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首页> 外文期刊>The Plant Cell >IRT1 DEGRADATION FACTOR1, a RING E3 ubiquitin ligase, regulates the degradation of IRON-REGULATED TRANSPORTER1 in arabidopsis.
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IRT1 DEGRADATION FACTOR1, a RING E3 ubiquitin ligase, regulates the degradation of IRON-REGULATED TRANSPORTER1 in arabidopsis.

机译:IRT1降解因子1是RING E3泛素连接酶,可调节拟南芥中铁调节转运蛋白1的降解。

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摘要

Fe is an essential micronutrient for plant growth and development; plants have developed sophisticated strategies to acquire ferric Fe from the soil. Nongraminaceous plants acquire Fe by a reduction-based mechanism, and graminaceous plants use a chelation-based mechanism. In Arabidopsis thaliana, which uses the reduction-based method, IRON-REGULATED TRANSPORTER1 (IRT1) functions as the most important transporter for ferrous Fe uptake. Rapid and constitutive degradation of IRT1 allows plants to quickly respond to changing conditions to maintain Fe homeostasis. IRT1 degradation involves ubiquitination. To identify the specific E3 ubiquitin ligases involved in IRT1 degradation, we screened a set of insertional mutants in RING-type E3 ligases and identified a mutant that showed delayed degradation of IRT1 and loss of IRT1-ubiquitin complexes. The corresponding gene was designated IRT1 DEGRADATION FACTOR1 (IDF1). Evidence of direct interaction between IDF1 and IRT1 in the plasma membrane supported the role of IDF1 in IRT1 degradation. IRT1 accumulation was reduced when coexpressed with IDF1 in yeast or Xenopus laevis oocytes. IDF1 function was RING domain dependent. The idf1 mutants showed increased tolerance to Fe deficiency, resulting from increased IRT1 levels. This evidence indicates that IDF1 directly regulates IRT1 degradation through its RING-type E3 ligase activity.
机译:铁是植物生长发育必不可少的微量营养素。植物已经开发出复杂的策略来从土壤中获取铁铁。非淀粉类植物通过基于还原的机制获取铁,而禾本科植物则使用基于螯合的机制。在使用基于还原的方法的拟南芥中,铁调节转运蛋白1(IRT1)是铁吸收铁的最重要转运蛋白。 IRT1的快速和组成性降解使植物能够快速响应不断变化的条件,以维持Fe稳态。 IRT1降解涉及泛素化。为了确定参与IRT1降解的特定E3泛素连接酶,我们在RING型E3连接酶中筛选了一组插入突变体,并鉴定了显示IRT1延迟降解和IRT1泛素复合物丢失的突变体。相应的基因称为IRT1 DEGRADATION FACTOR1(IDF1)。 IDF1和IRT1在质膜中直接相互作用的证据支持IDF1在IRT1降解中的作用。当在酵母或非洲爪蟾卵母细胞中与IDF1共表达时,IRT1积累减少。 IDF1功能取决于RING域。由于IRT1水平升高,idf1突变体对铁缺乏症的耐受性增强。该证据表明IDF1通过其RING型E3连接酶活性直接调节IRT1降解。

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