Cargando…

Enhancing the Catalytic Activity of Thermo-Asparaginase from Thermococcus sibiricus by a Double Mesophilic-like Mutation in the Substrate-Binding Region

L-asparaginases (L-ASNases) of microbial origin are the mainstay of blood cancer treatment. Numerous attempts have been performed for genetic improvement of the main properties of these enzymes. The substrate-binding Ser residue is highly conserved in L-ASNases regardless of their origin or type. Ho...

Descripción completa

Detalles Bibliográficos
Autores principales: Dumina, Maria, Zhdanov, Dmitry, Zhgun, Alexander, Pokrovskaya, Marina, Aleksandrova, Svetlana, Veselovsky, Alexander, El’darov, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10253665/
https://www.ncbi.nlm.nih.gov/pubmed/37298582
http://dx.doi.org/10.3390/ijms24119632
_version_ 1785056460426706944
author Dumina, Maria
Zhdanov, Dmitry
Zhgun, Alexander
Pokrovskaya, Marina
Aleksandrova, Svetlana
Veselovsky, Alexander
El’darov, Michael
author_facet Dumina, Maria
Zhdanov, Dmitry
Zhgun, Alexander
Pokrovskaya, Marina
Aleksandrova, Svetlana
Veselovsky, Alexander
El’darov, Michael
author_sort Dumina, Maria
collection PubMed
description L-asparaginases (L-ASNases) of microbial origin are the mainstay of blood cancer treatment. Numerous attempts have been performed for genetic improvement of the main properties of these enzymes. The substrate-binding Ser residue is highly conserved in L-ASNases regardless of their origin or type. However, the residues adjacent to the substrate-binding Ser differ between mesophilic and thermophilic L-ASNases. Based on our suggestion that the triad, including substrate-binding Ser, either GSQ for meso-ASNase or DST for thermo-ASNase, is tuned for efficient substrate binding, we constructed a double mutant of thermophilic L-ASNase from Thermococcus sibiricus (TsA) with a mesophilic-like GSQ combination. In this study, the conjoint substitution of two residues adjacent to the substrate-binding Ser55 resulted in a significant increase in the activity of the double mutant, reaching 240% of the wild-type enzyme activity at the optimum temperature of 90 °C. The mesophilic-like GSQ combination in the rigid structure of the thermophilic L-ASNase appears to be more efficient in balancing substrate binding and conformational flexibility of the enzyme. Along with increased activity, the TsA D54G/T56Q double mutant exhibited enhanced cytotoxic activity against cancer cell lines with IC(90) values from 2.8- to 7.4-fold lower than that of the wild-type enzyme.
format Online
Article
Text
id pubmed-10253665
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-102536652023-06-10 Enhancing the Catalytic Activity of Thermo-Asparaginase from Thermococcus sibiricus by a Double Mesophilic-like Mutation in the Substrate-Binding Region Dumina, Maria Zhdanov, Dmitry Zhgun, Alexander Pokrovskaya, Marina Aleksandrova, Svetlana Veselovsky, Alexander El’darov, Michael Int J Mol Sci Article L-asparaginases (L-ASNases) of microbial origin are the mainstay of blood cancer treatment. Numerous attempts have been performed for genetic improvement of the main properties of these enzymes. The substrate-binding Ser residue is highly conserved in L-ASNases regardless of their origin or type. However, the residues adjacent to the substrate-binding Ser differ between mesophilic and thermophilic L-ASNases. Based on our suggestion that the triad, including substrate-binding Ser, either GSQ for meso-ASNase or DST for thermo-ASNase, is tuned for efficient substrate binding, we constructed a double mutant of thermophilic L-ASNase from Thermococcus sibiricus (TsA) with a mesophilic-like GSQ combination. In this study, the conjoint substitution of two residues adjacent to the substrate-binding Ser55 resulted in a significant increase in the activity of the double mutant, reaching 240% of the wild-type enzyme activity at the optimum temperature of 90 °C. The mesophilic-like GSQ combination in the rigid structure of the thermophilic L-ASNase appears to be more efficient in balancing substrate binding and conformational flexibility of the enzyme. Along with increased activity, the TsA D54G/T56Q double mutant exhibited enhanced cytotoxic activity against cancer cell lines with IC(90) values from 2.8- to 7.4-fold lower than that of the wild-type enzyme. MDPI 2023-06-01 /pmc/articles/PMC10253665/ /pubmed/37298582 http://dx.doi.org/10.3390/ijms24119632 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dumina, Maria
Zhdanov, Dmitry
Zhgun, Alexander
Pokrovskaya, Marina
Aleksandrova, Svetlana
Veselovsky, Alexander
El’darov, Michael
Enhancing the Catalytic Activity of Thermo-Asparaginase from Thermococcus sibiricus by a Double Mesophilic-like Mutation in the Substrate-Binding Region
title Enhancing the Catalytic Activity of Thermo-Asparaginase from Thermococcus sibiricus by a Double Mesophilic-like Mutation in the Substrate-Binding Region
title_full Enhancing the Catalytic Activity of Thermo-Asparaginase from Thermococcus sibiricus by a Double Mesophilic-like Mutation in the Substrate-Binding Region
title_fullStr Enhancing the Catalytic Activity of Thermo-Asparaginase from Thermococcus sibiricus by a Double Mesophilic-like Mutation in the Substrate-Binding Region
title_full_unstemmed Enhancing the Catalytic Activity of Thermo-Asparaginase from Thermococcus sibiricus by a Double Mesophilic-like Mutation in the Substrate-Binding Region
title_short Enhancing the Catalytic Activity of Thermo-Asparaginase from Thermococcus sibiricus by a Double Mesophilic-like Mutation in the Substrate-Binding Region
title_sort enhancing the catalytic activity of thermo-asparaginase from thermococcus sibiricus by a double mesophilic-like mutation in the substrate-binding region
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10253665/
https://www.ncbi.nlm.nih.gov/pubmed/37298582
http://dx.doi.org/10.3390/ijms24119632
work_keys_str_mv AT duminamaria enhancingthecatalyticactivityofthermoasparaginasefromthermococcussibiricusbyadoublemesophiliclikemutationinthesubstratebindingregion
AT zhdanovdmitry enhancingthecatalyticactivityofthermoasparaginasefromthermococcussibiricusbyadoublemesophiliclikemutationinthesubstratebindingregion
AT zhgunalexander enhancingthecatalyticactivityofthermoasparaginasefromthermococcussibiricusbyadoublemesophiliclikemutationinthesubstratebindingregion
AT pokrovskayamarina enhancingthecatalyticactivityofthermoasparaginasefromthermococcussibiricusbyadoublemesophiliclikemutationinthesubstratebindingregion
AT aleksandrovasvetlana enhancingthecatalyticactivityofthermoasparaginasefromthermococcussibiricusbyadoublemesophiliclikemutationinthesubstratebindingregion
AT veselovskyalexander enhancingthecatalyticactivityofthermoasparaginasefromthermococcussibiricusbyadoublemesophiliclikemutationinthesubstratebindingregion
AT eldarovmichael enhancingthecatalyticactivityofthermoasparaginasefromthermococcussibiricusbyadoublemesophiliclikemutationinthesubstratebindingregion