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Replication of hepatic DNA in rats treated with dimethylnitrosamine
Abstract:
Replication of DNA containing unrepaired lesions such as depurinated sites, single-strand breaks or methylated bases such as O-6 and N-7 methylguanine was studied in the rat liver. Rat liver DNA was damaged by administering 10 mug dimethylnitrosamine (DMN)/g body wt i.p. 4 h prior to partial hepatectomy. The analysis of DNA on alkaline sucrose gradient revealed considerable damage to the parental strand at the time of and 48 h subsequent to partial hepatectomy. During this time interval, the synthesis of new strands was studied using labeled thymidine. In the control liver, radioactivity in DNA appeared as small fragments at 15 and 30 min following the administration of labeled thymidine which became bigger within 4 h. In the carcinogen-treated livers, the newly made DNA remained as small fragments for longer periods of time. Sometime between 4 and 24 h these became bigger in size than the parental damaged template DNA. Thus, with a delay, the newly made strands became eventually bigger, in spite of the fact that the parental template DNA strand was damaged. Such replication of DNA with unrepaired lesions (miscoding and/or non-coding) offers a mechanism by which the original damage to DNA caused by the carcinogen can be permanently imprinted on the newly made cell, a phenomenon that could account for the initiation of carcinogenesis under certain circumstances.
Insights
Rat liver DNA replication occurred despite unrepaired damage from dimethylnitrosamine (DMN). Newly synthesized DNA strands eventually grew larger, potentially imprinting damage and initiating carcinogenesis.
Area of Science:
- Molecular Biology
- Carcinogenesis Research
- Genetics
Background:
- DNA damage from carcinogens like dimethylnitrosamine (DMN) can persist.
- Understanding DNA replication fidelity in the presence of unrepaired lesions is crucial for carcinogenesis research.
Purpose of the Study:
- To investigate DNA replication in rat liver containing unrepaired lesions.
- To elucidate the mechanism by which DNA damage is propagated during replication.
Main Methods:
- Rat liver DNA was damaged using dimethylnitrosamine (DMN).
- DNA integrity and replication were analyzed using alkaline sucrose gradients and labeled thymidine.
Main Results:
- Significant damage to parental DNA strands was observed post-DMN administration and hepatectomy.
- Newly synthesized DNA in DMN-treated livers remained fragmented longer than in controls.
- Despite parental DNA damage, newly synthesized strands eventually increased in size, albeit with a delay.
Conclusions:
- Replication of DNA with unrepaired lesions can occur, leading to delayed maturation of new strands.
- This process may permanently imprint carcinogen-induced DNA damage onto daughter cells.
- This mechanism offers insight into the initiation of carcinogenesis.