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晶体堆积对寡核苷酸双螺旋结构的影响。

The effect of crystal packing on oligonucleotide double helix structure.

作者信息

Dickerson R E, Goodsell D S, Kopka M L, Pjura P E

机构信息

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

出版信息

J Biomol Struct Dyn. 1987 Dec;5(3):557-79. doi: 10.1080/07391102.1987.10506413.

Abstract

One of the questions that constantly is asked regarding x-ray crystal structure analyses of macromolecules is: To what extent is the observed crystal structure representative of the molecular conformation when free in solution, and to what degree is the structure perturbed by intermolecular crystal forces? This can be assessed with DNA oligomers because of an unusual aspect of crystallization self-complementary oligomers should possess a twofold symmetry axis normal to their helix axis, yet more often than not crystal of such oligomers do not use this internal symmetry. The two ends of the helix are crystallographically distinct though chemically identical. Complexes of DNA oligomers with intercalating drugs such as triostin A tend to use their twofold symmetry when they crystallize, whereas complexes with non-intercalating, groove-binding drugs ignore this symmetry unless the drug molecule is very small. A detailed examination of crystal packing in the dodecamer C-G-C-G-A-A-T-T-C-G-C-G provides an explanation of all of the foregoing behavior in terms of the mechanism of nucleation of DNA or DNA-drug complexes on the surface of a growing crystal. Asymmetry of the ends of the DNA helix is the price that is paid for efficient lateral packing of helices within the crystal. The actual end-for-end variation in standard helix parameters is compared with the experimental noise level as gauged by independent re-refinement of the same oligonucleotide structure where available, and with the observed extent of variation of these same parameters along the helix. Oligomers analyzed are the B-DNA dodecamer C-G-C-G-A-A-T-T-C-G-C-G, the A-DNA octamer G-G-T-A-T-A-C-C, and the phosphorothioate analogue of the B-DNA hexamer G-C-G-C-G-C. End-for-end variation, presumably the result of crystal packing is typically double the experimental noise level, and half the variation in the same parameter along the helix. Analysis of crystal packing in the phosphorothioate hexamer, which uses the same P212121 space group as the dodecamer, shows that the highly unsymmetrical B1 vs. BII backbone conformation probably is to be ascribed to crystal packing forces, and not to the sequence of the hexamer.

摘要

关于大分子的X射线晶体结构分析,人们经常会问的一个问题是:观察到的晶体结构在多大程度上代表了分子在溶液中自由时的构象,以及结构在多大程度上受到分子间晶体力的干扰?对于DNA寡聚物,这一点可以得到评估,因为结晶有一个不寻常的方面,即自互补寡聚物应该拥有一个垂直于其螺旋轴的二重对称轴,但通常情况下,这类寡聚物的晶体并不会利用这种内部对称性。螺旋的两端在晶体学上是不同的,尽管在化学上是相同的。DNA寡聚物与嵌入剂药物(如三嗪菌素A)形成的复合物在结晶时倾向于利用其二重对称性,而与非嵌入性的沟槽结合药物形成的复合物则会忽略这种对称性,除非药物分子非常小。对十二聚体C-G-C-G-A-A-T-T-C-G-C-G的晶体堆积进行详细研究,从DNA或DNA-药物复合物在生长晶体表面的成核机制方面,对上述所有行为做出了解释。DNA螺旋两端的不对称性是为了在晶体内实现螺旋的高效侧向堆积而付出的代价。将标准螺旋参数的实际端到端变化与通过对相同寡核苷酸结构进行独立重新精修(如果有)所测量的实验噪声水平进行比较,并与沿螺旋观察到的这些相同参数的变化程度进行比较。所分析的寡聚物有B型DNA十二聚体C-G-C-G-A-A-T-T-C-G-C-G、A型DNA八聚体G-G-T-A-T-A-C-C以及B型DNA六聚体G-C-G-C-G-C的硫代磷酸酯类似物。端到端的变化,大概是晶体堆积的结果,通常是实验噪声水平的两倍,并且是同一参数沿螺旋变化的一半。对硫代磷酸酯六聚体的晶体堆积分析表明,其高度不对称的B1与BII主链构象可能归因于晶体堆积力,而不是六聚体的序列。该硫代磷酸酯六聚体与十二聚体使用相同的P212121空间群。

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