Germann M W, Kalisch B W, van de Sande J H
Department of Medical Biochemistry, University of Calgary, Alberta, Canada.
Biochemistry. 1988 Nov 1;27(22):8302-6. doi: 10.1021/bi00422a002.
We have recently shown that DNA containing homopolymeric A-T base pairs can form a parallel-stranded intramolecular duplex [van de Sande et al. (1988) Science (Washington, D.C.) 241, 551-557]. In the present paper, we demonstrate that parallel-stranded DNA can also be formed in unconstrained bimolecular DNA of appropriate sequence homology. Three deoxyoligonucleotides, a 21-mer [dCCCATATATATTTTTTTTCCC], a ps-15-mer [dTATATATAAAAAAAA], and an aps-15-mer [dAAAAAAAATATATAT], have been synthesized. Annealing of 21-mer and aps-15-mer results in the formation of a conventional antiparallel duplex (aps); however, the combination of 21-mer and ps-15-mer forms a duplex in which the two strands are in a parallel orientation (ps). The parallel-stranded structure was established from the following criteria: (i) The parallel-stranded structure shows a 1:1 stoichiometry of the constituent strands. (ii) Gel electrophoretic mobility of the ps and aps duplexes are similar under native conditions. (iii) Spectroscopic properties of the ps duplex are characteristics for a base-paired structure but are different from the aps structure. (iv) Both duplexes undergo a thermally induced helix to coil transition; however, the melting temperature for the ps duplex is 22 degrees C lower. (v) The minor groove binding drug Hoechst 33258 shows a reduced affinity for the ps compared to the aps duplex. (vi) The parallel-stranded duplex is not a substrate for DNA Escherichia coli polymerase I (Klenow fragment) or AMV reverse transcriptase. Parallel-stranded DNA can exist under normal solution conditions, but competition experiments show it to be thermodynamically less favorable than the conventional antiparallel form.
我们最近发现,含有同聚A-T碱基对的DNA能够形成平行链状的分子内双链体[范德桑德等人(1988年),《科学》(华盛顿特区),241卷,551 - 557页]。在本文中,我们证明了在具有适当序列同源性的无约束双分子DNA中也能形成平行链状DNA。我们合成了三种脱氧寡核苷酸,一种21聚体[dCCCATATATATTTTTTTTCCC]、一种ps - 15聚体[dTATATATAAAAAAAA]和一种aps - 15聚体[dAAAAAAAATATATAT]。21聚体与aps - 15聚体退火会形成传统的反平行双链体(aps);然而,21聚体与ps - 15聚体组合则形成一种双链体,其中两条链呈平行方向(ps)。平行链状结构是根据以下标准确定的:(i)平行链状结构显示组成链的化学计量比为1:1。(ii)在天然条件下,ps和aps双链体的凝胶电泳迁移率相似。(iii)ps双链体的光谱性质是碱基配对结构的特征,但与aps结构不同。(iv)两种双链体都经历热诱导的螺旋到线圈转变;然而,ps双链体的解链温度低22摄氏度。(v)与aps双链体相比,小沟结合药物Hoechst 33258对ps的亲和力降低。(vi)平行链状双链体不是大肠杆菌DNA聚合酶I(克列诺片段)或禽成髓细胞瘤病毒逆转录酶的底物。平行链状DNA可以在正常溶液条件下存在,但竞争实验表明它在热力学上不如传统的反平行形式有利。