d(GCGAXAGC)的碱基插入双链体在X位点突变(X=G, T或C)。

Jiro Kondo, Shun-ichi Umeda, Kazuhiro Fujita, Tomoko Sunami, Akio Takénaka
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引用次数: 0

摘要

含有序列d(GCGAAAGC)的DNA片段在高离子强度下以晶体状态采用碱基插入(拉链状)双链。为了研究5号残基点突变对结构的影响,用x射线晶体学测定了d(GCGAGAGC)和d(GCGATAGC)的两种晶体结构。在这两种晶体中,由晶体学上的双重对称相关的两个八聚体以反平行的方式排列并相互关联形成一个双相,这表明即使在第5个残基与其他碱基突变时,碱基插入双相也是稳定的。剪切的G3:A6对结构使两个磷酸盐骨架更靠近,并促进了A-X*-X-A*碱基插入基序的形成。这三个双键围绕着两个六价钴氯化物组装。中心的X和X*残基与不同的阳离子结合取决于碱的种类。
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The base-intercalated duplexes of d(GCGAXAGC) with mutation at X (X=G, T or C).

DNA fragments containing the sequence d(GCGAAAGC) adopt a base-intercalated (zipper-like) duplex in crystalline state at high ionic strength. To investigate effects of point mutation at the 5th residue on the structure, two crystal structures of d(GCGAGAGC) and d(GCGATAGC) have been determined by X-ray crystallography. In both crystals, the two octamers related by a crystallographic two-fold symmetry are aligned in an anti-parallel fashion and associated to each other to form a duplex, suggesting that the base-intercalated duplex is stable even when the 5th residue is mutated with other bases. The sheared G3:A6 pair formation makes the two phosphate backbones closer and facilitates formation of the A-X*-X-A* base-intercalated motif. The three duplexes are assembled around the two hexamine cobalt chlorides. The central X and X* residues are bound to a different cation depending on the kinds of bases.

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