Urban Vaclav, Dobrovolna Jana, Hühn Daniela, Fryzelkova Jana, Bartek Jiri, Janscak Pavel
Institute of Molecular Genetics, Academy of Sciences of the Czech Republic, 142 20 Prague, Czech Republic.
Institute of Molecular Cancer Research, University of Zurich, 8057 Zurich, Switzerland.
J Cell Biol. 2016 Aug 15;214(4):401-15. doi: 10.1083/jcb.201507099. Epub 2016 Aug 8.
Collisions between replication and transcription machineries represent a significant source of genomic instability. RECQ5 DNA helicase binds to RNA-polymerase (RNAP) II during transcription elongation and suppresses transcription-associated genomic instability. Here, we show that RECQ5 also associates with RNAPI and enforces the stability of ribosomal DNA arrays. We demonstrate that RECQ5 associates with transcription complexes in DNA replication foci and counteracts replication fork stalling in RNAPI- and RNAPII-transcribed genes, suggesting that RECQ5 exerts its genome-stabilizing effect by acting at sites of replication-transcription collisions. Moreover, RECQ5-deficient cells accumulate RAD18 foci and BRCA1-dependent RAD51 foci that are both formed at sites of interference between replication and transcription and likely represent unresolved replication intermediates. Finally, we provide evidence for a novel mechanism of resolution of replication-transcription collisions wherein the interaction between RECQ5 and proliferating cell nuclear antigen (PCNA) promotes RAD18-dependent PCNA ubiquitination and the helicase activity of RECQ5 promotes the processing of replication intermediates.
复制机器与转录机器之间的碰撞是基因组不稳定的一个重要来源。RECQ5 DNA解旋酶在转录延伸过程中与RNA聚合酶(RNAP)II结合,并抑制转录相关的基因组不稳定。在这里,我们表明RECQ5也与RNAPI相关联,并维持核糖体DNA阵列的稳定性。我们证明RECQ5与DNA复制位点的转录复合物相关联,并抵消RNAPI和RNAPII转录基因中的复制叉停滞,这表明RECQ5通过作用于复制-转录碰撞位点发挥其基因组稳定作用。此外,RECQ5缺陷细胞会积累RAD18焦点和BRCA1依赖的RAD51焦点,这两者都在复制与转录的干扰位点形成,并且可能代表未解决的复制中间体。最后,我们为解决复制-转录碰撞的新机制提供了证据,其中RECQ5与增殖细胞核抗原(PCNA)之间的相互作用促进了RAD18依赖的PCNA泛素化,并且RECQ5的解旋酶活性促进了复制中间体的加工。