Molecular Biology Program, Memorial Sloan Kettering Cancer Center, New York, New York 10065, USA.
Program in Biochemistry, Cell, and Molecular Biology, Weill Cornell Graduate School of Medical Sciences, New York, New York 10065, USA.
Genes Dev. 2021 Feb 1;35(3-4):261-272. doi: 10.1101/gad.344739.120. Epub 2021 Jan 14.
SUMO modification regulates diverse cellular processes by targeting hundreds of proteins. However, the limited number of sumoylation enzymes raises the question of how such a large number of substrates are efficiently modified. Specifically, how genome maintenance factors are dynamically sumoylated at DNA replication and repair sites to modulate their functions is poorly understood. Here, we demonstrate a role for the conserved yeast Esc2 protein in this process by acting as a SUMO E2 cofactor. Esc2 is required for genome stability and binds to Holliday junctions and replication fork structures. Our targeted screen found that Esc2 promotes the sumoylation of a Holliday junction dissolution complex and specific replisome proteins. Esc2 does not elicit these effects via stable interactions with substrates or their common SUMO E3. Rather, we show that a SUMO-like domain of Esc2 stimulates sumoylation by exploiting a noncovalent SUMO binding site on the E2 enzyme. This role of Esc2 in sumoylation is required for Holliday junction clearance and genome stability. Our findings thus suggest that Esc2 acts as a SUMO E2 cofactor at distinct DNA structures to promote the sumoylation of specific substrates and genome maintenance.
SUMO 修饰通过靶向数百种蛋白质来调节多种细胞过程。然而,由于修饰酶的数量有限,人们提出了一个问题,即如何有效地修饰如此大量的底物。具体来说,基因组维护因子如何在 DNA 复制和修复位点被动态 SUMO 化,以调节其功能,这一点还知之甚少。在这里,我们通过作为 SUMO E2 辅助因子,证明了保守的酵母 Esc2 蛋白在这个过程中的作用。Esc2 对于基因组稳定性是必需的,并且与 Holliday 连接和复制叉结构结合。我们的靶向筛选发现,Esc2 促进了 Holliday 连接溶解复合物和特定复制酶蛋白的 SUMO 化。Esc2 不是通过与底物或其常见的 SUMO E3 的稳定相互作用产生这些影响。相反,我们表明,Esc2 的 SUMO 样结构域通过利用 E2 酶上的非共价 SUMO 结合位点来刺激 SUMO 化。Esc2 在 SUMO 化中的这种作用对于 Holliday 连接的清除和基因组稳定性是必需的。因此,我们的研究结果表明,Esc2 在不同的 DNA 结构中作为 SUMO E2 辅助因子发挥作用,以促进特定底物和基因组维护的 SUMO 化。