首页> 外文OA文献 >Elucidation of the sequence-specific third-strand recognition of four Watson-Crick base pairs in a pyrimidine triple-helix motif: T.AT, C.GC, T.CG, and G.TA.
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Elucidation of the sequence-specific third-strand recognition of four Watson-Crick base pairs in a pyrimidine triple-helix motif: T.AT, C.GC, T.CG, and G.TA.

机译:阐明了嘧啶三螺旋基序中的四个Watson-Crick碱基对的序列特异性第三链识别:T.AT,C.GC,T.CG和G.TA.

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摘要

We report a specific pattern of recognition by third-strand bases for each of the four Watson-Crick base pairs within a pyrimidine triple-helix motif as determined by PAGE: T.AT, C.GC, T.CG, and G.TA. Our recognition scheme for base triplets is in agreement with previous studies. In addition, we identified another triplet, T.CG, under physiological conditions, in which formation of triple helix was observed at equimolar ratios of the third strand and duplex target. Although different nearest-neighbor effects are expected, this finding extends the base-recognition code to all 4 base pairs in double-stranded DNA under physiological conditions. Base-composition analysis of putative triplex species provided independent evidence for the formation of triplex and confirmed the base-recognition code determined by PAGE. Moreover, the formation of triplex, as detected by gel electrophoresis, was seen to be an all-or-none phenomenon, dependent upon a single-base mismatch among 21 nucleotides. This result suggests a high specificity for the recognition of double-stranded DNA by a third strand. In addition, we report the surprising finding that triplex stability depends on the length and sequence of the target duplex DNA.
机译:我们报告了通过PAGE确定的嘧啶三螺旋基序内四个Watson-Crick碱基对中的每个的第三链碱基识别的特定模式:T.AT,C.GC,T.CG和G.TA 。我们对三胞胎的识别方案与以前的研究一致。此外,我们在生理条件下鉴定了另一个三重态T.CG,其中在第三链和双链体靶的等摩尔比下观察到三重螺旋的形成。尽管预期会产生不同的近邻效应,但这一发现在生理条件下将碱基识别代码扩展到了双链DNA中的所有4个碱基对。推定的三联体物种的碱基组成分析为三联体的形成提供了独立的证据,并证实了由PAGE确定的碱基识别代码。此外,通过凝胶电泳检测到的三链体的形成被认为是全有或全无的现象,这取决于21个核苷酸之间的单碱基错配。该结果表明对第三链识别双链DNA的高度特异性。此外,我们报告了令人惊讶的发现,即三链体稳定性取决于目标双链体DNA的长度和序列。

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