Li Min, Pokharel Subhash, Wang Jiin-Tarng, Xu Xiaohua, Liu Yilun
Department of Radiation Biology, Beckman Research Institute, City of Hope, Duarte, California 91010-3000, USA.
Nat Commun. 2015 Apr 8;6:6720. doi: 10.1038/ncomms7720.
DNA topoisomerase I (TOP1) has an important role in maintaining DNA topology by relaxing supercoiled DNA. Here we show that the K391 and K436 residues of TOP1 are SUMOylated by the PIAS1-SRSF1 E3 ligase complex in the chromatin fraction containing active RNA polymerase II (RNAPIIo). This modification is necessary for the binding of TOP1 to RNAPIIo and for the recruitment of RNA splicing factors to the actively transcribed chromatin, thereby reducing the formation of R-loops that lead to genome instability. RECQ5 helicase promotes TOP1 SUMOylation by facilitating the interaction between PIAS1, SRSF1 and TOP1. Unexpectedly, the topoisomerase activity is compromised by K391/K436 SUMOylation, and this provides the first in vivo evidence that TOP1 activity is negatively regulated at transcriptionally active chromatin to prevent TOP1-induced DNA damage. Therefore, our data provide mechanistic insight into how TOP1 SUMOylation contributes to genome maintenance during transcription.
DNA拓扑异构酶I(TOP1)通过松弛超螺旋DNA在维持DNA拓扑结构中发挥重要作用。我们在此表明,TOP1的K391和K436残基在含有活性RNA聚合酶II(RNAPIIo)的染色质组分中被PIAS1 - SRSF1 E3连接酶复合物进行SUMO化修饰。这种修饰对于TOP1与RNAPIIo的结合以及RNA剪接因子募集到活跃转录的染色质是必需的,从而减少导致基因组不稳定的R环的形成。RECQ5解旋酶通过促进PIAS1、SRSF1与TOP1之间的相互作用来促进TOP1的SUMO化。出乎意料的是,K391/K436 SUMO化会损害拓扑异构酶活性,这提供了首个体内证据表明在转录活跃的染色质中TOP1活性受到负调控以防止TOP1诱导的DNA损伤。因此,我们的数据为TOP1 SUMO化如何在转录过程中促进基因组维持提供了机制性见解。