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首页> 外文期刊>The Biochemical Journal >Comparison of the SUMO1 and ubiquitin conjugation pathways during the inhibition of proteasome activity with evidence of SUMO1 recycling
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Comparison of the SUMO1 and ubiquitin conjugation pathways during the inhibition of proteasome activity with evidence of SUMO1 recycling

机译:SUMO1和泛素结合途径在抑制蛋白酶体活性过程中的比较,并具有SUMO1回收的证据

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To investigate potential interplay between the SUMO1 (small ubiquitin-related modifier-1) and ubiquitin pathways of post-translational protein modification, we examined aspects of their localization and conjugation status during proteasome inhibition. Our results indicate that these pathways converge upon the discrete sub-nuclear domains known its PML (promyelocytic leukaemia protein) NBs (nuclear-bodies). Proteasome inhibition generated all increased number of PML bodies, without,my obvious increase in size. Using a cell line that Constitutively expresses all epitope-tagged version of SUMO1, which was incorporated into high-molecular-mass conjugates, we observed SUMO1 accumulating in clusters around a subset of the NBs. Nuclear ubiquitin was initially observed in numerous speckles and foci, which bore no relationship to PML NBs in the absence of proteasome inhibition. However, during proteasome inhibition, total ubiquitin-conjugated species increased in the cell, as judged by Western blotting. Concomitantly the number of nuclear ubiquitin clusters decreased, and were almost quantitatively associated with the PML NBs, co-localizing with the SUMO-conjugated pool. Proteasome inhibition depleted the pool of free SUMO1 in the cell. Reversal of proteasome inhibition in the presence or absence of protein synthesis demonstrated that free SUMO1 was regenerated from the conjugated pool. The results indicate that a significant fraction of the free SUMO1 pool could be accounted for by recycling from the Conjugated pool and indeed it may be that, as for ubiquitin, SUMO1 needs to be removed from conjugated species prior to processing by the proteasome. Taken together with other recent reports oil the proteasome and PML NBs, these results suggest that the PML NBs may play all important role in integrating these pathways.
机译:为了研究SUMO1(小的泛素相关修饰因子-1)与翻译后蛋白修饰的泛素途径之间的潜在相互作用,我们研究了它们在蛋白酶体抑制过程中的定位和结合状态。我们的结果表明,这些途径汇聚在已知为PML(早幼粒细胞白血病蛋白)NBs(核体)的离散亚核域上。蛋白酶体抑制作用使所有PML体的数量增加,但没有明显增加。使用组成性表达SUMO1的所有表位标记版本的细胞系,将其整合到高分子质量缀合物中,我们观察到SUMO1聚集在NB子集周围的簇中。最初在许多斑点和病灶中观察到了核泛素,在没有蛋白酶体抑制的情况下,它们与PML NB无关。但是,在蛋白酶体抑制过程中,通过蛋白质印迹法判断,总的泛素结合物种在细胞中增加。随之而来的是核泛素簇的数量减少,并且几乎与PML NB在数量上相关,与SUMO共轭池共定位。蛋白酶体的抑制消耗了细胞中游离SUMO1的池。在存在或不存在蛋白质合成的情况下,蛋白酶体抑制作用的逆转表明游离的SUMO1从结合池中再生。结果表明,游离SUMO1库的很大一部分可以通过从共轭池中回收来解决,实际上,就泛素而言,SUMO1可能需要在蛋白酶体加工之前从共轭物种中去除。与其他近期报道一起为蛋白酶体和PML NB上油,这些结果表明PML NB可能在整合这些途径中起着所有重要的作用。

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