Studying the Effect of Amino Acid Substitutions in the M2 Ion Channel of the Influenza Virus on the Antiviral Activity of the Aminoadamantane Derivative In Vitro and In Silico

Purpose: The aminoadamantane derivative of L-histidyl-1-adamantayl ethylamine hydrochloride (HCl*H-His-Rim) has showed a high inhibition level against influenza A virus strains in vitro. The aim of this work is to search and establish evidence of the direct effect of the drug on influenza A virus pr...

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Main Authors: Timur Mansurovich Garaev, Artyom Irorevich Odnovorov, Alexander Aleksandrovich Lashkov, Tatiana Vladimirovna Grebennikova, Marina Pavlovna Finogenova, Galina Kadymovna Sadykova, Alexei Gennadievich Prilipov, Tatiana Anatol'evna Timofeeva, Sergey Vadimovich Rubinsky, Svetlana Nikolaevna Norkina, Marina Mikhailovna Zhuravleva
Format: Article
Language:English
Published: Tabriz University of Medical Sciences 2021-09-01
Series:Advanced Pharmaceutical Bulletin
Subjects:
Online Access:https://apb.tbzmed.ac.ir/PDF/apb-11-700.pdf
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author Timur Mansurovich Garaev
Artyom Irorevich Odnovorov
Alexander Aleksandrovich Lashkov
Tatiana Vladimirovna Grebennikova
Marina Pavlovna Finogenova
Galina Kadymovna Sadykova
Alexei Gennadievich Prilipov
Tatiana Anatol'evna Timofeeva
Sergey Vadimovich Rubinsky
Svetlana Nikolaevna Norkina
Marina Mikhailovna Zhuravleva
author_facet Timur Mansurovich Garaev
Artyom Irorevich Odnovorov
Alexander Aleksandrovich Lashkov
Tatiana Vladimirovna Grebennikova
Marina Pavlovna Finogenova
Galina Kadymovna Sadykova
Alexei Gennadievich Prilipov
Tatiana Anatol'evna Timofeeva
Sergey Vadimovich Rubinsky
Svetlana Nikolaevna Norkina
Marina Mikhailovna Zhuravleva
author_sort Timur Mansurovich Garaev
collection DOAJ
description Purpose: The aminoadamantane derivative of L-histidyl-1-adamantayl ethylamine hydrochloride (HCl*H-His-Rim) has showed a high inhibition level against influenza A virus strains in vitro. The aim of this work is to search and establish evidence of the direct effect of the drug on influenza A virus proton channel M2. Methods: The compound HCl*H-His-Rim was obtained by classical peptide synthesis methods. Influenza A virus mutants of A/PuertoRico/8/34(H1N1) strain were obtained by reverse genetics methods. The mutant samples of the virus were cultured on chicken embryos with a virus titer in the hemagglutination test. ELISA was carried out on Madin-Darby canine kidney (MDCK) monolayer cells when multiplying the virus 10-4-10-6. The binding stability of HCl*H-His-Rim was compared to those of M2 (S31N) and M2 (S31N_A30T) channels by molecular dynamic (MD) modeling. The calculation was performed taking into account the interaction with the model lipid bilayer (1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine) in the presence of water molecules in accordance with the three-center model. Results: It was found that HCl*H-His-Rim is a direct action drug against influenza A. The most likely conformation of drug binding to target protein has been shown. It has been found that the A30T mutation reduces the binding energy of the drug, and the results obtained in vitro have confirmed the data calculated in silico. Conclusion: The mechanism of action of HCl*H-His-Rim is directly related to the suppression of the function of the proton channel M2 of influenza A virus.
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spelling doaj.art-707f16e09811496d8d64eec50aea33f82022-12-21T23:29:42ZengTabriz University of Medical SciencesAdvanced Pharmaceutical Bulletin2228-58812251-73082021-09-0111470071110.34172/apb.2021.079apb-28672Studying the Effect of Amino Acid Substitutions in the M2 Ion Channel of the Influenza Virus on the Antiviral Activity of the Aminoadamantane Derivative In Vitro and In SilicoTimur Mansurovich Garaev0Artyom Irorevich Odnovorov1Alexander Aleksandrovich Lashkov2Tatiana Vladimirovna Grebennikova3Marina Pavlovna Finogenova4Galina Kadymovna Sadykova5Alexei Gennadievich Prilipov6Tatiana Anatol'evna Timofeeva7Sergey Vadimovich Rubinsky8Svetlana Nikolaevna Norkina9Marina Mikhailovna Zhuravleva10Federal State Budgetary Institution «National Research Centre for Epidemiology and Microbiology named after the honorary academician N.F.Gamaleya» of the Ministry of Health of the Russian Federation (N.F.Gamaleya NRCEM), 123098, Moscow, Russian Federation.Peoples Friendship University of Russia (RUDN University), Ministry of Education of the Russian Federation, 117198, Moscow, Russian Federation.FSRC «Crystallography and Photonics» RAS, Leninskiy Prospekt 59, 119333, Moscow, Russia.Federal State Budgetary Institution «National Research Centre for Epidemiology and Microbiology named after the honorary academician N.F.Gamaleya» of the Ministry of Health of the Russian Federation (N.F.Gamaleya NRCEM), 123098, Moscow, Russian Federation.Federal State Budgetary Institution «National Research Centre for Epidemiology and Microbiology named after the honorary academician N.F.Gamaleya» of the Ministry of Health of the Russian Federation (N.F.Gamaleya NRCEM), 123098, Moscow, Russian Federation.Federal State Budgetary Institution «National Research Centre for Epidemiology and Microbiology named after the honorary academician N.F.Gamaleya» of the Ministry of Health of the Russian Federation (N.F.Gamaleya NRCEM), 123098, Moscow, Russian Federation.Federal State Budgetary Institution «National Research Centre for Epidemiology and Microbiology named after the honorary academician N.F.Gamaleya» of the Ministry of Health of the Russian Federation (N.F.Gamaleya NRCEM), 123098, Moscow, Russian Federation.Federal State Budgetary Institution «National Research Centre for Epidemiology and Microbiology named after the honorary academician N.F.Gamaleya» of the Ministry of Health of the Russian Federation (N.F.Gamaleya NRCEM), 123098, Moscow, Russian Federation.FSRC «Crystallography and Photonics» RAS, Leninskiy Prospekt 59, 119333, Moscow, Russia.Federal State Budgetary Institution «National Research Centre for Epidemiology and Microbiology named after the honorary academician N.F.Gamaleya» of the Ministry of Health of the Russian Federation (N.F.Gamaleya NRCEM), 123098, Moscow, Russian Federation.Federal State Budgetary Institution «National Research Centre for Epidemiology and Microbiology named after the honorary academician N.F.Gamaleya» of the Ministry of Health of the Russian Federation (N.F.Gamaleya NRCEM), 123098, Moscow, Russian Federation.Purpose: The aminoadamantane derivative of L-histidyl-1-adamantayl ethylamine hydrochloride (HCl*H-His-Rim) has showed a high inhibition level against influenza A virus strains in vitro. The aim of this work is to search and establish evidence of the direct effect of the drug on influenza A virus proton channel M2. Methods: The compound HCl*H-His-Rim was obtained by classical peptide synthesis methods. Influenza A virus mutants of A/PuertoRico/8/34(H1N1) strain were obtained by reverse genetics methods. The mutant samples of the virus were cultured on chicken embryos with a virus titer in the hemagglutination test. ELISA was carried out on Madin-Darby canine kidney (MDCK) monolayer cells when multiplying the virus 10-4-10-6. The binding stability of HCl*H-His-Rim was compared to those of M2 (S31N) and M2 (S31N_A30T) channels by molecular dynamic (MD) modeling. The calculation was performed taking into account the interaction with the model lipid bilayer (1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine) in the presence of water molecules in accordance with the three-center model. Results: It was found that HCl*H-His-Rim is a direct action drug against influenza A. The most likely conformation of drug binding to target protein has been shown. It has been found that the A30T mutation reduces the binding energy of the drug, and the results obtained in vitro have confirmed the data calculated in silico. Conclusion: The mechanism of action of HCl*H-His-Rim is directly related to the suppression of the function of the proton channel M2 of influenza A virus.https://apb.tbzmed.ac.ir/PDF/apb-11-700.pdfantiviraldrug resistanceinfluenza virusm2 proton channelmolecular dockingreverse genetics
spellingShingle Timur Mansurovich Garaev
Artyom Irorevich Odnovorov
Alexander Aleksandrovich Lashkov
Tatiana Vladimirovna Grebennikova
Marina Pavlovna Finogenova
Galina Kadymovna Sadykova
Alexei Gennadievich Prilipov
Tatiana Anatol'evna Timofeeva
Sergey Vadimovich Rubinsky
Svetlana Nikolaevna Norkina
Marina Mikhailovna Zhuravleva
Studying the Effect of Amino Acid Substitutions in the M2 Ion Channel of the Influenza Virus on the Antiviral Activity of the Aminoadamantane Derivative In Vitro and In Silico
Advanced Pharmaceutical Bulletin
antiviral
drug resistance
influenza virus
m2 proton channel
molecular docking
reverse genetics
title Studying the Effect of Amino Acid Substitutions in the M2 Ion Channel of the Influenza Virus on the Antiviral Activity of the Aminoadamantane Derivative In Vitro and In Silico
title_full Studying the Effect of Amino Acid Substitutions in the M2 Ion Channel of the Influenza Virus on the Antiviral Activity of the Aminoadamantane Derivative In Vitro and In Silico
title_fullStr Studying the Effect of Amino Acid Substitutions in the M2 Ion Channel of the Influenza Virus on the Antiviral Activity of the Aminoadamantane Derivative In Vitro and In Silico
title_full_unstemmed Studying the Effect of Amino Acid Substitutions in the M2 Ion Channel of the Influenza Virus on the Antiviral Activity of the Aminoadamantane Derivative In Vitro and In Silico
title_short Studying the Effect of Amino Acid Substitutions in the M2 Ion Channel of the Influenza Virus on the Antiviral Activity of the Aminoadamantane Derivative In Vitro and In Silico
title_sort studying the effect of amino acid substitutions in the m2 ion channel of the influenza virus on the antiviral activity of the aminoadamantane derivative in vitro and in silico
topic antiviral
drug resistance
influenza virus
m2 proton channel
molecular docking
reverse genetics
url https://apb.tbzmed.ac.ir/PDF/apb-11-700.pdf
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