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首页> 外文期刊>Journal of Molecular Biology >CENTROMERIC DODECA-SATELLITE DNA SEQUENCES FORM FOLD-BACK STRUCTURES
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CENTROMERIC DODECA-SATELLITE DNA SEQUENCES FORM FOLD-BACK STRUCTURES

机译:中心十二碳-卫星DNA序列形成折回结构

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摘要

The evolutionarily conserved centromeric dodeca-satellite DNA has an asymmetric distribution of guanine and cytosine residues resulting in one strand being relatively G-rich. This dodeca-satellite G-strand contains a GGGA-tract that is similar to the homopurine tracts found in most telomeric DNA sequences. Here, we show that the dodeca-satellite G-strand forms intramolecular hairpin structures that are stabilized by the formation of non-Watson-Crick G(.)A pairs as well as regular Watson-Crick G(.)C pairs. Special stacking interactions are also likely to contribute significantly to the stability of this structure. This hairpin conformation melts at relatively high temperature, around 75 degrees C, and is detected under many different ionic and pH conditions. As judged by electron microscopy visualization, these structures can be formed in a B-DNA environment. Under the same experimental conditions, neither the C-strand nor the double-stranded dodeca-satellite DNA were found to form any unusual DNA structure. A protein activity has been detected that preferentially binds to the single-stranded dodeca-satellite C-strand. The biological relevance of these results is discussed in view of the similarities to telomeric DNA. [References: 60]
机译:进化上保守的着丝粒十二聚体DNA具有鸟嘌呤和胞嘧啶残基的不对称分布,导致一条链的G相对丰富。该十二卫星G链包含的GGGA片段与大多数端粒DNA序列中的高嘌呤片段相似。在这里,我们显示十二烷基G链形成分子内发夹结构,该结构通过非Watson-Crick G(。)A对和常规Watson-Crick G(.C)对的形成而稳定。特殊的堆叠相互作用也可能极大地促进这种结构的稳定性。该发夹构象在约75摄氏度的较高温度下熔化,并在许多不同的离子和pH条件下被检测到。通过电子显微镜可视化判断,这些结构可以在B-DNA环境中形成。在相同的实验条件下,既没有发现C链也没有发现十二链卫星双链DNA形成任何异常的DNA结构。已检测到优先结合单链十二卫星C链的蛋白质活性。鉴于与端粒DNA的相似性,讨论了这些结果的生物学相关性。 [参考:60]

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