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DNA十字形结构促进核小体模板上的体外链转移。

DNA cruciforms facilitate in vitro strand transfer on nucleosomal templates.

作者信息

Kotani H, Kmiec E B

机构信息

Department of Molecular Pharmacology, Jefferson Cancer Institute, Jefferson Medical College of Thomas Jefferson University, Philadelphia, PA 19107.

出版信息

Mol Gen Genet. 1994 Jun 15;243(6):681-90. doi: 10.1007/BF00279578.

Abstract

A single, phased nucleosome assembled on a 240 bp DNA duplex molecule blocked Escherichia coli RecA protein-promoted strand transfer of the complementary strand of the duplex onto a homologous single-stranded circle. However, when a four-armed cruciform structure was coupled to either end of the duplex the barrier to strand transfer was overcome and joint molecules were efficiently formed. Micrococcal nuclease digestion indicated that the nucleosome was dissociated by the juxtaposition of the cruciform. We interpret these results to mean that cruciform structures can act over a distance to destabilize adjacent nucleosomes and suggest that, as a consequence, the chromatin structure surrounding a crossed strand recombination intermediate might be disrupted, enabling other recombination events to initiate or the process of branch migration to proceed.

摘要

组装在240 bp DNA双链分子上的单个阶段性核小体,会阻止大肠杆菌RecA蛋白将双链互补链促进转移到同源单链环上。然而,当在双链两端连接一个四臂十字形结构时,链转移的障碍就被克服了,并且有效地形成了连接分子。微球菌核酸酶消化表明,核小体因十字形结构的并置而解离。我们将这些结果解释为十字形结构可以在一定距离内发挥作用,使相邻核小体不稳定,并表明,因此,交叉链重组中间体周围的染色质结构可能会被破坏,从而使其他重组事件能够启动或分支迁移过程得以进行。

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