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DNA中G·A碱基对的分子结构及其对颠换突变机制的影响。

Molecular structure of the G.A base pair in DNA and its implications for the mechanism of transversion mutations.

作者信息

Brown T, Hunter W N, Kneale G, Kennard O

出版信息

Proc Natl Acad Sci U S A. 1986 Apr;83(8):2402-6. doi: 10.1073/pnas.83.8.2402.

Abstract

The synthetic deoxydodecamer d(C-G-C-G-A-A-T-T-A-G-C-G) was analyzed by x-ray diffraction methods, and the structure was refined to a residual error of R = 0.17 at 2.5-A resolution (2 sigma data) with 83 water molecules located. The sequence crystallizes as a full turn of a B-DNA helix and contains 2 purine X purine (G.A) base pairs and 10 Watson-Crick base pairs. The analysis shows conclusively that adenine is in the syn orientation with respect to the sugar moiety whereas guanine adopts the usual trans orientation. Nitrogen atoms of both bases are involved in hydrogen bonding with the N-1 of guanine 2.84 A from the N-7 of adenine and the N-6 of adenine within 2.74 A of the O-6 of guanine. The C-1'...C-1' separation is 10.7 A close to that for standard Watson-Crick base pairs. The incorporation of the purine.purine base pairs at two steps in the dodecamer causes little perturbation of either the local or the global conformation of the double helix. Comparison of the structural features with those of the G.T wobble pair and the standard G.C pair suggests a rationale for the differential enzymatic repair of the two types of base-pair mismatches.

摘要

通过X射线衍射方法对合成的脱氧十二聚体d(C-G-C-G-A-A-T-T-A-G-C-G)进行了分析,在2.5埃分辨率(2σ数据)下将结构精修至残余误差R = 0.17,定位了83个水分子。该序列以B-DNA螺旋的一整圈形式结晶,包含2个嘌呤X嘌呤(G.A)碱基对和10个沃森-克里克碱基对。分析结果确凿地表明,腺嘌呤相对于糖部分处于顺式构象,而鸟嘌呤采用通常的反式构象。两个碱基的氮原子都参与氢键形成,腺嘌呤的N-7与鸟嘌呤的N-1之间的距离为2.84埃,腺嘌呤的N-6与鸟嘌呤的O-6之间的距离在2.74埃以内。C-1'...C-1'间距为10.7埃,接近标准沃森-克里克碱基对的间距。十二聚体中两步引入嘌呤-嘌呤碱基对几乎未对双螺旋的局部或整体构象造成扰动。将该结构特征与G.T摆动碱基对和标准G.C碱基对的结构特征进行比较,为两种类型碱基对错配的差异酶促修复提供了一种理论依据。

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