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首页> 外文期刊>Plant Physiology >Genetic Analysis of SUMOylation in Arabidopsis: Conjugation of SUMO1 and SUMO2 to Nuclear Proteins Is Essential
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Genetic Analysis of SUMOylation in Arabidopsis: Conjugation of SUMO1 and SUMO2 to Nuclear Proteins Is Essential

机译:拟南芥SUMOylation的遗传分析:SUMO1和SUMO2与核蛋白的缀合至关重要

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摘要

The posttranslational addition of small ubiquitin-like modifiers (SUMOs) to other intracellular proteins has been implicated in a variety of eukaryotic functions, including modifying cytoplasmic signal transduction, nuclear import and subnuclear compartmentalization, DNA repair, and transcription regulation. For plants, in particular, both genetic analyses and the rapid accumulation of SUMO conjugates in response to various adverse environmental conditions suggest that SUMOylation plays a key role in the stress response. Through genetic analyses of various SUMO conjugation mutants, we show here that the SUMO1 and SUMO2 isoforms, in particular, and SUMOylation, in general, are essential for viability in Arabidopsis (Arabidopsis thaliana). Null T-DNA insertion mutants affecting the single genes encoding the SUMO-activating enzyme subunit SAE2 and the SUMO-conjugating enzyme SCE1 are embryonic lethal, with arrest occurring early in embryo development. Whereas the single genes encoding the SUMO1 and SUMO2 isoforms are not essential by themselves, double mutants missing both are also embryonic lethal. Viability can be restored by reintroduction of SUMO1 expression in the homozygous sum1-1 sum2-1 background. Various stresses, like heat shock, dramatically increase the pool of SUMO conjugates in planta. This increase involves SUMO1 and SUMO2 and is mainly driven by the SUMO protein ligase SIZ1, with most of the conjugates accumulating in the nucleus. Taken together, it appears that SIZ1-mediated conjugation of SUMO1 and SUMO2 to other intracellular proteins is essential in Arabidopsis, possibly through stress-induced modification of a potentially diverse pool of nuclear proteins.
机译:在翻译后向其他细胞内蛋白添加小泛素样修饰物(SUMO),这与多种真核功能有关,包括修饰细胞质信号转导,核输入和亚核区室化,DNA修复和转录调控。特别是对于植物,遗传分析和对各种不利环境条件的SUMO共轭物的快速积累都表明,SUMOylation在胁迫响应中起关键作用。通过各种SUMO共轭突变体的遗传分析,我们在这里显示SUMO1和SUMO2同工型,特别是SUMOylation,通常对于拟南芥(Arabidopsis thaliana)中的生存力至关重要。影响编码SUMO活化酶亚基SAE2和SUMO偶联酶SCE1的单个基因的无效T-DNA插入突变体具有胚胎致死性,在胚胎发育的早期就发生了逮捕。尽管编码SUMO1和SUMO2亚型的单个基因本身并不是必需的,但是缺失两者的双突变体也是胚胎致死的。可以通过在纯合子sum1-1 sum2-1背景中重新引入SUMO1表达来恢复活力。各种压力(例如热激)会极大地增加植物中SUMO共轭物的含量。这种增加涉及SUMO1和SUMO2,并且主要由SUMO蛋白连接酶SIZ1驱动,大多数缀合物积聚在细胞核中。两者合计,似乎在拟南芥中,SIZ1介导的SUMO1和SUMO2与其他细胞内蛋白的缀合是必不可少的,可能是通过胁迫诱导的潜在多样化核蛋白修饰而实现的。

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