Monoubiquitinated MxIRT1 acts as an iron receptor to determine MxIRT1 vacuole degradation or plasma membrane recycling via endocytosis.

IF 2.8 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Song Tan, Shuang Li, Xiu-Yue Zhang, Yu-Meng Li, Peng Zhang, Li-Ping Yin
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Abstract

IRON-REGULATED TRANSPORTER 1 (IRT1) is critical for iron uptake in roots, and its exocytosis to the plasma membrane (PM) is regulated by the iron status sensed by the histidine-rich domain (HRM). However, studies on the fate of IRT1 after fusion with PM in response to iron conditions are still limited. In this study, we found that K165 and K196 regulate the monoubiquitination of MxIRT1 (mUb-MxIRT1), which acts as a receptor delivering signals from HRM to downstream effectors such as clathrin to determine the fate of MxIRT1. Iron supply led MxIRT1 in the PM to monoubiquitin-dependent endocytosis which could be inhibited by endocytosis inhibitor TyrA23 or in the double site-directed mutant K165/K196R. Subsequently, the endocytosis pathway to the vacuole was inhibited by vacuolar protease inhibitor Leupeptin in excessive iron conditions and the inability of being able to respond to iron change, indicated by the protein accumulating in the PM, contributed to iron toxicity in K165/K196R transgenic Arabidopsis. With iron availability decreasing again, MxIRT1 could dock close to the PM waiting for to be recycled. Another monoubiquitination site, K26, was necessary for MxIRT1 Endoplasmic Reticulum (ER) export as site-directed mutant K26R lost the ability of PM targeting, and co-localized with the COPII subunit of the coat protein OsSec24. Therefore, after K26-directed ER export and iron-induced PM fusion, mUb-MxIRT1 determines subsequent vacuolar degradation or recycling to the PM via endocytosis for maintaining iron homeostasis.

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单泛素化MxIRT1作为铁受体,通过内吞作用决定MxIRT1液泡降解或质膜再循环。
铁调节转运蛋白1 (IRT1)对根吸收铁至关重要,其向质膜(PM)的胞外作用受组氨酸富结构域(HRM)感知铁状态的调节。然而,关于IRT1与PM融合后对铁条件的响应的研究仍然有限。在本研究中,我们发现K165和K196调节MxIRT1 (mUb-MxIRT1)的单泛素化,MxIRT1作为受体将HRM信号传递给下游效应物,如网格蛋白,从而决定MxIRT1的命运。铁供应导致PM中的MxIRT1发生单泛素依赖的内吞作用,这种内吞作用可以被内吞抑制剂TyrA23或双位点定向突变体K165/K196R抑制。随后,空泡蛋白酶抑制剂lepeptin在铁过量条件下抑制了液泡的内噬途径,并且在PM中积累的蛋白质表明无法对铁变化做出反应,这是导致K165/K196R转基因拟南芥铁毒性的原因。随着铁的可用性再次下降,MxIRT1可以停靠在PM附近等待回收。另一个单泛素化位点K26对于MxIRT1内质网(ER)的输出是必需的,因为定点突变体K26R失去了PM靶向的能力,并与外壳蛋白OsSec24的COPII亚基共定位。因此,在k26定向内质网输出和铁诱导的PM融合后,mUb-MxIRT1通过内吞作用决定随后的空泡降解或再循环到PM,以维持铁的稳态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Plant Signaling & Behavior
Plant Signaling & Behavior Agricultural and Biological Sciences-Plant Science
CiteScore
6.00
自引率
3.40%
发文量
111
期刊介绍: Plant Signaling & Behavior, a multidisciplinary peer-reviewed journal published monthly online, publishes original research articles and reviews covering the latest aspects of signal perception and transduction, integrative plant physiology, and information acquisition and processing.
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