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Targeted induction of meiotic double-strand breaks reveals chromosomal domain-dependent regulation of Spo11 and interactions among potential sites of meiotic recombination

机译:减数分裂双链断裂的靶向诱导揭示了Spo11的染色体域依赖性调控以及减数分裂重组潜在位点之间的相互作用

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摘要

Meiotic recombination is initiated by programmed DNA double-strand break (DSB) formation mediated by Spo11. DSBs occur with frequency in chromosomal regions called hot domains but are seldom seen in cold domains. To obtain insights into the determinants of the distribution of meiotic DSBs, we examined the effects of inducing targeted DSBs during yeast meiosis using a UAS-directed form of Spo11 (Gal4BD-Spo11) and a meiosis-specific endonuclease, VDE (PI-SceI). Gal4BD-Spo11 cleaved its target sequence (UAS) integrated in hot domains but rarely in cold domains. However, Gal4BD-Spo11 did bind to UAS and VDE efficiently cleaved its recognition sequence in either context, suggesting that a cold domain is not a region of inaccessible or uncleavable chromosome structure. Importantly, self-association of Spo11 occurred at UAS in a hot domain but not in a cold domain, raising the possibility that Spo11 remains in an inactive intermediate state in cold domains. Integration of UAS adjacent to known DSB hotspots allowed us to detect competitive interactions among hotspots for activation. Moreover, the presence of VDE-introduced DSB repressed proximal hotspot activity, implicating DSBs themselves in interactions among hotspots. Thus, potential sites for Spo11-mediated DSB are subject to domain-specific and local competitive regulations during and after DSB formation.
机译:减数分裂重组是由Spo11介导的程序化DNA双链断裂(DSB)形成引发的。 DSB在称为热域的染色体区域中以频率出现,但在冷域中很少见到。为了深入了解减数分裂DSB分布的决定因素,我们研究了使用UAS定向形式的Spo11(Gal4BD-Spo11)和减数分裂特异性核酸内切酶VDE(PI-SceI)在酵母减数分裂期间诱导靶向DSB的作用。 。 Gal4BD-Spo11切割其靶序列(UAS)整合在热域中,但很少在冷域中。但是,Gal4BD-Spo11确实与UAS结合,并且VDE在这两种情况下均有效地切割了其识别序列,这表明冷域不是染色体结构不可访问或不可切割的区域。重要的是,Spo11的自缔合是在UAS的热域中发生的,而不是在冷域中发生的,这增加了Spo11在冷域中保持处于非活动中间状态的可能性。与已知DSB热点相邻的UAS集成使我们能够检测到热点之间的竞争性相互作用以进行激活。此外,VDE引入的DSB的存在抑制了近端热点活动,使DSB自身参与了热点之间的相互作用。因此,Spo11介导的DSB的潜在位点在DSB形成期间和之后均受域特定和本地竞争法规的约束。

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