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A SUMO-targeted ubiquitin ligase is involved in the degradation of the nuclear pool of the SUMO E3 ligase Siz1

机译:SUMO靶向的泛素连接酶参与SUMO E3连接酶Siz1核库的降解

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The Slx5/Slx8 heterodimer constitutes a SUMO-targeted ubiquitin ligase (STUbL) with an important role in SUMO-targeted degradation and SUMO-dependent signaling. This STUbL relies on SUMO-interacting motifs in Slx5 to aid in substrate targeting and carboxy-terminal RING domains in both Slx5 and Slx8 for substrate ubiquitylation. In budding yeast cells, Slx5 resides in the nucleus, forms distinct foci, and can associate with double-stranded DNA breaks. However, it remains unclear how STUbLs interact with other proteins and their substrates. To examine the targeting and functions of the Slx5/Slx8 STUbL, we constructed and analyzed truncations of the Slx5 protein. Our structure-function analysis reveals a domain of Slx5 involved in nuclear localization and in the interaction with Slx5, SUMO, Slx8, and a novel interactor, the SUMO E3 ligase Siz1. We further analyzed the functional interaction of Slx5 and Siz1 in vitro and in vivo. We found that a recombinant Siz1 fragment is an in vitro ubiquitylation target of the Slx5/Slx8 STUbL. Furthermore, slx5Δ cells accumulate phosphorylated and sumoylated adducts of Siz1 in vivo. Specifically, we show that Siz1 can be ubiquitylated in vivo and is degraded in an Slx5-dependent manner when its nuclear egress is prevented in mitosis. In conclusion, our data provide a first look into the STUbL-mediated regulation of a SUMO E3 ligase.
机译:Slx5 / Slx8异二聚体构成了SUMO靶向的泛素连接酶(STUbL),在SUMO靶向的降解和SUMO依赖性信号传导中起着重要作用。该STUbL依赖于Slx5中的SUMO相互作用基元,以辅助底物靶向和Slx5和Slx8中的羧基末端RING结构域用于底物泛素化。在出芽的酵母细胞中,Slx5驻留在细胞核中,形成不同的病灶,并且可以与双链DNA断裂相关。但是,尚不清楚STUbLs如何与其他蛋白质及其底物相互作用。为了检查Slx5 / Slx8 STUbL的靶向和功能,我们构建并分析了Slx5蛋白的截短。我们的结构功能分析揭示了Slx5的一个域,该域参与核定位以及与Slx5,SUMO,Slx8和新型相互作用物SUMO E3连接酶Siz1的相互作用。我们进一步分析了Slx5和Siz1在体外和体内的功能相互作用。我们发现重组Siz1片段是Slx5 / Slx8 STUbL的体外泛素化目标。此外,slx5Δ细胞在体内积聚Siz1的磷酸化和sumoylated加合物。具体来说,我们表明Siz1可以在体内泛素化,并在防止有丝分裂中其核外出时以Slx5依赖性方式降解。总之,我们的数据为SUMO E3连接酶的STUbL介导调控提供了初步了解。

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