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Senp1 Is Essential for Desumoylating Sumo1-Modified Proteins but Dispensable for Sumo2 and Sumo3 Deconjugation in the Mouse Embryo

机译:Senp1是必不可少的Susum1修饰的蛋白质,但对于Sumo2和Sumo3去偶联在小鼠胚胎中可有可无。

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Posttranslational modification with small ubiquitin-like modifier (Sumo) regulates numerous cellular and developmental processes. Sumoylation is dynamic with deconjugation by Sumo-specific proteases (Senps) regulating steady-state levels. Different Senps are found in distinct subcellular domains, which may limit their deconjugation activity to colocalizing Sumo-modified proteins. In vitro, Senps can discriminate between the different Sumo paralogs: Sumo1 versus the highly related Sumo2 and Sumo3 (Sumo2/3), which can form poly-Sumo chains. However, a full understanding of Senp specificity in vivo is still lacking. Here, using biochemical and genetic approaches, we establish that Senp1 has an essential, nonredundant function to desumoylate Sumo1-modified proteins during mouse embryonic development. Senp1 specificity for Sumo1 conjugates represents an intrinsic function and not simply a product of colocalization. In contrast, Senp1 has only a limited role in Sumo2/3 desumoylation, although it may regulate Sumo1-mediated termination of poly-Sumo2/3 chains.
机译:用小的泛素样修饰剂(Sumo)进行的翻译后修饰可调节许多细胞和发育过程。 Sumoylation是动态的,可以通过调节稳态水平的Sumo特异性蛋白酶(Senps)解偶联。在不同的亚细胞结构域中发现了不同的Senps,这可能将其解偶联活性限制在Sumo修饰蛋白的共定位上。在体外,Senps可以区分不同的Sumo同源物:Sumo1与高度相关的Sumo2和Sumo3(Sumo2 / 3),后者可以形成多相扑链。但是,仍缺乏对Senp体内特异性的全面了解。在这里,使用生化和遗传方法,我们建立了Senp1具有必需的,非冗余的功能,以在小鼠胚胎发育过程中减少Sumo1修饰的蛋白质。 Sumo1共轭物的Senp1特异性代表一种内在功能,而不仅仅是共定位的产物。相反,Senp1在Sumo2 / 3的去磺酰化中仅发挥有限的作用,尽管它可能调节Sumo1介导的多Sumo2 / 3链的终止。

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