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Role for the Fission Yeast RecQ Helicase in DNA Repair in G2

机译:裂变酵母RecQ解旋酶在G2 DNA修复中的作用

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摘要

Members of the RecQ helicase subfamily are mutated in several human genomic instability syndromes, such as Bloom, Werner, and Rothmund-Thomson syndromes. We show that Rqh1, the single Schizosaccharomyces pombe homologue, is a 3′-to-5′ helicase and exists with Top3 in a high-molecular-weight complex. top3 deletion is inviable, and this is suppressed by concomitant loss of rqh1 helicase activity or loss of recombination functions. This is consistent with RecQ helicases in other systems. By using epistasis analysis of the UV radiation sensitivity and by analyzing the kinetics of Rhp51 (Rad51 homologue), Rqh1, and Top3 focus formation in response to UV in synchronized cells, we identify the first evidence of a function for Rqh1 and Top3 in the repair of UV-induced DNA damage in G2. Our data provide evidence that Rqh1 functions after Rad51 focus formation during DNA repair. We also identify a function for Rqh1 upstream of recombination in an Rhp18-dependent (Rad18 homologue) pathway. The model that these data allow us to propose helps to reconcile different interpretations of RecQ family helicase function that have arisen between work based on the S. pombe system and models based on studies of Saccharomyces cerevisiae SGS1 suggesting that RecQ helicases act before Rad51.
机译:RecQ解旋酶亚家族的成员在几种人类基因组不稳定性综合症(例如Bloom,Werner和Rothmund-Thomson综合症)中发生了突变。我们显示,Rqh1,单一的裂殖酵母属同源物,是一种3'至5'解旋酶,并与Top3一起存在于高分子量复合物中。 top3缺失是不可行的,并且rqh1解旋酶活性的同时丧失或重组功能的丧失可抑制这种情况。这与其他系统中的RecQ解旋酶一致。通过使用UV辐射敏感性的上位性分析以及通过分析Rhp51(Rad51同源物),Rqh1和Top3焦点形成对同步细胞中的UV响应的动力学,我们确定了Rqh1和Top3在修复中起作用的第一个证据紫外线引起的G2 DNA损伤。我们的数据提供证据,证明在DNA修复过程中,Rad51焦点形成后Rqh1起作用。我们还确定了Rhph18依赖(Rad18同源物)途径重组上游Rqh1的功能。这些数据允许我们提出的模型有助于调和基于S. pombe系统的工作与基于酿酒酵母SGS1研究的模型之间出现的RecQ家族解旋酶功能的不同解释,这表明RecQ解旋酶在Rad51之前起作用。

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