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GIGANTUS1 (GTS1), a member of Transducin/WD40 protein superfamily, controls seed germination, growth and biomass accumulation through ribosome-biogenesis protein interactions in Arabidopsis thaliana

机译:GIGANTUS1(GTS1)是Transducin / WD40蛋白超家族的成员,它通过拟南芥中的核糖体-生物发生蛋白相互作用控制种子的发芽,生长和生物量积累。

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摘要

Abstract Background WD40 domains have been found in a plethora of eukaryotic proteins, acting as scaffolding molecules assisting proper activity of other proteins, and are involved in multi-cellular processes. They comprise several stretches of 44-60 amino acid residues often terminating with a WD di-peptide. They act as a site of protein-protein interactions or multi-interacting platforms, driving the assembly of protein complexes or as mediators of transient interplay among other proteins. In Arabidopsis, members of WD40 protein superfamily are known as key regulators of plant-specific events, biologically playing important roles in development and also during stress signaling. Results Using reverse genetic and protein modeling approaches, we characterize GIGANTUS1 (GTS1), a new member of WD40 repeat protein in Arabidopsis thaliana and provide evidence of its role in controlling plant growth development. GTS1 is highly expressed during embryo development and negatively regulates seed germination, biomass yield and growth improvement in plants. Structural modeling analysis suggests that GTS1 folds into a β-propeller with seven pseudo symmetrically arranged blades around a central axis. Molecular docking analysis shows that GTS1 physically interacts with two ribosomal protein partners, a component of ribosome Nop16, and a ribosome-biogenesis factor L19e through β-propeller blade 4 to regulate cell growth development. Conclusions Our results indicate that GTS1 might function in plant developmental processes by regulating ribosomal structural features, activities and biogenesis in plant cells. Our results suggest that GIGANTUS1 might be a promising target to engineer transgenic plants with higher biomass and improved growth development for plant-based bioenergy production.
机译:摘要背景WD40结构域在大量的真核蛋白质中被发现,它们是辅助其他蛋白质正常活动的支架分子,并参与多细胞过程。它们包含通常以WD二肽终止的几段44-60个氨基酸残基。它们充当蛋白质-蛋白质相互作用或多重相互作用平台的位点,驱动蛋白质复合物的组装或充当其他蛋白质之间短暂相互作用的介体。在拟南芥中,WD40蛋白超家族的成员被称为植物特异事件的关键调控因子,在生物学上在发育以及胁迫信号传递中起着重要作用。结果使用反向遗传和蛋白质建模方法,我们表征了拟南芥WD40重复蛋白的新成员GIGANTUS1(GTS1),并提供了其在控制植物生长发育中的作用的证据。 GTS1在胚胎发育过程中高度表达,并且负面调节植物的种子发芽,生物量产量和生长改善。结构模型分析表明,GTS1折叠成一个带有围绕中心轴的七个伪对称排列的叶片的β螺旋桨。分子对接分析表明,GTS1通过β螺旋桨叶片4与两个核糖体蛋白伴侣(核糖体Nop16的成分)和核糖体生物发生因子L19e物理相互作用,以调节细胞生长发育。结论我们的结果表明,GTS1可能通过调节植物细胞中的核糖体结构特征,活性和生物发生而在植物发育过程中起作用。我们的结果表明,GIGANTUS1可能是工程改造具有较高生物量和改善生长发育的转基因植物的有前途的目标,以用于基于植物的生物能源生产。

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