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Thermal Inactivation Mechanism and Structural Features Providing Enhanced Thermal Stability of Hyperthermophilic Thermococcus sibiricus L-Asparaginase in Comparison with Mesophilic and Thermophilic L-Asparaginases

Тип публикацииJournal Article
Дата публикации2023-05-02
scimago Q2
wos Q2
БС2
SJR0.746
CiteScore7.6
Impact factor4
ISSN20734344
Catalysis
Physical and Theoretical Chemistry
General Environmental Science
Краткое описание

This work aimed to study the structural features and mechanisms of thermoinactivation of hyperthermophilic L-asparaginase (L-ASNase) from archaea Thermococcus sibiricus (TsA) in comparison with bacterial L-ASNases from Melioribacter roseus (MrA) and Rhodospirillum rubrum (RrA). The catalytic parameters of L-asparagine hydrolysis under optimal conditions (pH 9) were determined for these enzymes by circular dichroism (CD) spectroscopy. TsA showed the highest activity among the studied L-ASNases (640 IU/mg at 90 °C). Thermo-inactivation kinetics were studied at temperatures close to the enzyme optimum: the first-order inactivation constants were 0.065 min−1 (TsA), 0.011 min−1 (MrA), and 0.026 min−1 (RrA). In contrast to RrA and MrA, aggregation was detected as one of the thermoinactivation mechanisms for TsA. From the analysis of thermograms obtained with CD spectroscopy, the melting temperatures (Tm) for RrA, MrA, and TsA were determined as 50, 69, and 89 °C, respectively. A significant increase in the percentage of β-structures for TsA during heating (from 8 to 16%) indicating aggregation was observed in the interval from 70 to 100 °C. For RrA and MrA this value did not increase. Changes in the tertiary structure of the enzymes during heating were monitored by fluorescence spectroscopy. Thermal inactivation of RrA and MrA were accompanied by changes in the tertiary structure. For TsA, the observed denaturation enthalpy (ΔH) was 346 kJ/mol, which was 1.5–2 times higher than the same values for RrA and MrA. The study of the specific thermoinactivation mechanisms and structural- features in hyperthermophilic enzymes in comparison with mesophilic ones allows us to shed light on the molecular adaptation variants of the enzyme to function at high temperatures.

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Dobryakova N. et al. Thermal Inactivation Mechanism and Structural Features Providing Enhanced Thermal Stability of Hyperthermophilic Thermococcus sibiricus L-Asparaginase in Comparison with Mesophilic and Thermophilic L-Asparaginases // Catalysts. 2023. Vol. 13. No. 5. p. 832.
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Dobryakova N., Zhdanov D. D., Dumina M., Aleksandrova S. S., Pokrovskaya M., Genin A., Shishparenok A., Жгун А. А., Kudryashova E. V. Thermal Inactivation Mechanism and Structural Features Providing Enhanced Thermal Stability of Hyperthermophilic Thermococcus sibiricus L-Asparaginase in Comparison with Mesophilic and Thermophilic L-Asparaginases // Catalysts. 2023. Vol. 13. No. 5. p. 832.
RIS |
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TY - JOUR
DO - 10.3390/catal13050832
UR - https://doi.org/10.3390/catal13050832
TI - Thermal Inactivation Mechanism and Structural Features Providing Enhanced Thermal Stability of Hyperthermophilic Thermococcus sibiricus L-Asparaginase in Comparison with Mesophilic and Thermophilic L-Asparaginases
T2 - Catalysts
AU - Dobryakova, Natalia
AU - Zhdanov, Dmitry D
AU - Dumina, Maria
AU - Aleksandrova, Svetlana S
AU - Pokrovskaya, Marina
AU - Genin, Alexander
AU - Shishparenok, Anastasia
AU - Жгун, А. А.
AU - Kudryashova, Elena Vadimovna
PY - 2023
DA - 2023/05/02
PB - MDPI
SP - 832
IS - 5
VL - 13
SN - 2073-4344
ER -
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@article{2023_Dobryakova,
author = {Natalia Dobryakova and Dmitry D Zhdanov and Maria Dumina and Svetlana S Aleksandrova and Marina Pokrovskaya and Alexander Genin and Anastasia Shishparenok and А. А. Жгун and Elena Vadimovna Kudryashova},
title = {Thermal Inactivation Mechanism and Structural Features Providing Enhanced Thermal Stability of Hyperthermophilic Thermococcus sibiricus L-Asparaginase in Comparison with Mesophilic and Thermophilic L-Asparaginases},
journal = {Catalysts},
year = {2023},
volume = {13},
publisher = {MDPI},
month = {may},
url = {https://doi.org/10.3390/catal13050832},
number = {5},
pages = {832},
doi = {10.3390/catal13050832}
}
MLA
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Dobryakova, Natalia, et al. “Thermal Inactivation Mechanism and Structural Features Providing Enhanced Thermal Stability of Hyperthermophilic Thermococcus sibiricus L-Asparaginase in Comparison with Mesophilic and Thermophilic L-Asparaginases.” Catalysts, vol. 13, no. 5, May. 2023, p. 832. https://doi.org/10.3390/catal13050832.