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首页> 外文期刊>Plant physiology >RBR-Type E3 Ligases and the Ubiquitin-Conjugating Enzyme UBC26 Regulate Abscisic Acid Receptor Levels and Signaling(1)([OPEN])
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RBR-Type E3 Ligases and the Ubiquitin-Conjugating Enzyme UBC26 Regulate Abscisic Acid Receptor Levels and Signaling(1)([OPEN])

机译:RBR型E3连接酶和泛素缀合酶UBC26调节脱落酸受体水平和信号(1)([打开])

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摘要

The turnover of abscisic acid (ABA) signaling core components modulates the plant's response to ABA and is regulated by ubiquitination. We show that Arabidopsis (Arabidopsis thaliana) RING Finger ABA-Related1 (RFA1) and RFA4 E3 ubiquitin ligases, members of the RING between RING fingers (RBR)-type RSL1/RFA family, are key regulators of ABA receptor stability in root and leaf tissues, targeting ABA receptors for degradation in different subcellular locations. RFA1 is localized both in the nucleus and cytosol, whereas RFA4 shows specific nuclear localization and promotes nuclear degradation of ABA receptors. Therefore, members of the RSL1/RFA family interact with ABA receptors at plasma membrane, cytosol, and nucleus, targeting them for degradation via the endosomal/vacuolar RSL1-dependent pathway or 26S proteasome. Additionally, we provide insight into the physiological function of the relatively unexplored plant RBR-type E3 ligases, and through mutagenesis and biochemical assays we identified cysteine-361 in RFA4 as the putative active site cysteine, which is a distinctive feature of RBR-type E3 ligases. Endogenous levels of PYR1 and PYL4 ABA receptors were higher in the rfa1 rfa4 double mutant than in wild-type plants. UBC26 was identified as the cognate nuclear E2 enzyme that interacts with the RFA4 E3 ligase and forms UBC26-RFA4-receptor complexes in nuclear speckles. Loss-of-function ubc26 alleles and the rfa1 rfa4 double mutant showed enhanced sensitivity to ABA and accumulation of ABA receptors compared with the wild type. Together, our results reveal a sophisticated mechanism by which ABA receptors are targeted by ubiquitin at different subcellular locations, in which the complexity of the ABA receptor family is mirrored in the partner RBR-type E3 ligases.
机译:脱落酸(ABA)信号传导核心组分的营业额调节植物对ABA的反应,并通过泛素调节。我们展示拟南芥(Arabidopsis Thaliana)环手指ABA相关1(RFA1)和RFA4 E3泛素连接酶,环手指(RBR)-TYPERSL1 / RFA家族之间的环形元件是根和叶中ABA受体稳定性的关键调节因子组织,靶向ABA受体以降解不同亚细胞位置。 RFA1在核和细胞溶胶中定位,而RFA4显示特定的核定位并促进ABA受体的核降解。因此,RSL1 / RFA家族的成员与血浆膜,细胞溶溶胶和核的ABA受体相互作用,靶向它们通过内体/真空RSL1依赖性途径或26s蛋白酶体进行降解。另外,我们提供了对相对未开发的植物RBR型E3连接酶的生理功能的洞察,并且通过诱变和生化测定,我们将RFA4中的半胱氨酸-361鉴定为推定的活性位点半胱氨酸,这是RBR型E3的独特特征连接酶。在RFA1 RFA4双突变体中,Pyr1和Pyl4 ABA受体的内源性水平高于野生型植物。 UBC26被鉴定为同源核E2酶,其与RFA4 E3连接酶相互作用,并在核斑点中形成UBC26-RFA4受体络合物。与野生型相比,函数损失UBC26等位基因和RFA1 RFA4双突变体表现出对ABA的增强敏感性和ABA受体的积累。我们的结果揭示了一种复杂的机制,通过泛素在不同亚细胞位置靶向,其中ABA受体家族的复杂性在伴侣RBR型E3连接酶中镜像。

著录项

  • 来源
    《Plant physiology》 |2020年第4期|共20页
  • 作者单位

    Uiversidad Politecn Valencia Inst Biol Mol &

    Celular Plantas CSIC Valencia 46022 Spain;

    Uiversidad Politecn Valencia Inst Biol Mol &

    Celular Plantas CSIC Valencia 46022 Spain;

    Uiversidad Politecn Valencia Inst Biol Mol &

    Celular Plantas CSIC Valencia 46022 Spain;

    Uiversidad Politecn Valencia Inst Biol Mol &

    Celular Plantas CSIC Valencia 46022 Spain;

    Uiversidad Politecn Valencia Inst Biol Mol &

    Celular Plantas CSIC Valencia 46022 Spain;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Uiversidad Politecn Valencia Inst Biol Mol &

    Celular Plantas CSIC Valencia 46022 Spain;

    Uiversidad Politecn Valencia Inst Biol Mol &

    Celular Plantas CSIC Valencia 46022 Spain;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Uiversidad Politecn Valencia Inst Biol Mol &

    Celular Plantas CSIC Valencia 46022 Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物生理学;
  • 关键词

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