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Separation of random fragments of DNA according to properties of their sequences.

机译:根据DNA序列的随机性质进行分离。

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摘要

The separation of DNA fragments by electrophoresis at high temperature in a denaturing gradient is independent of the length of the fragments. We have suggested that the basis of fragment separation is that each DNA molecule undergoes partial melting as it encounters a concentration of denaturants sufficient to melt its least stable sequence, while other sequences remain double stranded; in the partially melted configuration, DNA can continue migration only slowly. This model is consistent with the observation that fragments of lambda phage DNA cleaved by different restriction endonucleases reach the same final depth in the gel if they contain the same least-stable sequence. A unique set of bands is produced from the electrophoresis of randomly fragmented DNA; this would be expected if there were a limited number of melting centers occupying discrete genetic loci. An intact DNA molecule penetrates about as deeply into the gel as the uppermost band after fragmentation; this would be expected only if the least-stable sequence controls the final depth of the whole molecule.
机译:在高温下以变性梯度电泳分离DNA片段与片段的长度无关。我们已经提出,片段分离的基础是每个DNA分子都经历部分融解,因为它遇到足以使其最不稳定的序列融化的变性剂浓度,而其他序列则保持双链。在部分融化的构型中,DNA只能继续缓慢迁移。该模型与以下观察结果一致:如果包含相同的最低稳定序列,则被不同的限制性核酸内切酶切割的λ噬菌体DNA片段在凝胶中的最终深度相同。随机片段化的DNA电泳产生一组独特的条带;如果有数量有限的熔解中心占据了离散的基因位点,这是可以预期的。完整的DNA分子像断裂后的最上面的条带一样深入到凝胶中。仅当最不稳定的序列控制整个分子的最终深度时,才可以预期到这一点。

著录项

  • 作者

    Fischer, S G; Lerman, L S;

  • 作者单位
  • 年度 1980
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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