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Dual roles of the SUMO-interacting motif in the regulation of Srs2 sumoylation

机译:SUMO相互作用基序在Srs2 sumoylation调节中的双重作用

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摘要

The Srs2 DNA helicase of Saccharomyces cerevisiae affects recombination in multiple ways. Srs2 not only inhibits recombination at stalled replication forks but also promotes the synthesis-dependent strand annealing (SDSA) pathway of recombination. Both functions of Srs2 are regulated by sumoylation—sumoylated PCNA recruits Srs2 to the replication fork to disfavor recombination, and sumoylation of Srs2 can be inhibitory to SDSA in certain backgrounds. To understand Srs2 function, we characterize the mechanism of its sumoylation in vitro and in vivo. Our data show that Srs2 is sumoylated at three lysines, and its sumoylation is facilitated by the Siz SUMO ligases. We also show that Srs2 binds to SUMO via a C-terminal SUMO-interacting motif (SIM). The SIM region is required for Srs2 sumoylation, likely by binding to SUMO-charged Ubc9. Srs2’s SIM also cooperates with an adjacent PCNA-specific interaction site in binding to sumoylated PCNA to ensure the specificity of the interaction. These two functions of Srs2’s SIM exhibit a competitive relationship: sumoylation of Srs2 decreases the interaction between the SIM and SUMO-PCNA, and the SUMO-PCNA–SIM interaction disfavors Srs2 sumoylation. Our findings suggest a potential mechanism for the equilibrium of sumoylated and PCNA-bound pools of Srs2 in cells.
机译:酿酒酵母的Srs2 DNA解旋酶以多种方式影响重组。 Srs2不仅抑制停滞的复制叉处的重组,而且还促进了合成依赖的链退火(SDSA)重组途径。 Srs2的两个功能都受sumoylation调节-sumoylated PCNA将Srs2募集到复制叉中以不利于重组,并且Srs2的sumoylation在某些背景下可以抑制SDSA。为了了解Srs2的功能,我们表征其在体外和体内的sumoylation的机制。我们的数据表明,Srs2在3个赖氨酸上被磺酰化,而Siz SUMO连接酶促进了它的磺酰化。我们还显示,Srs2通过C端SUMO交互基序(SIM)与SUMO结合。 SIM区域是Srs2磺酰化所必需的,可能是通过与SUMO充电的Ubc9结合而实现的。 Srs2的SIM还可以与相邻的PCNA特定的相互作用位点合作,以与磺酰化的PCNA结合,以确保相互作用的特异性。 Srs2的SIM的这两个功能表现出竞争关系:Srs2的磺酰化会降低SIM与SUMO-PCNA之间的相互作用,而SUMO-PCNA-SIM的相互作用不利于Srs2的磺酰化。我们的发现提示了细胞中Srs2的SUMO化和PCNA结合池平衡的潜在机制。

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