1970
DOI: 10.1080/09553007014550481
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The Interaction of Caffeine with Ultra-violet-light-irradiated DNA

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1972
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Cited by 91 publications
(25 citation statements)
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“…the DNA structure contains a single-stranded region of this length, where theophylline can bind, thereby inhibiting the enzyme systems. This mechanism is similar to that proposed for caffeine [26,22].…”
Section: Model For Repair With One-enzyme Systemsupporting
confidence: 58%
See 1 more Smart Citation
“…the DNA structure contains a single-stranded region of this length, where theophylline can bind, thereby inhibiting the enzyme systems. This mechanism is similar to that proposed for caffeine [26,22].…”
Section: Model For Repair With One-enzyme Systemsupporting
confidence: 58%
“…Theophylline differs structurally from caffeine only by the absence of one methyl group. Caffeine has been shown to bind to single-stranded DNA but not to double-stranded DNA [25,26]. It is assumed that theophylline acts in a similar manner.…”
Section: Model For Repair With One-enzyme Systemmentioning
confidence: 99%
“…KUHLMANN et al (1968) have suggested a similar mechanism for the production of aberrations by caffeine. Whereas such a mechanism is quite compatible with chemical data on the effects of alkylating agents on DNA (for discussion and references, see KIHLMAN 1971b) it does not agree well with the data on the interaction between caffeine and DNA (Ts 'o et al 1962;Ts'o and Lu 1964;DOMON et al 1970).…”
Section: Discussionmentioning
confidence: 56%
“…That the first mechanism probably is the more specific one is indicated by: ( I ) the type of aberration produced (exchanges), (2) the ATP dependence, (3) the unusual relationship between effect and temperature (effect increasing with decreasing temperature) and, (4) the fact that the effectiveness of the methylated oxypurines is strongly influenced by variations in their molecular structure (see also KIHLMAN 1952). In the first article in this series (KIHLMAN et al 1971), it was suggested that the exchange-process induced by methylated oxypurines in root-tip cells is a result of the ability of these substances to combine with singlestranded DNA (Ts'o et al 1962;Ts'o and Lu 1964;DOMON et al 1970). More details about the proposed mechanism for production of exchanges can be found in the fore-mentioned paper (KIHLMAN et al 1971).…”
Section: Discussionmentioning
confidence: 99%
“…Caffeine is an effective repair inhibitor in phages (31), bacteria (19, 23 and review 35), yeasts (1, 6-8, 18, 25, 26) and mammalian cells (e.g., 27), as shown by the marked decrease of survivors when cells are exposed to caffeine immediately after U V-irradiation This lethal-enhancing effect of caffeine is explained by its binding to denatured regions of DNA (5,37) and probably by consequent inhibition of the action of enzymes responsible for repair of DNA (see review 20) This study was designed to investigate dark reactivation in human mycoplasma cells with the aid of caffeine The results indicate that Mycoplasma buccale possesses the function of dark reactivation.…”
mentioning
confidence: 99%