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SUMO polymeric chains are involved in nuclear foci formation and chromatin organization in Trypanosoma brucei procyclic forms

机译:SUMO聚合物链参与布鲁氏锥虫前环形式的核灶形成和染色质组织

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摘要

SUMOylation is a post-translational modification conserved in eukaryotic organisms that involves the covalent attachment of the small ubiquitin-like protein SUMO to internal lysine residues in target proteins. This tag usually alters the interaction surface of the modified protein and can be translated into changes in its biological activity, stability or subcellular localization, among other possible outputs. SUMO can be attached as a single moiety or as SUMO polymers in case there are internal acceptor sites in SUMO itself. These chains have been shown to be important for proteasomal degradation as well as for the formation of subnuclear structures such as the synaptonemal complex in Saccharomyces cerevisiae or promyelocytic leukemia nuclear bodies in mammals. In this work, we have examined SUMO chain formation in the protozoan parasite Trypanosoma brucei. Using a recently developed bacterial strain engineered to produce SUMOylated proteins we confirmed the ability of TbSUMO to form polymers and determined the type of linkage using site-directed mutational analysis. By generating transgenic procyclic parasites unable to form chains we demonstrated that although not essential for normal growth, SUMO polymerization determines the localization of the modified proteins in the nucleus. In addition, FISH analysis of telomeres showed a differential positioning depending on the polySUMOylation abilities of the cells. Thus, our observations suggest that TbSUMO chains might play a role in establishing interaction platforms contributing to chromatin organization.
机译:SUMOylation是真核生物中保守的翻译后修饰,涉及小泛素样蛋白SUMO与目标蛋白中内部赖氨酸残基的共价结合。该标签通常会改变修饰蛋白的相互作用表面,并可翻译成其生物学活性,稳定性或亚细胞定位等变化,以及其他可能的输出。 SUMO可以作为单个部分或SUMO聚合物连接,以防SUMO本身内部有内部受体位点。这些链已显示对于蛋白酶体降解以及对于酿酒酵母或早幼粒细胞白血病核体中的突触复合物之类的亚核结构的形成是重要的。在这项工作中,我们检查了原生动物寄生虫布鲁氏锥虫中的SUMO链形成。使用最近开发的经过工程改造以生产SUMO酰化蛋白的细菌菌株,我们证实了TbSUMO形成聚合物的能力,并使用定点突变分析确定了连接的类型。通过产生无法形成链的转基因前环寄生虫,我们证明了尽管对于正常生长不是必需的,但SUMO聚合反应决定了修饰蛋白在细胞核中的定位。此外,对端粒的FISH分析显示出不同的定位,具体取决于细胞的polySUMOylation能力。因此,我们的观察结果表明,TbSUMO链可能在建立有助于染色质组织的相互作用平台中发挥作用。

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