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首页> 外文期刊>The Plant Cell >Ubiquitin Ligases RGLG1 and RGLG5 Regulate Abscisic Acid Signaling by Controlling the Turnover of Phosphatase PP2CA
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Ubiquitin Ligases RGLG1 and RGLG5 Regulate Abscisic Acid Signaling by Controlling the Turnover of Phosphatase PP2CA

机译:泛素天冬氨酸RGLG1和RGLG5通过控制磷酸酶PP2CA的转换来调节脱落酸信号。

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Abscisic acid (ABA) is an essential hormone for plant development and stress responses. ABA signaling is suppressed by clade A PP2C phosphatases, which function as key repressors of this pathway through inhibiting ABA-activated SnRK2s (SNF1-related protein kinases). Upon ABA perception, the PYR/PYL/RCAR ABA receptors bind to PP2Cs with high affinity and biochemically inhibit their activity. While thismechanismhas been extensively studied, how PP2Cs are regulated at the protein level is only starting to be explored. Arabidopsis thaliana RING DOMAIN LIGASE5 (RGLG5) belongs to a five-member E3 ubiquitin ligase family whose target proteins remain unknown. We report that RGLG5, together with RGLG1, releases the PP2C blockade of ABA signaling by mediating PP2CA protein degradation. ABA promotes the interaction of PP2CA with both E3 ligases, which mediate ubiquitination of PP2CA and are required for ABA-dependent PP2CA turnover. Downregulation of RGLG1 and RGLG5 stabilizes endogenous PP2CA and diminishes ABA-mediated responses. Moreover, the reduced response to ABA in germination assays is suppressed in the rglg1 amiR (artificial microRNA)-rglg5 pp2ca-1 triple mutant, supporting a functional link among these loci. Overall, our data indicate that RGLG1 and RGLG5 are important modulators of ABA signaling, and they unveil amechanismfor activation of the ABA pathway by controlling PP2C half-life.
机译:脱落酸(ABA)是植物生长和胁迫反应的必需激素。进化枝A PP2C磷酸酶抑制了ABA信号传导,该酶通过抑制ABA激活的SnRK2s(与SNF1相关的蛋白激酶)而成为该途径的关键阻遏物。根据ABA感知,PYR / PYL / RCAR ABA受体以高亲和力结合PP2C,并在生物化学上抑制其活性。虽然已经对该机制进行了广泛研究,但如何在蛋白质水平上调节PP2C才刚刚开始探索。拟南芥环域连接酶5(RGLG5)属于五成员E3泛素连接酶家族,其靶蛋白仍然未知。我们报告RGRG5,与RGLG1一起,通过介导PP2CA蛋白降解释放ABA信号的PP2C阻断。 ABA促进PP2CA与两种E3连接酶的相互作用,这两种酶介导PP2CA的泛素化,并且是ABA依赖的PP2CA转换所必需的。 RGLG1和RGLG5的下调稳定内源PP2CA并减少ABA介导的反应。此外,在发芽测定中对ABA降低的反应在rglg1 amiR(人工microRNA)-rglg5 pp2ca-1三重突变体中得到抑制,从而支持了这些基因座之间的功能连接。总体而言,我们的数据表明RGLG1和RGLG5是ABA信号传导的重要调节剂,它们揭示了通过控制PP2C半衰期激活ABA途径的机制。

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