【2h】

Crystal structure of a junction between two Z-DNA helices

机译:两个Z-DNA螺旋之间连接处的晶体结构

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摘要

The double helix of DNA, when composed of dinucleotide purine-pyrimidine repeats, can adopt a left-handed helical structure called Z-DNA. For reasons not entirely understood, such dinucleotide repeats in genomic sequences have been associated with genomic instability leading to cancer. Adoption of the left-handed conformation results in the formation of conformational junctions: A B-to-Z junction is formed at the boundaries of the helix, whereas a Z-to-Z junction is commonly formed in sequences where the dinucleotide repeat is interrupted by single base insertions or deletions that bring neighboring helices out of phase. B-Z junctions are shown to result in exposed nucleotides vulnerable to chemical or enzymatic modification. Here we describe the three-dimensional structure of a Z-Z junction stabilized by Zα, the Z-DNA binding domain of the RNA editing enzyme ADAR1. We show that the junction structure consists of a single base pair and leads to partial or full disruption of the helical stacking. The junction region allows intercalating agents to insert themselves into the left-handed helix, which is otherwise resistant to intercalation. However, unlike a B-Z junction, in this structure the bases are not fully extruded, and the stacking between the two left-handed helices is not continuous.
机译:由双核苷酸嘌呤-嘧啶重复序列组成的DNA双螺旋结构可以采用称为Z-DNA的左手螺旋结构。由于尚未完全理解的原因,这样的基因组序列中的二核苷酸重复已经与导致癌症的基因组不稳定性相关。左手构象的采用导致构象连接的形成:在螺旋的边界处形成B-Z连接,而Z-Z连接通常在二核苷酸重复被中断的序列中形成通过单碱基插入或缺失使相邻的螺旋异相。已显示B-Z连接会导致暴露的核苷酸易受化学或酶促修饰作用。在这里,我们描述了由Zα(RNA编辑酶ADAR1的Z-DNA结合结构域)稳定的Z-Z连接的三维结构。我们表明,结结构由单个碱基对组成,并导致螺旋堆叠的部分或全部破坏。连接区域允许嵌入剂将其自身插入左手螺旋中,否则该螺旋可抗嵌入。但是,与B-Z结不同,在这种结构中,碱基没有完全挤出,并且两个左手螺旋之间的堆积不连续。

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