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DNA重组:霍利迪连接体动力学与分支迁移

DNA recombination: holliday junctions dynamics and branch migration.

作者信息

Lushnikov Alexander Y, Bogdanov Alexey, Lyubchenko Yuri L

机构信息

School of Life Sciences, Arizona State University, Tempe, Arizona 85287-4501, USA.

出版信息

J Biol Chem. 2003 Oct 31;278(44):43130-4. doi: 10.1074/jbc.M308228200. Epub 2003 Aug 29.

Abstract

Holliday junctions are critical intermediates for homologous, site-specific recombination, DNA repair, and replication. A wealth of structural information is available for immobile four-way junctions, but the controversy on the mechanism of branch migration of Holliday junctions remains unsolved. Two models for the mechanism of branch migration were suggested. According to the early model of Alberts-Meselson-Sigal (Sigal, N., and Alberts, B. (1972) J. Mol. Biol. 71, 789-793 and Meselson, M. (1972) J. Mol. Biol. 71, 795-798), exchanging DNA strands around the junction remain parallel during branch migration. Kinetic studies of branch migration (Panyutin, I. G., and Hsieh, P. (1994) Proc. Natl. Acad. Sci. U. S. A. 91, 2021-2025) suggest an alternative model in which the junction adopts an extended conformation. We tested these models using a Holliday junction undergoing branch migration and time-lapse atomic force microscopy, an imaging technique capable of imaging DNA dynamics. The single molecule atomic force microscopy experiments performed in the presence and in the absence of divalent cations show that mobile Holliday junctions adopt an unfolded conformation during branch migration that is retained despite a broad range of motion in the arms of the junction. This conformation of the junction remains unchanged until strand separation. The data obtained support the model for branch migration having the extended conformation of the Holliday junction.

摘要

霍利迪连接体是同源、位点特异性重组、DNA修复和复制的关键中间体。关于固定的四向连接体已有大量结构信息,但霍利迪连接体分支迁移机制的争议仍未解决。人们提出了两种分支迁移机制模型。根据阿尔伯茨-梅塞尔森-西加尔的早期模型(西加尔,N.,和阿尔伯茨,B.(1972年)《分子生物学杂志》71卷,789 - 793页;梅塞尔森,M.(1972年)《分子生物学杂志》71卷,795 - 798页),在分支迁移过程中,连接体周围交换的DNA链保持平行。分支迁移的动力学研究(潘尤廷,I. G.,和谢赫,P.(1994年)《美国国家科学院院刊》91卷,2021 - 2025页)提出了另一种模型,即连接体采用伸展构象。我们使用一个正在进行分支迁移的霍利迪连接体和延时原子力显微镜(一种能够对DNA动力学进行成像的技术)对这些模型进行了测试。在有和没有二价阳离子存在的情况下进行的单分子原子力显微镜实验表明,移动的霍利迪连接体在分支迁移过程中采用一种未折叠的构象,尽管连接体臂部有广泛的运动,但这种构象仍得以保留。在链分离之前,连接体的这种构象保持不变。所获得的数据支持了霍利迪连接体具有伸展构象的分支迁移模型。

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