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反向重复DNA序列中霍利迪连接体的溶液形成

Solution formation of Holliday junctions in inverted-repeat DNA sequences.

作者信息

Hays Franklin A, Schirf Virgil, Ho P Shing, Demeler Borries

机构信息

Department of Biochemistry and Biophysics, 2011 Agricultural and Life Sciences, Oregon State University, Corvallis, Oregon 97331-7305, USA.

出版信息

Biochemistry. 2006 Feb 28;45(8):2467-71. doi: 10.1021/bi052129x.

Abstract

The structure of Holliday junctions has now been well characterized at the atomic level through single-crystal X-ray diffraction in symmetric (inverted-repeat) DNA sequences. At issue, however, is whether the formation of these four-stranded complexes in solution is truly sequence dependent in the manner proposed or is an artifact of the crystallization process and, therefore, has no relevance to the behavior of this central intermediate in homologous recombination and recombination-dependent cellular processes. Here, we apply analytical ultracentrifugation to demonstrate that the sequence d(CCGGTACCGG), which crystallizes in the stacked-X form of the junction, assembles into four-stranded junctions in solution in a manner that is dependent on the DNA and cation concentrations, with an equilibrium established between the junction and duplex forms at 100-200 microM DNA duplex. In contrast, the sequence d(CCGCTAGCGG), which has been crystallized as B-DNA, is seen to adopt only the double-helical form at all DNA and salt concentrations that were tested. Thus, the ACC trinucleotide core is now shown to be important for the formation of Holliday junctions in both crystals and in solution and can be estimated to contribute approximately -4 kcal/mol to stabilizing this recombination intermediate in inverted-repeat sequences.

摘要

通过对对称(反向重复)DNA序列进行单晶X射线衍射,现已在原子水平上对霍利迪连接体的结构进行了充分表征。然而,问题在于,这些四链复合物在溶液中的形成是否真的如所提出的那样依赖于序列,还是结晶过程的假象,因此与同源重组和依赖重组的细胞过程中这个核心中间体的行为无关。在这里,我们应用分析超速离心法来证明,以连接体的堆叠X形式结晶的序列d(CCGGTACCGG),在溶液中以依赖于DNA和阳离子浓度的方式组装成四链连接体,在100 - 200 microM DNA双链体时,连接体和双链体形式之间建立了平衡。相比之下,已结晶为B - DNA的序列d(CCGCTAGCGG),在所有测试的DNA和盐浓度下都仅呈现双螺旋形式。因此,现在表明ACC三核苷酸核心对于在晶体和溶液中形成霍利迪连接体都很重要,并且据估计,它对稳定反向重复序列中的这种重组中间体贡献约 - 4千卡/摩尔。

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