Cargando…

Trialkyl(vinyl)phosphonium Chlorophenol Derivatives as Potent Mitochondrial Uncouplers and Antibacterial Agents

[Image: see text] Trialkyl phosphonium derivatives of vinyl-substituted p-chlorophenol were synthesized here by a recently developed method of preparing quaternary phosphonium salts from phosphine oxides using Grignard reagents. All the derivatives with a number (n) of carbon atoms in phosphonium al...

Descripción completa

Detalles Bibliográficos
Autores principales: Terekhova, Natalia V., Khailova, Lyudmila S., Rokitskaya, Tatyana I., Nazarov, Pavel A., Islamov, Daut R., Usachev, Konstantin S., Tatarinov, Dmitry A., Mironov, Vladimir F., Kotova, Elena A., Antonenko, Yuri N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8359139/
https://www.ncbi.nlm.nih.gov/pubmed/34396013
http://dx.doi.org/10.1021/acsomega.1c02909
_version_ 1783737482034020352
author Terekhova, Natalia V.
Khailova, Lyudmila S.
Rokitskaya, Tatyana I.
Nazarov, Pavel A.
Islamov, Daut R.
Usachev, Konstantin S.
Tatarinov, Dmitry A.
Mironov, Vladimir F.
Kotova, Elena A.
Antonenko, Yuri N.
author_facet Terekhova, Natalia V.
Khailova, Lyudmila S.
Rokitskaya, Tatyana I.
Nazarov, Pavel A.
Islamov, Daut R.
Usachev, Konstantin S.
Tatarinov, Dmitry A.
Mironov, Vladimir F.
Kotova, Elena A.
Antonenko, Yuri N.
author_sort Terekhova, Natalia V.
collection PubMed
description [Image: see text] Trialkyl phosphonium derivatives of vinyl-substituted p-chlorophenol were synthesized here by a recently developed method of preparing quaternary phosphonium salts from phosphine oxides using Grignard reagents. All the derivatives with a number (n) of carbon atoms in phosphonium alkyl substituents varying from 4 to 7 showed pronounced uncoupling activity in isolated rat liver mitochondria at micromolar concentrations, with a tripentyl derivative being the most effective both in accelerating respiration and causing membrane potential collapse, as well as in provoking mitochondrial swelling in a potassium-acetate medium. Remarkably, the trialkyl phosphonium derivatives with n from 4 to 7 also proved to be rather potent antibacterial agents. Methylation of the chlorophenol hydroxyl group suppressed the effects of P(555) and P(444) on the respiration and membrane potential of mitochondria but not those of P(666), thereby suggesting a mechanistic difference in the mitochondrial uncoupling by these derivatives, which was predominantly protonophoric (carrier-like) in the case of P(555) and P(444) but detergent-like with P(666). The latter was confirmed by the carboxyfluorescein leakage assay on model liposomal membranes.
format Online
Article
Text
id pubmed-8359139
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-83591392021-08-13 Trialkyl(vinyl)phosphonium Chlorophenol Derivatives as Potent Mitochondrial Uncouplers and Antibacterial Agents Terekhova, Natalia V. Khailova, Lyudmila S. Rokitskaya, Tatyana I. Nazarov, Pavel A. Islamov, Daut R. Usachev, Konstantin S. Tatarinov, Dmitry A. Mironov, Vladimir F. Kotova, Elena A. Antonenko, Yuri N. ACS Omega [Image: see text] Trialkyl phosphonium derivatives of vinyl-substituted p-chlorophenol were synthesized here by a recently developed method of preparing quaternary phosphonium salts from phosphine oxides using Grignard reagents. All the derivatives with a number (n) of carbon atoms in phosphonium alkyl substituents varying from 4 to 7 showed pronounced uncoupling activity in isolated rat liver mitochondria at micromolar concentrations, with a tripentyl derivative being the most effective both in accelerating respiration and causing membrane potential collapse, as well as in provoking mitochondrial swelling in a potassium-acetate medium. Remarkably, the trialkyl phosphonium derivatives with n from 4 to 7 also proved to be rather potent antibacterial agents. Methylation of the chlorophenol hydroxyl group suppressed the effects of P(555) and P(444) on the respiration and membrane potential of mitochondria but not those of P(666), thereby suggesting a mechanistic difference in the mitochondrial uncoupling by these derivatives, which was predominantly protonophoric (carrier-like) in the case of P(555) and P(444) but detergent-like with P(666). The latter was confirmed by the carboxyfluorescein leakage assay on model liposomal membranes. American Chemical Society 2021-07-29 /pmc/articles/PMC8359139/ /pubmed/34396013 http://dx.doi.org/10.1021/acsomega.1c02909 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Terekhova, Natalia V.
Khailova, Lyudmila S.
Rokitskaya, Tatyana I.
Nazarov, Pavel A.
Islamov, Daut R.
Usachev, Konstantin S.
Tatarinov, Dmitry A.
Mironov, Vladimir F.
Kotova, Elena A.
Antonenko, Yuri N.
Trialkyl(vinyl)phosphonium Chlorophenol Derivatives as Potent Mitochondrial Uncouplers and Antibacterial Agents
title Trialkyl(vinyl)phosphonium Chlorophenol Derivatives as Potent Mitochondrial Uncouplers and Antibacterial Agents
title_full Trialkyl(vinyl)phosphonium Chlorophenol Derivatives as Potent Mitochondrial Uncouplers and Antibacterial Agents
title_fullStr Trialkyl(vinyl)phosphonium Chlorophenol Derivatives as Potent Mitochondrial Uncouplers and Antibacterial Agents
title_full_unstemmed Trialkyl(vinyl)phosphonium Chlorophenol Derivatives as Potent Mitochondrial Uncouplers and Antibacterial Agents
title_short Trialkyl(vinyl)phosphonium Chlorophenol Derivatives as Potent Mitochondrial Uncouplers and Antibacterial Agents
title_sort trialkyl(vinyl)phosphonium chlorophenol derivatives as potent mitochondrial uncouplers and antibacterial agents
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8359139/
https://www.ncbi.nlm.nih.gov/pubmed/34396013
http://dx.doi.org/10.1021/acsomega.1c02909
work_keys_str_mv AT terekhovanataliav trialkylvinylphosphoniumchlorophenolderivativesaspotentmitochondrialuncouplersandantibacterialagents
AT khailovalyudmilas trialkylvinylphosphoniumchlorophenolderivativesaspotentmitochondrialuncouplersandantibacterialagents
AT rokitskayatatyanai trialkylvinylphosphoniumchlorophenolderivativesaspotentmitochondrialuncouplersandantibacterialagents
AT nazarovpavela trialkylvinylphosphoniumchlorophenolderivativesaspotentmitochondrialuncouplersandantibacterialagents
AT islamovdautr trialkylvinylphosphoniumchlorophenolderivativesaspotentmitochondrialuncouplersandantibacterialagents
AT usachevkonstantins trialkylvinylphosphoniumchlorophenolderivativesaspotentmitochondrialuncouplersandantibacterialagents
AT tatarinovdmitrya trialkylvinylphosphoniumchlorophenolderivativesaspotentmitochondrialuncouplersandantibacterialagents
AT mironovvladimirf trialkylvinylphosphoniumchlorophenolderivativesaspotentmitochondrialuncouplersandantibacterialagents
AT kotovaelenaa trialkylvinylphosphoniumchlorophenolderivativesaspotentmitochondrialuncouplersandantibacterialagents
AT antonenkoyurin trialkylvinylphosphoniumchlorophenolderivativesaspotentmitochondrialuncouplersandantibacterialagents