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通过X射线衍射解析DNA解旋蛋白的结构及其与寡脱氧核苷酸的复合物。

The structure of a DNA unwinding protein and its complexes with oligodeoxynucleotides by x-ray diffraction.

作者信息

McPherson A, Jurnak F, Wang A, Kolpak F, Rich A, Molineux I, Fitzgerald P

出版信息

Biophys J. 1980 Oct;32(1):155-73. doi: 10.1016/S0006-3495(80)84931-9.

Abstract

The structure of the gene 5 DNA unwinding protein from bacteriophage fd has been solved to 2.3 A resolution by x-ray diffraction techniques. The molecule contains an extensive cleft region that we have identified as the DNA binding site on the basis of the residues that comprise its surface. The interior of the groove has a rather large number of basic amino acid residues that serve to draw the polynucleotide backbone into the cleft. Arrayed along the external edges of the groove are a number of aromatic amino acid side groups that are in position to stack upon the bases of the DNA and fix it in place. The cleft then acts as an elongated pair of jaws that draws the DNA between them by charge interactions involving the phosphates with the interior lysines and arginines. The jaws then close on the DNA strand through small conformation changes and the rotation of aromatic side-chains into position to stack upon the purines and pyrimidines. Complexes of the gene 5 protein with a variety of oligodeoxynucleotides have been formed and crystallized for x-ray diffraction analysis. The crystallographic parameters of four different unit cells indicate that the fundamental unit of the complex is composed of six gene 5 protein dimers. We believe this aggregate has 622 point group symmetry and is a ring formed by end to end closure of a linear array of six dimers. From our results we have proposed a double helical model for the gene 5 protein-DNA complex in which the protein forms a spindle or core around which the DNA is spooled. 5.0-A x-ray diffraction data from one of the crystalline complexes is currently being analyzed by molecular replacement techniques to obtain what we believe will be the first direct visualization of a protein-deoxyribonucleic acid complex approaching atomic resolution.

摘要

通过X射线衍射技术,噬菌体fd基因5解旋蛋白的结构已解析到2.3埃的分辨率。该分子包含一个广泛的裂隙区域,基于构成其表面的残基,我们已将其确定为DNA结合位点。裂隙内部有相当数量的碱性氨基酸残基,用于将多核苷酸主链拉入裂隙。沿着裂隙外部边缘排列着许多芳香族氨基酸侧基,它们能够堆积在DNA的碱基上并将其固定到位。然后,裂隙充当一对拉长的钳口,通过涉及磷酸盐与内部赖氨酸和精氨酸的电荷相互作用将DNA拉到它们之间。然后,钳口通过小的构象变化和芳香族侧链旋转到位以堆积在嘌呤和嘧啶上,从而闭合在DNA链上。已形成基因5蛋白与多种寡脱氧核苷酸的复合物并进行结晶,用于X射线衍射分析。四个不同晶胞的晶体学参数表明,复合物的基本单元由六个基因5蛋白二聚体组成。我们认为这种聚集体具有622点群对称性,是由六个二聚体的线性阵列首尾相连形成的环。根据我们的结果,我们提出了基因5蛋白-DNA复合物的双螺旋模型,其中蛋白质形成一个纺锤体或核心,DNA缠绕在其上。目前正在通过分子置换技术分析来自其中一种晶体复合物的5.0埃X射线衍射数据,以获得我们认为将是第一个接近原子分辨率的蛋白质-脱氧核糖核酸复合物的直接可视化结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9396/1327275/f2fb8baab3e2/biophysj00252-0179-a.jpg

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