首页> 美国卫生研究院文献>Plant Physiology >The OsFBK1 E3 Ligase Subunit Affects Anther and Root Secondary Cell Wall Thickenings by Mediating Turnover of a Cinnamoyl-CoA Reductase
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The OsFBK1 E3 Ligase Subunit Affects Anther and Root Secondary Cell Wall Thickenings by Mediating Turnover of a Cinnamoyl-CoA Reductase

机译:OsFBK1 E3连接酶亚基通过介导肉桂酰基辅酶A还原酶的营业额影响花药和根次级细胞壁的增厚。

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摘要

Regulated proteolysis by the ubiquitin-26S proteasome system challenges transcription and phosphorylation in magnitude and is one of the most important regulatory mechanisms in plants. This article describes the characterization of a rice (Oryza sativa) auxin-responsive Kelch-domain-containing F-box protein, OsFBK1, found to be a component of an SCF E3 ligase by interaction studies in yeast. Rice transgenics of OsFBK1 displayed variations in anther and root secondary cell wall content; it could be corroborated by electron/confocal microscopy and lignification studies, with no apparent changes in auxin content/signaling pathway. The presence of U-shaped secondary wall thickenings (or lignin) in the anthers were remarkably less pronounced in plants overexpressing OsFBK1 as compared to wild-type and knockdown transgenics. The roots of the transgenics also displayed differential accumulation of lignin. Yeast two-hybrid anther library screening identified an OsCCR that is a homolog of the well-studied Arabidopsis (Arabidopsis thaliana) IRX4; OsFBK1-OsCCR interaction was confirmed by fluorescence and immunoprecipitation studies. Degradation of OsCCR mediated by SCFOsFBK1 and the 26S proteasome pathway was validated by cell-free experiments in the absence of auxin, indicating that the phenotype observed is due to the direct interaction between OsFBK1 and OsCCR. Interestingly, the OsCCR knockdown transgenics also displayed a decrease in root and anther lignin depositions, suggesting that OsFBK1 plays a role in the development of rice anthers and roots by regulating the cellular levels of a key enzyme controlling lignification.
机译:泛素-26S蛋白酶体系统对蛋白质的调节作用在数量上挑战转录和磷酸化,是植物中最重要的调节机制之一。本文介绍了水稻(Oryza sativa)生长素响应性含Kelch域的F-box蛋白OsFBK1的特性,该蛋白通过在酵母中的相互作用研究而被发现是SCF E3连接酶的组成部分。 OsFBK1的水稻转基因在花药和根系次生细胞壁含量上表现出差异;电子/锥度显微镜和木质化研究可以证实这一点,而生长素含量/信号通路没有明显变化。与野生型和基因敲除的转基因植物相比,在过表达OsFBK1的植物中,花药中U形次生壁增厚(或木质素)的存在显着降低。转基因植物的根也显示出木质素的差异积累。酵母双杂交花药库筛选确定了一个OsCCR,它是经过充分研究的拟南芥(Arabidopsis thaliana)IRX4的同源物。通过荧光和免疫沉淀研究证实了OsFBK1-OsCCR的相互作用。在没有生长素的情况下,通过无细胞实验验证了由SCF OsFBK1 和26S蛋白酶体途径介导的OsCCR的降解,表明观察到的表型是由于OsFBK1和OsCCR之间的直接相互作用所致。有趣的是,OsCCR组合式转基因基因还显示出根和花药木质素沉积的减少,这表明OsFBK1通过调节控制木质素化的关键酶的细胞水平在水稻花药和根的发育中发挥作用。

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