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药物与核酸相互作用的原子分辨率可视化。VII. 溴化乙锭/二核苷单磷酸晶体复合物的结构,溴化乙锭:尿苷酰基(3'-5')腺苷。

Visualization of drug-nucleic acid interactions at atomic resolution. VII. Structure of an ethidium/dinucleoside monophosphate crystalline complex, ethidium: uridylyl(3'-5') adenosine.

作者信息

Jain S C, Sobell H M

机构信息

Department of Radiation Biology and Biophysics, University of Rochester School of Medicine and Dentisty, New York 14642.

出版信息

J Biomol Struct Dyn. 1984 Mar;1(5):1161-77. doi: 10.1080/07391102.1984.10507510.

Abstract

Ethidium forms a crystalline complex with the dinucleoside monophosphate, uridylyl (3'-5') adenosine (UpA). The complex crystallizes in the monoclinic space group P2l with unit cell dimensions, a = 13.704 A, b = 31.674 A, c = 15.131 A, beta = 113.9 degrees. This light atom structure has been solved to atomic resolution and refined by full matrix least squares to a residual of 0.12, using 3,034 observed reflections. The asymmetric unit consists of two ethidium molecules, two UpA molecules and 19 solvent molecules, a total of 145 non-hydrogen atoms. The two UpA molecules are hydrogen-bonded together by Watson-Crick type base pairing. Base-pairs in this duplex are separated by 6.7 A; this reflects intercalative binding by one of the ethidium molecules. The other ethidium molecule stacks on either side of the intercalated base-paired dinucleoside monophosphate, being related by a unit cell translation along the a axis. The conformation of the sugar-phosphate backbone accompanying intercalation has been accurately determined in this analysis, and contains the mixed sugar-puckering pattern: C3' endo (3'-5') C2' endo. This same structural feature has been observed in the ethidium-iodoUpA and ethidium-iodoCpG complexes, and exists in two additional structures containing ethidium-CpG. Taken together, these studies confirm our earlier sugar-puckering assignments and demonstrate that iodine covalently bound to the C5 position on uridine or cytosine does not alter the basic sugar-phosphate geometry or the mode of ethidium intercalation in these model studies. We have proposed this stereochemistry to explain the intercalation of ethidium (as well as other simple intercalators) into both DNA and into double-helical RNA, and discuss this aspect of our work further in this paper and in the accompanying papers.

摘要

溴化乙锭与二磷酸核苷单磷酸尿苷酰基(3'-5')腺苷(UpA)形成晶体复合物。该复合物以单斜空间群P2l结晶,晶胞参数为a = 13.704 Å,b = 31.674 Å,c = 15.131 Å,β = 113.9°。这个轻原子结构已被解析到原子分辨率,并通过全矩阵最小二乘法精修至残余因子为0.12,使用了3034个观测反射。不对称单元由两个溴化乙锭分子、两个UpA分子和19个溶剂分子组成,总共145个非氢原子。两个UpA分子通过沃森-克里克型碱基配对氢键连接在一起。该双链体中的碱基对间距为6.7 Å;这反映了其中一个溴化乙锭分子的嵌入结合。另一个溴化乙锭分子堆积在嵌入的碱基配对二磷酸核苷单磷酸的两侧,通过沿a轴的晶胞平移相关联。在该分析中已精确确定了伴随嵌入的糖-磷酸主链的构象,其包含混合糖环构象模式:C3'内式(3'-5')C2'内式。在溴化乙锭-碘代UpA和溴化乙锭-碘代CpG复合物中也观察到了相同的结构特征,并且在另外两个含有溴化乙锭-CpG的结构中也存在。综上所述,这些研究证实了我们早期对糖环构象的归属,并表明与尿苷或胞嘧啶C5位共价结合的碘在这些模型研究中不会改变基本的糖-磷酸几何结构或溴化乙锭的嵌入模式。我们提出这种立体化学来解释溴化乙锭(以及其他简单嵌入剂)嵌入DNA和双螺旋RNA的过程,并在本文及相关论文中进一步讨论我们工作的这一方面。

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