Related Experiment Videos
Persistent and heritable structural damage induced in heterochromatic DNA from rat liver by N-nitrosodimethylamine
Abstract:
Analysis, by benzoylated DEAE-cellulose chromatography, has been made of structural change in eu- and heterochromatic DNA from rat liver following administration of the carcinogen N-nitrosodimethylamine (10 mg/kg body weight). Either hepatic DNA was prelabeled with [3H]thymidine administered 2-3 weeks before injection of the carcinogen or the labeled precursor was given during regenerative hyperplasia in rats treated earlier with N-nitrosodimethylamine. Following phenol extraction of either whole liver homogenate or nuclease-fractionated eu- and heterochromatin, carcinogen-modified DNA was examined by stepwise or caffeine gradient elution from benzoylated DEAE-cellulose. In whole DNA, nitrosamine-induced single-stranded character was maximal 4-24 h after treatment, declining rapidly thereafter; gradient elution of these DNA preparations also provided short-term evidence of structural change. Following incubation of purified nuclei with micrococcal nuclease, 10-12% of labeled DNA was solubilized (eu-chromatin) by 1.0 unit of micrococcal nuclease (5 mg of DNA)-1 mL-1 after 9 min. In prelabeled animals, administration of N-nitrosodimethylamine caused a marked fall in the specific radioactivity of solubilized DNA, while that of sedimenting DNA was not affected. Caffeine gradient chromatography suggested short-term nitrosamine-induced structural change in euchromatic DNA, while increased binding of heterochromatic DNA was evident for up to 3 months after carcinogen treatment. Preparations of newly synthesized heterochromatic DNA from animals subjected to hepatectomy up to 2 months after carcinogen treatment provided evidence of heritable structural damage. Carcinogen-induced binding of heterochromatic DNA to benzoylated DEAE-cellulose was indicative of specific structural lesions whose affinity equalled that of single-stranded DNA up to 1.0 kilobase in length.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
N-nitrosodimethylamine carcinogen exposure alters DNA structure in rat liver. Heterochromatic DNA shows persistent damage and heritable changes, indicating long-term structural lesions.
Area of Science:
- Biochemistry
- Molecular Biology
- Toxicology
Background:
- Carcinogen exposure can induce DNA damage.
- Understanding DNA structural changes is crucial for assessing carcinogen effects.
- Differential DNA accessibility in euchromatin and heterochromatin may influence damage patterns.
Purpose of the Study:
- To analyze structural alterations in euchromatic and heterochromatic DNA after N-nitrosodimethylamine administration.
- To investigate the temporal dynamics and heritability of carcinogen-induced DNA damage.
Main Methods:
- Benzoylated DEAE-cellulose chromatography for DNA structural analysis.
- Analysis of DNA from pre-labeled rats and during regenerative hyperplasia.
- Fractionation of euchromatin and heterochromatin using micrococcal nuclease.
Main Results:
- N-nitrosodimethylamine induced transient single-stranded character in whole DNA within 24 hours.
- Euchromatic DNA showed short-term structural changes, while heterochromatic DNA exhibited increased binding for up to 3 months.
- Newly synthesized heterochromatic DNA revealed heritable structural damage up to 2 months post-treatment.
Conclusions:
- N-nitrosodimethylamine causes distinct short-term and long-term structural DNA modifications.
- Heterochromatin is particularly susceptible to persistent and heritable damage from this carcinogen.
- Benzoylated DEAE-cellulose chromatography is effective in detecting specific DNA lesions.