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首页> 外文期刊>Molecular Microbiology >Holliday junction formation by the Borrelia burgdorferi telomere resolvase, ResT: implications for the origin of genome linearity.
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Holliday junction formation by the Borrelia burgdorferi telomere resolvase, ResT: implications for the origin of genome linearity.

机译:伯氏疏螺旋体端粒resolvase,ResT的霍利迪结形成:对基因组线性起源的影响。

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摘要

Spirochetes of the genus Borrelia include the causative agents of Lyme disease and relapsing fever. They possess unusual, highly segmented genomes composed mostly of linear replicons with covalently closed hairpin telomeres. The telomeres are formed from inverted repeat replicated telomere junctions (rTels) by the telomere resolvase, ResT. ResT uses a reaction mechanism with similarities to that employed by the type IB topoisomerases and tyrosine recombinases. Here, we report that the relationship of ResT to the tyrosine recombinases extends to the ability to synapse-replicated telomeres and to catalyse the formation of a Holliday junction. We also report that ResT can use asymmetrized substrates that mimic the properties of a recombination site for a tyrosine recombinase, to form Holliday junctions. We propose a model for how this explains the origin of genome linearity in the genus Borrelia.
机译:疏螺旋体属的螺旋体包括莱姆病和复发热的病原体。它们拥有不寻常的,高度分割的基因组,主要由线性复制子和共价闭合的发夹端粒组成。端粒由端粒分辨酶ResT由反向重复复制的端粒连接(rTel)形成。 ResT使用的反应机理与IB型拓扑异构酶和酪氨酸重组酶相似。在这里,我们报道ResT与酪氨酸重组酶的关系扩展到突触复制的端粒和催化霍利迪结形成的能力。我们还报告说ResT可以使用模仿酪氨酸重组酶重组位点特性的不对称底物形成霍利迪连接。我们提出了一个模型,以此解释博雷利亚属中基因组线性的起源。

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