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猴细胞α-DNA中化学加合物修复缺陷。

Deficient repair of chemical adducts in alpha DNA of monkey cells.

作者信息

Zolan M E, Cortopassi G A, Smith C A, Hanawalt P C

出版信息

Cell. 1982 Mar;28(3):613-9. doi: 10.1016/0092-8674(82)90216-1.

Abstract

We have examined excision repair of DNA damage in the highly repeated alpha DNA sequence of cultured African green monkey cells. Irradiation of cells with 254 nm ultraviolet light resulted in the same frequency of pyrimidine dimers in alpha DNA and the bulk of the DNA. The rate and extent of pyrimidine dimer removal, as judged by measurement of repair synthesis, was also similar for alpha DNA and bulk DNA. In cells treated with furocoumarins and long-wave-length ultraviolet light, however, repair synthesis in alpha DNA was only 30% of that in bulk DNA, although it followed the same time course. We found that this reduced repair was not caused by different initial amounts of furocoumarin damage or by different sizes of repair patches, as we found these to be similar in the two DNA species. Direct quantification demonstrated that fewer furocoumarin adducts were removed from alpha DNA than from bulk DNA. In cells treated with another chemical DNA-damaging agent, N-acetoxy-2-acetylaminofluorene, repair synthesis in alpha DNA was 60% of that in bulk DNA. These results show that the repair of different kinds of DNA damage can be affected to different extents by some property of this tandemly repeated heterochromatic DNA. To our knowledge, this is the first demonstration in primate cells of differential repair of cellular DNA sequences.

摘要

我们研究了培养的非洲绿猴细胞高度重复的α DNA序列中DNA损伤的切除修复情况。用254 nm紫外线照射细胞后,α DNA和大部分DNA中嘧啶二聚体的频率相同。通过测量修复合成来判断,α DNA和大部分DNA中嘧啶二聚体的去除速率和程度也相似。然而,在用补骨脂素和长波长紫外线处理的细胞中,尽管α DNA中的修复合成与大部分DNA中的修复合成遵循相同的时间进程,但其修复合成仅为大部分DNA的30%。我们发现这种修复减少并非由补骨脂素损伤的初始量不同或修复片段大小不同所致,因为我们发现这两种DNA中的这些情况相似。直接定量表明,从α DNA中去除的补骨脂素加合物比从大部分DNA中去除的少。在用另一种化学DNA损伤剂N - 乙酰氧基 - 2 - 乙酰氨基芴处理的细胞中,α DNA中的修复合成是大部分DNA的60%。这些结果表明,这种串联重复的异染色质DNA的某些特性会在不同程度上影响不同类型DNA损伤的修复。据我们所知,这是灵长类细胞中细胞DNA序列差异修复的首次证明。

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