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Adenine Radical Cation Formation by a Ligand-Centered Excited State of an Intercalated Chromium Polypyridyl Complex Leads to Enhanced DNA Photo-oxidation

[Image: see text] Assessment of the DNA photo-oxidation and synthetic photocatalytic activity of chromium polypyridyl complexes is dominated by consideration of their long-lived metal-centered excited states. Here we report the participation of the excited states of [Cr(TMP)(2)dppz](3+) (1) (TMP = 3...

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Autores principales: Baptista, Frederico A., Krizsan, Dorottya, Stitch, Mark, Sazanovich, Igor V., Clark, Ian P., Towrie, Michael, Long, Conor, Martinez-Fernandez, Lara, Improta, Roberto, Kane-Maguire, Noel A. P., Kelly, John M., Quinn, Susan J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8447253/
https://www.ncbi.nlm.nih.gov/pubmed/34464120
http://dx.doi.org/10.1021/jacs.1c06658
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author Baptista, Frederico A.
Krizsan, Dorottya
Stitch, Mark
Sazanovich, Igor V.
Clark, Ian P.
Towrie, Michael
Long, Conor
Martinez-Fernandez, Lara
Improta, Roberto
Kane-Maguire, Noel A. P.
Kelly, John M.
Quinn, Susan J.
author_facet Baptista, Frederico A.
Krizsan, Dorottya
Stitch, Mark
Sazanovich, Igor V.
Clark, Ian P.
Towrie, Michael
Long, Conor
Martinez-Fernandez, Lara
Improta, Roberto
Kane-Maguire, Noel A. P.
Kelly, John M.
Quinn, Susan J.
author_sort Baptista, Frederico A.
collection PubMed
description [Image: see text] Assessment of the DNA photo-oxidation and synthetic photocatalytic activity of chromium polypyridyl complexes is dominated by consideration of their long-lived metal-centered excited states. Here we report the participation of the excited states of [Cr(TMP)(2)dppz](3+) (1) (TMP = 3,4,7,8-tetramethyl-1,10-phenanthroline; dppz = dipyrido[3,2-a:2′,3′-c]phenazine) in DNA photoreactions. The interactions of enantiomers of 1 with natural DNA or with oligodeoxynucleotides with varying AT content (0–100%) have been studied by steady state UV/visible absorption and luminescence spectroscopic methods, and the emission of 1 is found to be quenched in all systems. The time-resolved infrared (TRIR) and visible absorption spectra (TA) of 1 following excitation in the region between 350 to 400 nm reveal the presence of relatively long-lived dppz-centered states which eventually yield the emissive metal-centered state. The dppz-localized states are fully quenched when bound by GC base pairs and partially so in the presence of an AT base-pair system to generate purine radical cations. The sensitized formation of the adenine radical cation species (A(•+)T) is identified by assigning the TRIR spectra with help of DFT calculations. In natural DNA and oligodeoxynucleotides containing a mixture of AT and GC of base pairs, the observed time-resolved spectra are consistent with eventual photo-oxidation occurring predominantly at guanine through hole migration between base pairs. The combined targeting of purines leads to enhanced photo-oxidation of guanine. These results show that DNA photo-oxidation by the intercalated 1, which locates the dppz in contact with the target purines, is dominated by the LC centered excited state. This work has implications for future phototherapeutics and photocatalysis.
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spelling pubmed-84472532021-09-20 Adenine Radical Cation Formation by a Ligand-Centered Excited State of an Intercalated Chromium Polypyridyl Complex Leads to Enhanced DNA Photo-oxidation Baptista, Frederico A. Krizsan, Dorottya Stitch, Mark Sazanovich, Igor V. Clark, Ian P. Towrie, Michael Long, Conor Martinez-Fernandez, Lara Improta, Roberto Kane-Maguire, Noel A. P. Kelly, John M. Quinn, Susan J. J Am Chem Soc [Image: see text] Assessment of the DNA photo-oxidation and synthetic photocatalytic activity of chromium polypyridyl complexes is dominated by consideration of their long-lived metal-centered excited states. Here we report the participation of the excited states of [Cr(TMP)(2)dppz](3+) (1) (TMP = 3,4,7,8-tetramethyl-1,10-phenanthroline; dppz = dipyrido[3,2-a:2′,3′-c]phenazine) in DNA photoreactions. The interactions of enantiomers of 1 with natural DNA or with oligodeoxynucleotides with varying AT content (0–100%) have been studied by steady state UV/visible absorption and luminescence spectroscopic methods, and the emission of 1 is found to be quenched in all systems. The time-resolved infrared (TRIR) and visible absorption spectra (TA) of 1 following excitation in the region between 350 to 400 nm reveal the presence of relatively long-lived dppz-centered states which eventually yield the emissive metal-centered state. The dppz-localized states are fully quenched when bound by GC base pairs and partially so in the presence of an AT base-pair system to generate purine radical cations. The sensitized formation of the adenine radical cation species (A(•+)T) is identified by assigning the TRIR spectra with help of DFT calculations. In natural DNA and oligodeoxynucleotides containing a mixture of AT and GC of base pairs, the observed time-resolved spectra are consistent with eventual photo-oxidation occurring predominantly at guanine through hole migration between base pairs. The combined targeting of purines leads to enhanced photo-oxidation of guanine. These results show that DNA photo-oxidation by the intercalated 1, which locates the dppz in contact with the target purines, is dominated by the LC centered excited state. This work has implications for future phototherapeutics and photocatalysis. American Chemical Society 2021-08-31 2021-09-15 /pmc/articles/PMC8447253/ /pubmed/34464120 http://dx.doi.org/10.1021/jacs.1c06658 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Baptista, Frederico A.
Krizsan, Dorottya
Stitch, Mark
Sazanovich, Igor V.
Clark, Ian P.
Towrie, Michael
Long, Conor
Martinez-Fernandez, Lara
Improta, Roberto
Kane-Maguire, Noel A. P.
Kelly, John M.
Quinn, Susan J.
Adenine Radical Cation Formation by a Ligand-Centered Excited State of an Intercalated Chromium Polypyridyl Complex Leads to Enhanced DNA Photo-oxidation
title Adenine Radical Cation Formation by a Ligand-Centered Excited State of an Intercalated Chromium Polypyridyl Complex Leads to Enhanced DNA Photo-oxidation
title_full Adenine Radical Cation Formation by a Ligand-Centered Excited State of an Intercalated Chromium Polypyridyl Complex Leads to Enhanced DNA Photo-oxidation
title_fullStr Adenine Radical Cation Formation by a Ligand-Centered Excited State of an Intercalated Chromium Polypyridyl Complex Leads to Enhanced DNA Photo-oxidation
title_full_unstemmed Adenine Radical Cation Formation by a Ligand-Centered Excited State of an Intercalated Chromium Polypyridyl Complex Leads to Enhanced DNA Photo-oxidation
title_short Adenine Radical Cation Formation by a Ligand-Centered Excited State of an Intercalated Chromium Polypyridyl Complex Leads to Enhanced DNA Photo-oxidation
title_sort adenine radical cation formation by a ligand-centered excited state of an intercalated chromium polypyridyl complex leads to enhanced dna photo-oxidation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8447253/
https://www.ncbi.nlm.nih.gov/pubmed/34464120
http://dx.doi.org/10.1021/jacs.1c06658
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