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The Arabidopsis proteasome RPT5 subunits are essential for gametophyte development and show accession-dependent redundancy.

机译:拟南芥蛋白酶体RPT5亚基对于配子体发育至关重要,并显示出依赖于依赖的冗余。

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We investigated the role of the ubiquitin proteasome system (UPS), which allows proteins to be selectively degraded, during gametophyte development in Arabidopsis thaliana. Three mutant alleles altering the UPS were isolated in the Wassilewskija (Ws) accession: they affect the Regulatory Particle 5a (RPT5a) gene, which (along with RPT5b) encodes one of the six AAA-ATPases of the proteasome regulatory particle. In the heterozygous state, all three mutant alleles displayed 50% pollen lethality, suggesting that RPT5a is essential for male gametophyte development. However, a fourth mutant in the Columbia (Col) accession did not display such a phenotype because the RPT5b Col allele complements the rpt5a defect in the male gametophyte, whereas the RPT5b Ws allele does not. Double rpt5a rpt5b mutants showed a complete male and female gametophyte lethal phenotype in a Col background, indicating that RPT5 subunits are essential for both gametophytic phases. Mitotic divisions were affected in double mutant gametophytes correlating with an absence of the proteasome-dependent cyclinA3 degradation. Finally, we show that RPT5b expression is highly increased when proteasome functioning is defective, allowing complementation of the rpt5a mutation. In conclusion, RPT5 subunits are not only essential for both male and female gametophyte development but also display accession-dependent redundancy and are crucial in cell cycle progression.
机译:我们研究了泛素蛋白酶体系统(UPS)的作用,该系统可以在拟南芥(arabidopsis thaliana)的配子体发育过程中选择性地降解蛋白质。在Wassilewskija(Ws)保藏号中分离了三个改变UPS的突变等位基因:它们影响调控颗粒5a ( RPT5a )基因,该基因与 RPT5b < / i>)编码蛋白酶体调节颗粒的六个AAA-ATPase之一。在杂合状态下,所有三个突变等位基因均显示出50%的花粉致死性,这表明 RPT5a 对于雄配子体发育至关重要。但是,哥伦比亚(Col)的第四个突变体没有表现出这种表型,因为 RPT5b Col等位基因补充了雄配子体中的 rpt5a 缺陷,而 > RPT5b Ws等位基因则没有。双重 rpt5a rpt5b 突变体在Col背景下显示出完整的雄配子体和雌配子体致死表型,表明RPT5亚基对于两个配子体阶段都是必不可少的。有丝分裂分裂受到双重突变配子体的影响,这与缺乏蛋白酶体依赖的cyclinA3降解有关。最后,我们显示了蛋白酶体功能缺陷时 RPT5b 的表达会大大增加,从而允许 rpt5a 突变的互补。总之,RPT5亚基不仅是雄性和雌性配子体发育必不可少的,而且还显示出依赖于依赖的冗余性,并且在细胞周期进程中至关重要。

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