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Electronic effects on the mechanism of the NAD(+) coenzyme reduction catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex in the presence of formate

In the present study, electronic effects on the mechanism of the NAD(+) coenzyme reduction in the presence of formate, catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex, were investigated. The [Ru(II)(terpy)(ampy)Cl]Cl (terpy = 2,2′:6′,2′′-terpyridine, ampy = 2-(aminomethyl)p...

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Autores principales: Chrzanowska, Marta, Katafias, Anna, van Eldik, Rudi, Conradie, Jeanet
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9341502/
https://www.ncbi.nlm.nih.gov/pubmed/35975079
http://dx.doi.org/10.1039/d2ra01890j
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author Chrzanowska, Marta
Katafias, Anna
van Eldik, Rudi
Conradie, Jeanet
author_facet Chrzanowska, Marta
Katafias, Anna
van Eldik, Rudi
Conradie, Jeanet
author_sort Chrzanowska, Marta
collection PubMed
description In the present study, electronic effects on the mechanism of the NAD(+) coenzyme reduction in the presence of formate, catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex, were investigated. The [Ru(II)(terpy)(ampy)Cl]Cl (terpy = 2,2′:6′,2′′-terpyridine, ampy = 2-(aminomethyl)pyridine) complex was employed as the catalyst. The reactions were studied in a water/ethanol mixture as a function of formate, catalyst, and NAD(+) concentrations at 37 °C. The overall process was found to be 11 to 18 times slower than for the corresponding ethylenediamine (en) complex as the result of π-back bonding effects of the ampy ligand. The mechanistic studies revealed a complete set of reactions that accounted for the overall catalytic cycle based on a formate-induced hydride transfer reaction to form the reduced coenzyme, NADH. The geometries of the ruthenium(ii)-ampy complexes involved in the catalytic cycle and free energy changes for the main steps were predicted by DFT calculations. Similar calculations were also performed for the analogues ruthenium(ii)-en and ruthenium(ii)-bipy complexes (bipy = 2,2′-bipyridine). The DFT calculated energies show that both the solvent-formato exchange and the formato-hydrido conversion reactions have negative (favourable) energies to proceed spontaneously. The reactions involving the en complex have the more negative (favourable) reaction energies, followed by the ampy complex, in agreement with faster reactions for en complexes and slower reactions for bipy complexes than for ampy complexes.
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spelling pubmed-93415022022-08-15 Electronic effects on the mechanism of the NAD(+) coenzyme reduction catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex in the presence of formate Chrzanowska, Marta Katafias, Anna van Eldik, Rudi Conradie, Jeanet RSC Adv Chemistry In the present study, electronic effects on the mechanism of the NAD(+) coenzyme reduction in the presence of formate, catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex, were investigated. The [Ru(II)(terpy)(ampy)Cl]Cl (terpy = 2,2′:6′,2′′-terpyridine, ampy = 2-(aminomethyl)pyridine) complex was employed as the catalyst. The reactions were studied in a water/ethanol mixture as a function of formate, catalyst, and NAD(+) concentrations at 37 °C. The overall process was found to be 11 to 18 times slower than for the corresponding ethylenediamine (en) complex as the result of π-back bonding effects of the ampy ligand. The mechanistic studies revealed a complete set of reactions that accounted for the overall catalytic cycle based on a formate-induced hydride transfer reaction to form the reduced coenzyme, NADH. The geometries of the ruthenium(ii)-ampy complexes involved in the catalytic cycle and free energy changes for the main steps were predicted by DFT calculations. Similar calculations were also performed for the analogues ruthenium(ii)-en and ruthenium(ii)-bipy complexes (bipy = 2,2′-bipyridine). The DFT calculated energies show that both the solvent-formato exchange and the formato-hydrido conversion reactions have negative (favourable) energies to proceed spontaneously. The reactions involving the en complex have the more negative (favourable) reaction energies, followed by the ampy complex, in agreement with faster reactions for en complexes and slower reactions for bipy complexes than for ampy complexes. The Royal Society of Chemistry 2022-08-01 /pmc/articles/PMC9341502/ /pubmed/35975079 http://dx.doi.org/10.1039/d2ra01890j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Chrzanowska, Marta
Katafias, Anna
van Eldik, Rudi
Conradie, Jeanet
Electronic effects on the mechanism of the NAD(+) coenzyme reduction catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex in the presence of formate
title Electronic effects on the mechanism of the NAD(+) coenzyme reduction catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex in the presence of formate
title_full Electronic effects on the mechanism of the NAD(+) coenzyme reduction catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex in the presence of formate
title_fullStr Electronic effects on the mechanism of the NAD(+) coenzyme reduction catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex in the presence of formate
title_full_unstemmed Electronic effects on the mechanism of the NAD(+) coenzyme reduction catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex in the presence of formate
title_short Electronic effects on the mechanism of the NAD(+) coenzyme reduction catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex in the presence of formate
title_sort electronic effects on the mechanism of the nad(+) coenzyme reduction catalysed by a non-organometallic ruthenium(ii) polypyridyl amine complex in the presence of formate
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9341502/
https://www.ncbi.nlm.nih.gov/pubmed/35975079
http://dx.doi.org/10.1039/d2ra01890j
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