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Photobiological studies with dioxetanes in isolated DNA, bacteria, and mammalian cells.

1,2-Dioxetanes, efficient chemical sources of triplet excited carbonyl compounds, were observed to be genotoxic in isolated DNA, bacteria, and cultured mammalian cells. In superhelical DNA of bacteriophage PM2, various alkyl- and hydroxyalkyl-substituted dioxetanes (1) induced predominantly endonucl...

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Autores principales: Adam, W, Beinhauer, A, Mosandl, T, Saha-Möller, C, Vargas, F, Epe, B, Müller, E, Schiffmann, D, Wild, D
Formato: Texto
Lenguaje:English
Publicado: 1990
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1568003/
https://www.ncbi.nlm.nih.gov/pubmed/2125562
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author Adam, W
Beinhauer, A
Mosandl, T
Saha-Möller, C
Vargas, F
Epe, B
Müller, E
Schiffmann, D
Wild, D
author_facet Adam, W
Beinhauer, A
Mosandl, T
Saha-Möller, C
Vargas, F
Epe, B
Müller, E
Schiffmann, D
Wild, D
author_sort Adam, W
collection PubMed
description 1,2-Dioxetanes, efficient chemical sources of triplet excited carbonyl compounds, were observed to be genotoxic in isolated DNA, bacteria, and cultured mammalian cells. In superhelical DNA of bacteriophage PM2, various alkyl- and hydroxyalkyl-substituted dioxetanes (1) induced predominantly endonuclease-sensitive base modifications and only few single strand breaks. With a specific endonuclease a small fraction of the base modifications was identified as pyrimidine dimers. The psoralen dioxetane (2a) or PsD bound photochemically to calf thymus DNA at the alpha-pyrone ring of psoralen (fluorescence measurements). Photobinding was also observed when calf thymus DNA was incubated with psoralen and 3-hydroxymethyl-3,4,4-trimethyl-1,2-dioxetane. In Syrian hamster embryo fibroblasts and HL-60 cells, dioxetanes induced DNA single strand breaks. The alkyl- and hydroxyalkyl-substituted dioxetanes 1 and 2 were efficiently inactivated by cysteine, glutathione, ascorbic acid, tocopherol, NADH and FADH2. While dioxetanes 1 and 2 were not mutagenic in Salmonella typhimurium strain TA100, benzofuran dioxetanes 3 exhibited substantial effects. Further data imply that presumably a mutagenic intermediate with a lifetime of a few minutes is produced from the benzofuran dioxetane.
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spelling pubmed-15680032006-09-18 Photobiological studies with dioxetanes in isolated DNA, bacteria, and mammalian cells. Adam, W Beinhauer, A Mosandl, T Saha-Möller, C Vargas, F Epe, B Müller, E Schiffmann, D Wild, D Environ Health Perspect Research Article 1,2-Dioxetanes, efficient chemical sources of triplet excited carbonyl compounds, were observed to be genotoxic in isolated DNA, bacteria, and cultured mammalian cells. In superhelical DNA of bacteriophage PM2, various alkyl- and hydroxyalkyl-substituted dioxetanes (1) induced predominantly endonuclease-sensitive base modifications and only few single strand breaks. With a specific endonuclease a small fraction of the base modifications was identified as pyrimidine dimers. The psoralen dioxetane (2a) or PsD bound photochemically to calf thymus DNA at the alpha-pyrone ring of psoralen (fluorescence measurements). Photobinding was also observed when calf thymus DNA was incubated with psoralen and 3-hydroxymethyl-3,4,4-trimethyl-1,2-dioxetane. In Syrian hamster embryo fibroblasts and HL-60 cells, dioxetanes induced DNA single strand breaks. The alkyl- and hydroxyalkyl-substituted dioxetanes 1 and 2 were efficiently inactivated by cysteine, glutathione, ascorbic acid, tocopherol, NADH and FADH2. While dioxetanes 1 and 2 were not mutagenic in Salmonella typhimurium strain TA100, benzofuran dioxetanes 3 exhibited substantial effects. Further data imply that presumably a mutagenic intermediate with a lifetime of a few minutes is produced from the benzofuran dioxetane. 1990-08 /pmc/articles/PMC1568003/ /pubmed/2125562 Text en
spellingShingle Research Article
Adam, W
Beinhauer, A
Mosandl, T
Saha-Möller, C
Vargas, F
Epe, B
Müller, E
Schiffmann, D
Wild, D
Photobiological studies with dioxetanes in isolated DNA, bacteria, and mammalian cells.
title Photobiological studies with dioxetanes in isolated DNA, bacteria, and mammalian cells.
title_full Photobiological studies with dioxetanes in isolated DNA, bacteria, and mammalian cells.
title_fullStr Photobiological studies with dioxetanes in isolated DNA, bacteria, and mammalian cells.
title_full_unstemmed Photobiological studies with dioxetanes in isolated DNA, bacteria, and mammalian cells.
title_short Photobiological studies with dioxetanes in isolated DNA, bacteria, and mammalian cells.
title_sort photobiological studies with dioxetanes in isolated dna, bacteria, and mammalian cells.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1568003/
https://www.ncbi.nlm.nih.gov/pubmed/2125562
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