首页> 美国卫生研究院文献>Biophysical Journal >Bifilar enzyme-sensitive sites in ultraviolet-irradiated DNA are indicative of closely opposed cyclobutyl pyrimidine dimers.
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Bifilar enzyme-sensitive sites in ultraviolet-irradiated DNA are indicative of closely opposed cyclobutyl pyrimidine dimers.

机译:紫外线照射的DNA中的双歧酶敏感位点指示环丁基嘧啶二聚体紧密相对。

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摘要

Incubation of UV-irradiated DNA with pyrimidine dimer-DNA glycosylase in cell-free lysates prepared from Micrococcus luteus results in the appearance of double-strand breaks. It has previously been assumed that such double-strand breaks result from cleavage at closely opposed dimers. We have used hybrid molecules of bacteriophage T7 DNA comprised of two unirradiated strands, two UV-irradiated strands, or one unirradiated and one UV-irradiated strand to test this hypothesis. Bifilar cleavage was observed only with molecules consisting of two irradiated strands and no bifilar cleavage was observed after the monomerization of pyrimidine dimers by enzymatic photoreactivation. Our results indicate that at least 80% of the double-strand breaks result from cleavage at closely opposed dimers and that the induction of dimers in one strand does not influence the induction of dimers at closely opposed positions in the complementary strand of a DNA double helix.
机译:在用微球菌制备的无细胞裂解物中,用嘧啶二聚体-DNA糖基化酶与紫外线照射的DNA孵育,会导致双链断裂的出现。先前已经假定这种双链断裂是由于在紧密相对的二聚体上的切割而引起的。我们使用了由两条未辐照链,两条紫外线辐照链或一条未经辐照和一条紫外线辐照的链组成的噬菌体T7 DNA杂合分子来检验这一假设。仅嘧啶二聚体通过酶促光活化被单体化后,双分子裂解仅由两条辐照链组成的分子观察到,双丝裂解未观察到。我们的结果表明,至少80%的双链断裂是由于在紧密相对的二聚体上的切割而引起的,并且一条链中的二聚体的诱导不会影响DNA双螺旋互补链中紧密相对的位置处的二聚体的诱导。 。

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