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首页> 外文期刊>The Plant Cell >FYVE1/FREE1 Interacts with the PYL4 ABA Receptor and Mediates Its Delivery to the Vacuolar Degradation Pathway
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FYVE1/FREE1 Interacts with the PYL4 ABA Receptor and Mediates Its Delivery to the Vacuolar Degradation Pathway

机译:FYVE1 / FREE1与PYL4 ABA受体相互作用,并介导其传递至液泡降解途径。

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摘要

Recently, we described the ubiquitylation of PYL4 and PYR1 by the RING E3 ubiquitin ligase RSL1 at the plasma membrane of Arabidopsis thaliana. This suggested that ubiquitylated abscisic acid (ABA) receptors might be targeted to the vacuolar degradation pathway because such ubiquitylation is usually an internalization signal for the endocytic route. Here, we show that FYVE1 (previously termed FREE1), a recently described component of the endosomal sorting complex required for transport (ESCRT) machinery, interacted with RSL1-receptor complexes and recruited PYL4 to endosomal compartments. Although the ESCRT pathway has been assumed to be reserved for integral membrane proteins, we show the involvement of this pathway in the degradation of ABA receptors, which can be associated with membranes but are not integral membrane proteins. Knockdown fyve1 alleles are hypersensitive to ABA, illustrating the biological relevance of the ESCRT pathway for the modulation of ABA signaling. In addition, fyve1 mutants are impaired in the targeting of ABA receptors for vacuolar degradation, leading to increased accumulation of PYL4 and an enhanced response to ABA. Pharmacological and genetic approaches revealed a dynamic turnover of ABA receptors from the plasma membrane to the endosomal/vacuolar degradation pathway, which was mediated by FYVE1 and was dependent on RSL1. This process involves clathrin-mediated endocytosis and trafficking of PYL4 through the ESCRT pathway, which helps to regulate the turnover of ABA receptors and attenuate ABA signaling.
机译:最近,我们描述了RING E3泛素连接酶RSL1在拟南芥的质膜上对PYL4和PYR1的泛素化。这表明泛素化的脱落酸(ABA)受体可能针对液泡降解途径,因为这种泛素化通常是内吞途径的内在信号。在这里,我们显示FYVE1(以前称为FREE1)是运输(ESCRT)机械所需的内体分选复合物的最新描述组件,它与RSL1受体复合物相互作用并将PYL4募集到内体区室。尽管已经假设ESCRT途径是为完整的膜蛋白保留的,但我们显示了该途径参与了ABA受体的降解,而ABA受体可能与膜有关,但不是完整的膜蛋白。击倒的fyve1等位基因对ABA过敏,说明了ESCRT途径与ABA信号转导的生物学相关性。此外,fyve1突变体在液泡降解的ABA受体靶向中受损,导致PYL4积累增加,对ABA的反应增强。药理和遗传学方法揭示了ABA受体从质膜到内体/微泡降解途径的动态转换,这由FYVE1介导并依赖于RSL1。此过程涉及网格蛋白介导的内吞作用和通过ESCRT途径转运PYL4,这有助于调节ABA受体的转换并减弱ABA信号传导。

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