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类重组基序中DNA三链体的证据:I. 高稳定性三链体中天然碱基对沃森-克里克碱基对的识别

Evidence for a DNA triplex in a recombination-like motif: I. Recognition of Watson-Crick base pairs by natural bases in a high-stability triplex.

作者信息

Walter A, Schütz H, Simon H, Birch-Hirschfeld E

机构信息

Institute of Molecular Biology, Friedrich-Schiller-University Jena, Jena, Germany.

出版信息

J Mol Recognit. 2001 Mar-Apr;14(2):122-39. doi: 10.1002/jmr.528.

Abstract

Data are presented on a triplex type with two parallel homologous strands for which triplex formation is almost as strong as duplex formation at least for some sequences and even at pH 7 and 0.2 M NaCl. The evidence mainly rests upon comparing thermodynamic properties of similar systems. A paperclip oligonucleotide d(A12C4T12C4A12) with two linkers C4 obviously can form a triplex with parallel back-folded adenine strand regions, because the single melting transition of this complex splits in two transitions by introducing mismatches only in the third strand region. Respectively, a hairpin duplex d(A12C4T12) and a single strand d(A12) form a triplex as a 1:1 complex in which the second adenine strand is parallel oriented to the homologous one in the Watson-Crick paired duplex. In this system the melting temperature T(m) of the triplex is practically the same as that of the duplex d(A12)-d(T12), at least within a complex concentration range of 0.2-4.0 microM. The melting behaviour of complexes between triplex stabilizing ligand BePI and the system hairpin duplex plus single strand supports the triplex model. Non-denaturing gel electrophoresis suggests the existence of a triplex for a system in which five of the twelve A-TA base triads are substituted by C-GC base triads. The recognition between any substituted Watson-Crick base pair (X-Y) in the hairpin duplex d(A4XA7C4T7YT4) and the correspondingly replaced base (Z) in the third strand d(A4ZA7) is mutually selective. All triplexes with matching base substitutions (Z = X) have nearly the same stability (T(m) values from 29 to 33.5 degrees C), whereas triplexes with non-matching substitutions (Z not equal X) show a clearly reduced stability (T(m) values from 15 to 22 degrees C) at 2microM equimolar oligonucleotide concentration. Most nucleic acid triple helices hitherto known are limited to homopurine-homopyrimidine sequences in the target duplex. A stable triplex formation is demonstrated for inhomogeneous sequences tolerating at least 50% pyrimidine content in the homologous strands. On the basis of the surprisingly similar thermodynamic parameters for duplex and triplex, and of the fact that this triplex type seems to be more stable than many other natural DNA triplexes known, and on the basis of semiempirical and molecule mechanical calculations, we postulate bridging interactions of the third strand with the two other strands in the triplex according to the recombination motif. This triplex, denoted by us 'recombination-like form', tolerates heterogeneous base sequences.

摘要

本文介绍了一种三链体类型,其具有两条平行的同源链,对于某些序列而言,至少在pH 7和0.2M NaCl条件下,三链体形成的强度几乎与双链体形成的强度相同。证据主要基于对相似系统热力学性质的比较。带有两个C4连接子的回形针寡核苷酸d(A12C4T12C4A12)显然可以与平行回折的腺嘌呤链区域形成三链体,因为该复合物的单一解链转变通过仅在第三条链区域引入错配而分裂为两个转变。相应地,发夹双链体d(A12C4T12)和单链d(A12)形成1:1复合物的三链体,其中第二条腺嘌呤链与沃森-克里克配对双链体中的同源链平行排列。在该系统中,三链体的解链温度T(m)实际上与双链体d(A12)-d(T12)的解链温度相同,至少在0.2 - 4.0μM的复合物浓度范围内如此。三链体稳定配体BePI与发夹双链体加单链系统之间复合物的解链行为支持了三链体模型。非变性凝胶电泳表明,对于一个系统,其中十二个A-TA碱基三联体中的五个被C-GC碱基三联体取代时,存在三链体。发夹双链体d(A4XA7C4T7YT4)中任何取代的沃森-克里克碱基对(X-Y)与第三条链d(A4ZA7)中相应取代的碱基(Z)之间的识别是相互选择性的。所有具有匹配碱基取代(Z = X)的三链体具有几乎相同的稳定性(解链温度T(m)值为29至33.5℃),而具有不匹配取代(Z≠X)的三链体在2μM等摩尔寡核苷酸浓度下显示出明显降低的稳定性(解链温度T(m)值为15至22℃)。迄今为止已知的大多数核酸三螺旋仅限于靶双链体中的同型嘌呤-同型嘧啶序列。对于同源链中嘧啶含量至少为50%的非均匀序列,也证明了稳定的三链体形成。基于双链体和三链体惊人相似的热力学参数,以及这种三链体类型似乎比许多已知的其他天然DNA三链体更稳定这一事实,并基于半经验和分子力学计算,我们根据重组基序推测第三条链与三链体中另外两条链之间的桥连相互作用。这种三链体,我们称之为“类重组形式”,能够耐受异质碱基序列。

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