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B型DNA十聚体中的螺旋几何结构、水合作用及G·A错配

Helix geometry, hydration, and G.A mismatch in a B-DNA decamer.

作者信息

Privé G G, Heinemann U, Chandrasegaran S, Kan L S, Kopka M L, Dickerson R E

机构信息

Molecular Biology Institute, University of California, Los Angeles 90024.

出版信息

Science. 1987 Oct 23;238(4826):498-504. doi: 10.1126/science.3310237.

DOI:10.1126/science.3310237
PMID:3310237
Abstract

The DNA double helix is not a regular, featureless barberpole molecule. Different base sequences have their own special signature, in the way that they influence groove width, helical twist, bending, and mechanical rigidity or resistance to bending. These special features probably help other molecules such as repressors to read and recognize one base sequence in preference to another. Single crystal x-ray structure analysis is beginning to show us the various structures possible in the B-DNA family. The DNA decamer C-C-A-A-G-A-T-T-G-G appears to be a better model for mixed-sequence B-DNA than was the earlier C-G-C-G-A-A-T-T-C-G-C-G, which is more akin to regions of poly(dA).poly(dT). The G.A mismatch base pairs at the center of the decamer are in the anti-anti conformation about their bonds from base to sugar, in agreement with nuclear magnetic resonance evidence on this and other sequences, and in contrast to the anti-syn geometry reported for G.A pairs in C-G-C-G-A-A-T-T-A-G-C-G. The ordered spine of hydration seen earlier in the narrow-grooved dodecamer has its counterpart, in this wide-grooved decamer, in two strings of water molecules lining the walls of the minor groove, bridging from purine N3 or pyrimidine O2, to the following sugar O4'. The same strings of hydration are present in the phosphorothioate analog of G-C-G-C-G-C. Unlike the spine, which is broken up by the intrusion of amine groups at guanines, these water strings are found in general, mixed-sequence DNA because they can pass by unimpeded to either side of a guanine N2 amine. The spine and strings are perceived as two extremes of a general pattern of hydration of the minor groove, which probably is the dominant factor in making B-DNA the preferred form at high hydration.

摘要

DNA双螺旋并非规则、无特征的理发店旋转招牌式分子。不同的碱基序列有其独特的特征,它们会影响沟宽、螺旋扭曲、弯曲以及机械刚性或抗弯曲能力。这些特殊特征可能有助于阻遏蛋白等其他分子优先识别一种碱基序列而非另一种。单晶X射线结构分析开始向我们展示B - DNA家族中可能存在的各种结构。与早期的C - G - C - G - A - A - T - T - C - G - C - G相比,DNA十聚体C - C - A - A - G - A - T - T - G - G似乎是混合序列B - DNA的更好模型,后者更类似于聚(dA)·聚(dT)区域。十聚体中心的G·A错配碱基对围绕其从碱基到糖的键处于反 - 反构象,这与关于此序列及其他序列的核磁共振证据一致,与C - G - C - G - A - A - T - T - A - G - C - G中报道的G·A碱基对的反 - 顺几何结构形成对比。在窄沟十二聚体中较早观察到的有序水合脊柱,在这个宽沟十聚体中,由排列在小沟壁上的两串水分子对应,从嘌呤N3或嘧啶O2连接到下一个糖的O4'。在G - C - G - C - G - C的硫代磷酸酯类似物中也存在相同的水合链。与因鸟嘌呤处胺基的侵入而中断的脊柱不同,这些水链通常存在于混合序列DNA中,因为它们可以不受阻碍地通过鸟嘌呤N2胺的两侧。脊柱和水链被视为小沟水合一般模式的两个极端,这可能是使B - DNA在高水合状态下成为首选形式的主要因素。

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