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Preventing Broken Borrelia Telomeres: ResT COUPLES DUAL HAIRPIN TELOMERE FORMATION WITH PRODUCT RELEASE*

机译:防止破裂的疏螺旋体端粒:ResT结合产品发布的双重发夹端粒形成*

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摘要

Spirochetes of the genus Borrelia include the tick-transmitted causative agents of Lyme disease and relapsing fever. They possess unusual genomes composed mainly of linear replicons terminated by closed DNA hairpins. Hairpin telomeres are formed from inverted repeat replicated telomere junctions (rTels) by the telomere resolvase ResT. ResT uses a reaction mechanism similar to that of the type IB topoisomerases and tyrosine recombinases. ResT can catalyze three distinct reactions: telomere resolution, telomere fusion, and Holliday junction (HJ) formation. HJ formation is known to occur only in the context of a synapsed pair of rTels. To test whether telomere resolution was synapsis-dependent, we performed experiments with rTel substrates immobilized on streptavidin-coated beads. We report that telomere resolution by ResT is synapsis-independent, indicating that alternative complexes are formed for telomere resolution and HJ formation. We also present evidence that dual hairpin telomere formation precedes product release. This mechanism of telomere resolution prevents the appearance of broken telomeres. We compare and contrast this mechanism with that proposed for TelK, the telomere resolvase of φKO2.
机译:疏螺旋体属的螺旋体包括由tick传播的莱姆病和复发热的病原体。它们拥有不寻常的基因组,这些基因组主要由封闭的DNA发夹终止的线性复制子组成。发夹端粒由端粒分辨酶ResT由反向重复复制的端粒连接(rTel)形成。 ResT使用类似于IB型拓扑异构酶和酪氨酸重组酶的反应机制。 ResT可以催化三个不同的反应:端粒分离,端粒融合和霍利迪结(HJ)形成。已知HJ的形成仅在一对突触的rTel的情况下发生。为了测试端粒分辨率是否是突触依赖性的,我们进行了将rTel底物固定在抗生蛋白链菌素包被的磁珠上的实验。我们报告说,ResT的端粒分辨率是突触独立的,这表明形成端粒分辨率和HJ形成替代复合物。我们还提供证据表明,双发夹式端粒形成先于产品释放。端粒分解的这种机制防止了端粒断裂的出现。我们将该机制与针对φKO2的端粒解析酶TelK提出的机制进行了比较和对比。

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