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Study of Site Specific Cleavage of Strongly Bound Hairpin DNAs by Bleomycin.

机译:博来霉素对强结合发夹DNA的位点特异性切割的研究。

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摘要

Natural products that target the DNA of cancer cells have been an important source of knowledge and understanding in the development of anticancer chemotherapeutic agents. Bleomycin (BLM) exemplifies this class of DNA damaging agent. The ability of BLM to chelate metal ions and effect oxidative damage of the deoxyribose sugar moiety of DNA has been studied extensively for four decades.;Here, the study of BLM A5 was conducted using a previously isolated library of hairpin DNAs found to bind strongly to metal free BLM. The ability of BLM to effect single-stranded was then extensively characterized on both the 3&feet; and 5&feet;-arms of the hairpin DNAs. The strongly bound DNAs were found to be efficient substrates for Fe·BLM A5-mediated cleavage. Surprisingly, the most prevalent site of damage by BLM was found to be a 5&feet;-AT-3&feet; dinucleotide sequence. This dinucleotide sequence and others generally not cleaved by BLM when examined using arbitrarily chosen DNA substrate were found in examining the library of ten hairpin DNAs. In total, 111 sites of DNA damage were found to be produced by exposure of the hairpin DNA library to Fe·BLM A5.;Also, an assay was developed with which to test the propensity of the hairpin DNAs to undergo double stranded DNA damage. Adapting methods previously described by the Povirk laboratory, one hairpin was characterized using this method. The results were in accordance with those previously reported.
机译:靶向癌细胞DNA的天然产物已成为开发抗癌化学治疗剂的重要知识和理解来源。博来霉素(BLM)就是此类DNA破坏剂的例证。 BLM螯合金属离子的能力和影响DNA的脱氧核糖糖部分氧化损伤的能力已进行了40年的广泛研究。;在这里,BLM A5的研究是使用先前分离的发夹DNA库进行的,发现该文库与DNA牢固结合无金属的BLM。然后在3&feet上广泛地描述了BLM影响单链的能力。和5英尺的发夹DNA臂。发现强结合的DNA是Fe·BLM A5介导的裂解的有效底物。出乎意料的是,发现BLM最常见的损坏部位是5&feet; -AT-3&feet;。二核苷酸序列。在检查十个发夹DNA的文库时,发现使用任意选择的DNA底物检查时,该二核苷酸序列和其他通常不被BLM切割的序列。通过将发夹DNA文库暴露于Fe·BLM A5,总共发现了111个DNA损伤位点。此外,还开发了一种检测发夹DNA遭受双链DNA损伤的倾向的检测方法。根据Povirk实验室先前描述的改编方法,使用此方法表征了一个发夹。结果与先前报道的结果一致。

著录项

  • 作者

    Segerman, Zachary.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Chemistry Biochemistry.
  • 学位 M.S.
  • 年度 2011
  • 页码 69 p.
  • 总页数 69
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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