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Influence of Water Polarization Caused by Phonon Resonance on Catalytic Activity of Enolase

[Image: see text] Enolase is a conservative protein. Its cellular enzymatic activity catalyzes the conversion of 2-phospho-d-glycerate (2-PGA) to a phosphoenolpyruvate (PEP) product in the glycolysis pathway. This enzyme also has a multifunctional nature participating in several biological processes...

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Autores principales: Pietkiewicz, Jadwiga, Danielewicz, Regina, Wandzel, Czesław, Beznosiuk, Jarosław, Szuba, Andrzej, Samsel-Czekała, Małgorzata, Gamian, Andrzej
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7906585/
https://www.ncbi.nlm.nih.gov/pubmed/33644547
http://dx.doi.org/10.1021/acsomega.0c05199
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author Pietkiewicz, Jadwiga
Danielewicz, Regina
Wandzel, Czesław
Beznosiuk, Jarosław
Szuba, Andrzej
Samsel-Czekała, Małgorzata
Gamian, Andrzej
author_facet Pietkiewicz, Jadwiga
Danielewicz, Regina
Wandzel, Czesław
Beznosiuk, Jarosław
Szuba, Andrzej
Samsel-Czekała, Małgorzata
Gamian, Andrzej
author_sort Pietkiewicz, Jadwiga
collection PubMed
description [Image: see text] Enolase is a conservative protein. Its cellular enzymatic activity catalyzes the conversion of 2-phospho-d-glycerate (2-PGA) to a phosphoenolpyruvate (PEP) product in the glycolysis pathway. This enzyme also has a multifunctional nature participating in several biological processes. This work aims to determine the effect of water polarization on the catalytic activity of enolase. The experiments have been set based on the concept that water, a polar dielectric, may undergo the phenomenon of electric polarization, decreasing its configurational and vibrational entropy. Prior to the reaction, the 2-PGA substrate was incubated for 5 h in the glass cuvette with an attached chip-inductor. The latter device was designed to transfer quantum information about a given quantum state from the quantum state generator to water by a phonon resonance. Then, such substrate samples preincubated with the chip-inductor were removed every hour in a separate quartz cuvette with the enzyme to determine its catalytic activity. The influence of the chip-inductor on the preincubated substrate resulted in an increase in the catalytic activity of enolase by 30% compared to the control substrate, not preincubated with the chip-inductor. This suggests that the catalytic activity of the enzyme is augmented when the substrate was primed by chip-inductors. In another kind of experiment, wherein enolase was exposed to methylglyoxal modification, the catalytic activity of the enzyme dropped to 71.7%, while the same enzyme glycated with methylglyoxal primed by chip-inductors restored its activity by 8.4%. This shows the protective effect of chip-inductors on enolase activity despite the harmful effect of methylglyoxal on the protein.
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spelling pubmed-79065852021-02-26 Influence of Water Polarization Caused by Phonon Resonance on Catalytic Activity of Enolase Pietkiewicz, Jadwiga Danielewicz, Regina Wandzel, Czesław Beznosiuk, Jarosław Szuba, Andrzej Samsel-Czekała, Małgorzata Gamian, Andrzej ACS Omega [Image: see text] Enolase is a conservative protein. Its cellular enzymatic activity catalyzes the conversion of 2-phospho-d-glycerate (2-PGA) to a phosphoenolpyruvate (PEP) product in the glycolysis pathway. This enzyme also has a multifunctional nature participating in several biological processes. This work aims to determine the effect of water polarization on the catalytic activity of enolase. The experiments have been set based on the concept that water, a polar dielectric, may undergo the phenomenon of electric polarization, decreasing its configurational and vibrational entropy. Prior to the reaction, the 2-PGA substrate was incubated for 5 h in the glass cuvette with an attached chip-inductor. The latter device was designed to transfer quantum information about a given quantum state from the quantum state generator to water by a phonon resonance. Then, such substrate samples preincubated with the chip-inductor were removed every hour in a separate quartz cuvette with the enzyme to determine its catalytic activity. The influence of the chip-inductor on the preincubated substrate resulted in an increase in the catalytic activity of enolase by 30% compared to the control substrate, not preincubated with the chip-inductor. This suggests that the catalytic activity of the enzyme is augmented when the substrate was primed by chip-inductors. In another kind of experiment, wherein enolase was exposed to methylglyoxal modification, the catalytic activity of the enzyme dropped to 71.7%, while the same enzyme glycated with methylglyoxal primed by chip-inductors restored its activity by 8.4%. This shows the protective effect of chip-inductors on enolase activity despite the harmful effect of methylglyoxal on the protein. American Chemical Society 2021-02-01 /pmc/articles/PMC7906585/ /pubmed/33644547 http://dx.doi.org/10.1021/acsomega.0c05199 Text en © 2021 The Authors. Published by American Chemical Society This is an open access article published under an ACS AuthorChoice License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Pietkiewicz, Jadwiga
Danielewicz, Regina
Wandzel, Czesław
Beznosiuk, Jarosław
Szuba, Andrzej
Samsel-Czekała, Małgorzata
Gamian, Andrzej
Influence of Water Polarization Caused by Phonon Resonance on Catalytic Activity of Enolase
title Influence of Water Polarization Caused by Phonon Resonance on Catalytic Activity of Enolase
title_full Influence of Water Polarization Caused by Phonon Resonance on Catalytic Activity of Enolase
title_fullStr Influence of Water Polarization Caused by Phonon Resonance on Catalytic Activity of Enolase
title_full_unstemmed Influence of Water Polarization Caused by Phonon Resonance on Catalytic Activity of Enolase
title_short Influence of Water Polarization Caused by Phonon Resonance on Catalytic Activity of Enolase
title_sort influence of water polarization caused by phonon resonance on catalytic activity of enolase
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7906585/
https://www.ncbi.nlm.nih.gov/pubmed/33644547
http://dx.doi.org/10.1021/acsomega.0c05199
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