Regan-Mochrie Gemma, Hoggard Timothy, Bhagwat Nikhil, Lynch Gerard, Hunter Neil, Remus Dirk, Fox Catherine A, Zhao Xiaolan
Molecular Biology Program, Memorial Sloan Kettering Cancer Center, New York, New York 10065, USA.
Gerstner Sloan Kettering Graduate School of Biomedical Sciences, Memorial Sloan Kettering Cancer Center, New York, New York 10065, USA.
Genes Dev. 2022 Aug 4;36(13-14):807-21. doi: 10.1101/gad.349610.122.
Sumoylation is emerging as a posttranslation modification important for regulating chromosome duplication and stability. The origin recognition complex (ORC) that directs DNA replication initiation by loading the MCM replicative helicase onto origins is sumoylated in both yeast and human cells. However, the biological consequences of ORC sumoylation are unclear. Here we report the effects of hypersumoylation and hyposumoylation of yeast ORC on ORC activity and origin function using multiple approaches. ORC hypersumoylation preferentially reduced the function of a subset of early origins, while Orc2 hyposumoylation had an opposing effect. Mechanistically, ORC hypersumoylation reduced MCM loading in vitro and diminished MCM chromatin association in vivo. Either hypersumoylation or hyposumoylation of ORC resulted in genome instability and the dependence of yeast on other genome maintenance factors, providing evidence that appropriate ORC sumoylation levels are important for cell fitness. Thus, yeast ORC sumoylation status must be properly controlled to achieve optimal origin function across the genome and genome stability.
SUMO化正逐渐成为一种对调节染色体复制和稳定性很重要的翻译后修饰。通过将MCM复制解旋酶加载到起始位点来指导DNA复制起始的起始识别复合物(ORC)在酵母和人类细胞中都会发生SUMO化。然而,ORC SUMO化的生物学后果尚不清楚。在这里,我们使用多种方法报告了酵母ORC的超SUMO化和低SUMO化对ORC活性和起始位点功能的影响。ORC超SUMO化优先降低了一部分早期起始位点的功能,而Orc2低SUMO化则产生相反的效果。从机制上讲,ORC超SUMO化在体外减少了MCM的加载,并在体内减少了MCM与染色质的结合。ORC的超SUMO化或低SUMO化都会导致基因组不稳定以及酵母对其他基因组维持因子的依赖性,这表明适当的ORC SUMO化水平对细胞适应性很重要。因此,必须适当控制酵母ORC的SUMO化状态,以实现全基因组的最佳起始位点功能和基因组稳定性。