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噬菌体T4 UvsX蛋白催化的DNA同源配对可视化。

Visualization of the homologous pairing of DNA catalyzed by the bacteriophage T4 UvsX protein.

作者信息

Harris L D, Griffith J

出版信息

J Biol Chem. 1987 Jul 5;262(19):9285-92.

PMID:3496334
Abstract

The uvsX gene product is essential for DNA repair and general recombination in T4 bacteriophage. The ability of UvsX protein to catalyze the homologous pairing of single-stranded DNA (ssDNA) with double-stranded DNA (dsDNA) in vitro was examined by electron microscopic (EM), nitrocellulose filter binding, and gel electrophoretic methods. Optimal joining was observed at ratios of UvsX protein:ssDNA of 2 nucleotides/protein monomer. At this level, the ssDNA was fully covered by UvsX protein as seen by EM, while the dsDNA appeared protein-free. Using this stoichiometry, the pairing of circular ssDNA with homologous supertwisted dsDNA was found to produce a high frequency of complexes in which a supertwisted dsDNA molecule was joined to a UvsX protein-ssDNA filament over a distance of less than 100 base pairs. These joints were labile to deproteinization and must have been paranemic. Pairing of linear ssDNA containing buried homology to the dsDNA produced identical structures. Pairing of fully homologous linear ssDNA and supertwisted dsDNA yielded D-loop joints (plectonemic) as seen by EM following deproteinization. Both the paranemic and the plectonemic joints were at sites of homology, as demonstrated by restriction cleavage of the complexes. Visualization of the joined complexes prior to deproteinization showed that 50% of the joints had the architecture of the paranemic joints, whereas in the remainder, a topologically relaxed dsDNA circle merged with the UvsX protein-ssDNA filament for a distance of 450 base pairs. The structure of the filament was not visibly altered in this region. These observations are similar, but not identical, to findings in parallel studies utilizing the RecA protein of Escherichia coli.

摘要

uvsX基因产物对于T4噬菌体的DNA修复和一般重组至关重要。通过电子显微镜(EM)、硝酸纤维素滤膜结合和凝胶电泳方法检测了UvsX蛋白在体外催化单链DNA(ssDNA)与双链DNA(dsDNA)同源配对的能力。在UvsX蛋白与ssDNA的比例为2个核苷酸/蛋白单体时观察到最佳连接。在此水平下,如通过EM所见,ssDNA被UvsX蛋白完全覆盖,而dsDNA似乎无蛋白。利用这种化学计量关系,发现环状ssDNA与同源超螺旋dsDNA的配对产生了高频复合物,其中超螺旋dsDNA分子在小于100个碱基对的距离内与UvsX蛋白-ssDNA细丝相连。这些连接对脱蛋白不稳定,一定是平行排列的。含有与dsDNA隐藏同源性的线性ssDNA的配对产生了相同的结构。完全同源的线性ssDNA与超螺旋dsDNA的配对在脱蛋白后通过EM显示产生D环连接(扭缠的)。如通过复合物的限制性切割所证明的,平行排列的和扭缠的连接都位于同源位点。在脱蛋白之前对连接复合物的可视化显示,50%的连接具有平行排列连接的结构,而在其余部分,拓扑松弛的dsDNA环与UvsX蛋白-ssDNA细丝融合了450个碱基对的距离。细丝的结构在该区域没有明显改变。这些观察结果与利用大肠杆菌RecA蛋白的平行研究中的发现相似但不完全相同。

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