Klysik J, Rippe K, Jovin T M
Department of Molecular Biology, Max Planck Institute for Biophysical Chemistry, Göttingen, FRG.
Nucleic Acids Res. 1991 Dec;19(25):7145-54. doi: 10.1093/nar/19.25.7145.
DNA oligonucleotides with appropriate sequences can form a stable duplex in which the two strands are paired in a parallel orientation instead of as the conventional antiparallel double helix of B-DNA. In parallel-stranded DNA (ps-DNA) base pairing is noncanonical with the glycosidic bonds in a trans orientation. The two grooves are equivalent. We have synthesized DNA duplexes consisting of a central parallel-stranded (dA)15.(dT)15 tract flanked by normal antiparallel regions, and ligated them into the pUC18 plasmid. The effect of negative supercoiling on the covalently closed circular molecules was studied by two-dimensional agarose gel electrophoresis and by chemical modification with OsO4-pyridine (Os,py) and diethylpyrocarbonate (DEPC). The following results were obtained: (i) The ps insert, and by inference ps-DNA in general, adopts a right handed helical form. (ii) Upon increasing the negative superhelix density (-sigma) to greater than 0.03 the 15 bp ps insert undergoes a major transition leading to a relaxation corresponding to a reduction in twist of approximately 2.5 helical turns. The transition free surgery is approximately kcal/mol. (iii) The chemical modification pattern of the resulting structure suggests that the purine strand folds back and associates with the pyrimidine strand, forming a novel intramolecular triplex structure consisting of d(A.A.T) base triplets. A model for the triplex conformation is proposed and its thermodynamic properties are analyzed by statistical mechanics.
具有适当序列的DNA寡核苷酸可以形成稳定的双链体,其中两条链以平行方向配对,而不是像传统的B-DNA反平行双螺旋那样。在平行链DNA(ps-DNA)中,碱基配对是非经典的,糖苷键处于反式取向。两条沟是等效的。我们合成了由中央平行链(dA)15·(dT)15片段组成的DNA双链体,该片段两侧为正常的反平行区域,并将它们连接到pUC18质粒中。通过二维琼脂糖凝胶电泳以及用OsO4-吡啶(Os,py)和焦碳酸二乙酯(DEPC)进行化学修饰,研究了负超螺旋对共价闭合环状分子的影响。得到了以下结果:(i)ps插入片段,以及由此推断的一般ps-DNA,采用右手螺旋形式。(ii)当负超螺旋密度(-sigma)增加到大于0.03时,15 bp的ps插入片段会发生主要转变,导致松弛,对应于扭曲减少约2.5个螺旋圈。转变的自由能约为kcal/mol。(iii)所得结构的化学修饰模式表明,嘌呤链折回并与嘧啶链缔合,形成由d(A.A.T)碱基三联体组成的新型分子内三链体结构。提出了三链体构象的模型,并通过统计力学分析了其热力学性质。