Brown James, Brown Tom, Fox Keith R
Division of Biochemistry and Molecular Biology, School of Biological Sciences, University of Southampton, Bassett Crescent East, Southampton SO16 7PX, UK.
Biochem J. 2003 May 1;371(Pt 3):697-708. doi: 10.1042/BJ20021847.
We prepared synthetic 50-mer DNA duplexes, each containing four mismatched base-pairs in similar positions. We examined their cleavage by DNases I and II, micrococcal nuclease (MNase), methidiumpropyl-EDTA-Fe(II) [MPE-Fe(II)] and hydroxyl radicals. We find that single mismatches only produce subtle changes in the DNase I-cleavage pattern, the most common of which is attenuated cleavage at locations 2-3 bases on the 3'-side of the mismatch. Subtle changes are also observed in most of the DNase II-cleavage patterns, although GT and GG inhibit the cleavage over longer regions and generate patterns that resemble footprints. MNase cleaves the heteroduplexes at the mismatches themselves (except for CC), and in some cases cleaves CpG and CpC steps. None of the mismatches causes any change in the cleavage patterns produced by hydroxyl radicals or MPE-Fe(II). We also examined the cleavage patterns of fragments containing tandem GA mismatches in the sequences RGAY/RGAY and YGAR/YGAR (R, purine; Y, pyrimidine). RGAY causes only subtle changes in the cleavage patterns, which are similar to those seen with single mismatches, except that there are no changes in MNase cleavage. However, YGAR inhibits DNases I and II cleavage over 4-6 bases, and attenuates MPE-Fe(II) and hydroxyl radical cleavage at 2 bases. These changes suggest that this mismatch has a more pronounced effect on the local DNA structure. These changes are discussed in terms of the structural and dynamic effects of each mismatch.
我们制备了合成的50聚体DNA双链体,每个双链体在相似位置含有四个错配碱基对。我们检测了它们被脱氧核糖核酸酶I和II、微球菌核酸酶(MNase)、甲基丙基-乙二胺四乙酸-铁(II)[MPE-Fe(II)]和羟基自由基的切割情况。我们发现单个错配仅在脱氧核糖核酸酶I的切割模式中产生细微变化,其中最常见的是在错配3'侧2 - 3个碱基位置处的切割减弱。在大多数脱氧核糖核酸酶II的切割模式中也观察到细微变化,尽管GT和GG在更长区域抑制切割并产生类似足迹的模式。MNase在错配本身(CC除外)处切割异源双链体,并且在某些情况下切割CpG和CpC步。没有任何错配会导致羟基自由基或MPE-Fe(II)产生的切割模式发生任何变化。我们还检测了在序列RGAY/RGAY和YGAR/YGAR(R,嘌呤;Y,嘧啶)中含有串联GA错配的片段的切割模式。RGAY仅在切割模式中产生细微变化,这与单个错配的情况相似,只是MNase切割没有变化。然而,YGAR在4 - 6个碱基上抑制脱氧核糖核酸酶I和II的切割,并在2个碱基处减弱MPE-Fe(II)和羟基自由基的切割。这些变化表明这种错配对局部DNA结构有更显著的影响。根据每个错配的结构和动力学效应讨论了这些变化。