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Radiothermometric Study of the Effect of Amino Acid Mutation on the Characteristics of the Enzymatic System

The radiothermometry (RTM) study of a cytochrome-containing system (CYP102 A1) has been conducted in order to demonstrate the applicability of RTM for monitoring changes in the functional activity of an enzyme in case of its point mutation. The study has been performed with the example of the wild-t...

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Autores principales: Ivanov, Yuri D., Malsagova, Kristina A., Bukharina, Natalia S., Vesnin, Sergey G., Usanov, Sergey A., Tatur, Vadim Yu., Lukyanitsa, Andrei A., Ivanova, Nina D., Konev, Vladimir A., Ziborov, Vadim S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9024681/
https://www.ncbi.nlm.nih.gov/pubmed/35453991
http://dx.doi.org/10.3390/diagnostics12040943
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author Ivanov, Yuri D.
Malsagova, Kristina A.
Bukharina, Natalia S.
Vesnin, Sergey G.
Usanov, Sergey A.
Tatur, Vadim Yu.
Lukyanitsa, Andrei A.
Ivanova, Nina D.
Konev, Vladimir A.
Ziborov, Vadim S.
author_facet Ivanov, Yuri D.
Malsagova, Kristina A.
Bukharina, Natalia S.
Vesnin, Sergey G.
Usanov, Sergey A.
Tatur, Vadim Yu.
Lukyanitsa, Andrei A.
Ivanova, Nina D.
Konev, Vladimir A.
Ziborov, Vadim S.
author_sort Ivanov, Yuri D.
collection PubMed
description The radiothermometry (RTM) study of a cytochrome-containing system (CYP102 A1) has been conducted in order to demonstrate the applicability of RTM for monitoring changes in the functional activity of an enzyme in case of its point mutation. The study has been performed with the example of the wild-type cytochrome (WT) and its mutant type A264K. CYP102 A1 is a nanoscale protein-enzymatic system of about 10 nm in size. RTM uses a radio detector and can record the corresponding brightness temperature (T(br)) of the nanoscale enzyme solution within the 3.4–4.2 GHz frequency range during enzyme functioning. It was found that the enzymatic reaction during the lauric acid hydroxylation at the wild-type CYP102 A1 (WT) concentration of ~10(−9) M is accompanied by T(br) fluctuations of ~0.5–1 °C. At the same time, no T(br) fluctuations are observed for the mutated forms of the enzyme CYP102 A1 (A264K), where one amino acid was replaced. We know that the activity of CYP102 A1 (WT) is ~4 orders of magnitude higher than that of CYP102 A1 (A264K). We therefore concluded that the disappearance of the fluctuation of T(br) CYP102 A1 (A264K) is associated with a decrease in the activity of the enzyme. This effect can be used to develop new methods for testing the activity of the enzyme that do not require additional labels and expensive equipment, in comparison with calorimetry and spectral methods. The RTM is beginning to find application in the diagnosis of oncological diseases and for the analysis of biochemical processes.
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spelling pubmed-90246812022-04-23 Radiothermometric Study of the Effect of Amino Acid Mutation on the Characteristics of the Enzymatic System Ivanov, Yuri D. Malsagova, Kristina A. Bukharina, Natalia S. Vesnin, Sergey G. Usanov, Sergey A. Tatur, Vadim Yu. Lukyanitsa, Andrei A. Ivanova, Nina D. Konev, Vladimir A. Ziborov, Vadim S. Diagnostics (Basel) Article The radiothermometry (RTM) study of a cytochrome-containing system (CYP102 A1) has been conducted in order to demonstrate the applicability of RTM for monitoring changes in the functional activity of an enzyme in case of its point mutation. The study has been performed with the example of the wild-type cytochrome (WT) and its mutant type A264K. CYP102 A1 is a nanoscale protein-enzymatic system of about 10 nm in size. RTM uses a radio detector and can record the corresponding brightness temperature (T(br)) of the nanoscale enzyme solution within the 3.4–4.2 GHz frequency range during enzyme functioning. It was found that the enzymatic reaction during the lauric acid hydroxylation at the wild-type CYP102 A1 (WT) concentration of ~10(−9) M is accompanied by T(br) fluctuations of ~0.5–1 °C. At the same time, no T(br) fluctuations are observed for the mutated forms of the enzyme CYP102 A1 (A264K), where one amino acid was replaced. We know that the activity of CYP102 A1 (WT) is ~4 orders of magnitude higher than that of CYP102 A1 (A264K). We therefore concluded that the disappearance of the fluctuation of T(br) CYP102 A1 (A264K) is associated with a decrease in the activity of the enzyme. This effect can be used to develop new methods for testing the activity of the enzyme that do not require additional labels and expensive equipment, in comparison with calorimetry and spectral methods. The RTM is beginning to find application in the diagnosis of oncological diseases and for the analysis of biochemical processes. MDPI 2022-04-10 /pmc/articles/PMC9024681/ /pubmed/35453991 http://dx.doi.org/10.3390/diagnostics12040943 Text en © 2022 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
Ivanov, Yuri D.
Malsagova, Kristina A.
Bukharina, Natalia S.
Vesnin, Sergey G.
Usanov, Sergey A.
Tatur, Vadim Yu.
Lukyanitsa, Andrei A.
Ivanova, Nina D.
Konev, Vladimir A.
Ziborov, Vadim S.
Radiothermometric Study of the Effect of Amino Acid Mutation on the Characteristics of the Enzymatic System
title Radiothermometric Study of the Effect of Amino Acid Mutation on the Characteristics of the Enzymatic System
title_full Radiothermometric Study of the Effect of Amino Acid Mutation on the Characteristics of the Enzymatic System
title_fullStr Radiothermometric Study of the Effect of Amino Acid Mutation on the Characteristics of the Enzymatic System
title_full_unstemmed Radiothermometric Study of the Effect of Amino Acid Mutation on the Characteristics of the Enzymatic System
title_short Radiothermometric Study of the Effect of Amino Acid Mutation on the Characteristics of the Enzymatic System
title_sort radiothermometric study of the effect of amino acid mutation on the characteristics of the enzymatic system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9024681/
https://www.ncbi.nlm.nih.gov/pubmed/35453991
http://dx.doi.org/10.3390/diagnostics12040943
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