling pubmed-79051902021-03-04 Biochemical and Structural Characterization of a novel thermophilic esterase EstD11 provide catalytic insights for the HSL family Miguel-Ruano, Vega Rivera, Ivanna Rajkovic, Jelena Knapik, Kamila Torrado, Ana Otero, José Manuel Beneventi, Elisa Becerra, Manuel Sánchez-Costa, Mercedes Hidalgo, Aurelio Berenguer, José González-Siso, María-Isabel Cruces, Jacobo Rúa, María L. Hermoso, Juan A. Comput Struct Biotechnol J Research Article A novel esterase, EstD11, has been discovered in a hot spring metagenomic library. It is a thermophilic and thermostable esterase with an optimum temperature of 60°C. A detailed substrate preference analysis of EstD11 was done using a library of chromogenic ester substrate that revealed the broad substrate specificity of EstD11 with significant measurable activity against 16 substrates with varied chain length, steric hindrance, aromaticity and flexibility of the linker between the carboxyl and the alcohol moiety of the ester. The tridimensional structures of EstD11 and the inactive mutant have been determined at atomic resolutions. Structural and bioinformatic analysis, confirm that EstD11 belongs to the family IV, the hormone-sensitive lipase (HSL) family, from the α/β-hydrolase superfamily. The canonical α/β-hydrolase domain is completed by a cap domain, composed by two subdomains that can unmask of the active site to allow the substrate to enter. Eight crystallographic complexes were solved with different substrates and reaction products that allowed identification of the hot-spots in the active site underlying the specificity of the protein. Crystallization and/or incubation of EstD11 at high temperature provided unique information on cap dynamics and a first glimpse of enzymatic activity in vivo. Very interestingly, we have discovered a unique Met zipper lining the active site and the cap domains that could be essential in pivotal aspects as thermo-stability and substrate promiscuity in EstD11. Research Network of Computational and Structural Biotechnology 2021-02-10 /pmc/articles/PMC7905190/ /pubmed/33680362 http://dx.doi.org/10.1016/j.csbj.2021.01.047 Text en © 2021 The Authors http://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
Miguel-Ruano, Vega
Rivera, Ivanna
Rajkovic, Jelena
Knapik, Kamila
Torrado, Ana
Otero, José Manuel
Beneventi, Elisa
Becerra, Manuel
Sánchez-Costa, Mercedes
Hidalgo, Aurelio
Berenguer, José
González-Siso, María-Isabel
Cruces, Jacobo
Rúa, María L.
Hermoso, Juan A.
Biochemical and Structural Characterization of a novel thermophilic esterase EstD11 provide catalytic insights for the HSL family
title Biochemical and Structural Characterization of a novel thermophilic esterase EstD11 provide catalytic insights for the HSL family
title_full Biochemical and Structural Characterization of a novel thermophilic esterase EstD11 provide catalytic insights for the HSL family
title_fullStr Biochemical and Structural Characterization of a novel thermophilic esterase EstD11 provide catalytic insights for the HSL family
title_full_unstemmed Biochemical and Structural Characterization of a novel thermophilic esterase EstD11 provide catalytic insights for the HSL family
title_short Biochemical and Structural Characterization of a novel thermophilic esterase EstD11 provide catalytic insights for the HSL family
title_sort biochemical and structural characterization of a novel thermophilic esterase estd11 provide catalytic insights for the hsl family
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7905190/
https://www.ncbi.nlm.nih.gov/pubmed/33680362
http://dx.doi.org/10.1016/j.csbj.2021.01.047
work_keys_str_mv AT miguelruanovega biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT riveraivanna biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT rajkovicjelena biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT knapikkamila biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT torradoana biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT oterojosemanuel biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT beneventielisa biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT becerramanuel biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT sanchezcostamercedes biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT hidalgoaurelio biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT berenguerjose biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT gonzalezsisomariaisabel biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT crucesjacobo biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT ruamarial biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily
AT hermosojuana biochemicalandstructuralcharacterizationofanovelthermophilicesteraseestd11providecatalyticinsightsforthehslfamily