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Ubiquitination dynamics in the early-branching eukaryote Giardia intestinalis

机译:分支真核生物贾第鞭毛虫肠道中的泛素化动力学

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摘要

Ubiquitination is a highly dynamic and versatile posttranslational modification that regulates protein function, stability, and interactions. To investigate the roles of ubiquitination in a primitive eukaryotic lineage, we utilized the early-branching eukaryote Giardia intestinalis. Using a combination of biochemical, immunofluorescence-based, and proteomics approaches, we assessed the ubiquitination status during the process of differentiation in Giardia. We observed that different types of ubiquitin modifications present specific cellular and temporal distribution throughout the Giardia life cycle from trophozoites to cyst maturation. Ubiquitin signal was detected in the wall of mature cysts, and enzymes implicated in cyst wall biogenesis were identified as substrates for ubiquitination. Interestingly, inhibition of proteasome activity did not affect trophozoite replication and differentiation, while it caused a decrease in cyst viability, arguing for proteasome involvement in cyst wall maturation. Using a proteomics approach, we identified around 200 high-confidence ubiquitinated candidates that vary their ubiquitination status during differentiation. Our results indicate that ubiquitination is critical for several cellular processes in this primitive eukaryote.
机译:泛素化是一种高度动态和多功能的翻译后修饰,可调节蛋白质的功能,稳定性和相互作用。为了研究泛素化在原始真核生物谱系中的作用,我们利用了早期分支的真核生物贾第虫肠。通过结合使用生物化学,基于免疫荧光和蛋白质组学的方法,我们评估了贾第鞭毛虫分化过程中的泛素化状态。我们观察到,不同类型的泛素修饰物在从贾第鞭毛虫到囊肿成熟的整个贾第鞭毛虫生命周期中都呈现出特定的细胞和时间分布。在成熟囊肿的壁中检测到泛素信号,并且与囊壁生物发生有关的酶被鉴定为泛素化的底物。有趣的是,蛋白酶体活性的抑制并没有影响滋养体的复制和分化,却导致了囊肿活力的下降,这是因为蛋白酶体参与了囊肿壁的成熟。使用蛋白质组学方法,我们鉴定了大约200个高自信的泛素化候选物,这些候选物在分化过程中会改变其泛素化状态。我们的结果表明泛素化对于这种原始真核生物中的几个细胞过程至关重要。

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