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AtAIRP2 E3 连接酶通过促进其 ATP1/SDIRIP1 底物周转来影响脱落酸和高盐响应。

AtAIRP2 E3 Ligase Affects ABA and High-Salinity Responses by Stimulating Its ATP1/SDIRIP1 Substrate Turnover.

作者信息

Oh Tae Rin, Kim Jong Hum, Cho Seok Keun, Ryu Moon Young, Yang Seong Wook, Kim Woo Taek

机构信息

Department of Systems Biology, College of Life Science and Biotechnology, Yonsei University, Seoul 120-749, Korea.

Department of Systems Biology, College of Life Science and Biotechnology, Yonsei University, Seoul 120-749, Korea

出版信息

Plant Physiol. 2017 Aug;174(4):2515-2531. doi: 10.1104/pp.17.00467. Epub 2017 Jun 16.

Abstract

AtAIRP2 is a cytosolic RING-type E3 ubiquitin ligase that positively regulates an abscisic acid (ABA) response in Arabidopsis (). Yeast two-hybrid screening using AtAIRP2 as bait identified ATP1 (AtAIRP2 Target Protein1) as a substrate of AtAIRP2. ATP1 was found to be identical to SDIRIP1, which was reported recently to be a negative factor in ABA signaling and a target protein of the RING E3 ligase SDIR1. Accordingly, ATP1 was renamed ATP1/SDIRIP1. A specific interaction between AtAIRP2 and ATP1/SDIRIP1 and ubiquitination of ATP1/SDIRIP1 by AtAIRP2 were demonstrated in vitro and in planta. The turnover of ATP1/SDIRIP1 was regulated by AtAIRP2 in cell-free degradation and protoplast cotransfection assays. The ABA-mediated germination assay of : double mutant progeny revealed that ATP1/SDIRIP1 acts downstream of AtAIRP2. AtAIRP2 and SDIR1 reciprocally complemented the ABA- and salt-insensitive germination phenotypes of and mutants, respectively, indicating their combinatory roles in seed germination. Subcellular localization and bimolecular fluorescence complementation experiments in the presence of MG132, a 26S proteasome inhibitor, showed that AtAIRP2 and ATP1/SDIRIP1 were colocalized to the cytosolic spherical body, which lies in close proximity to the nucleus, in tobacco () leaf cells. The 26S proteasome subunits RPN12a and RPT1 and the molecular chaperones HSP70 and HSP101 were colocalized to these discrete punctae-like structures. These results raised the possibility that AtAIRP2 and ATP1/SDIRIP1 interact in the cytosolic spherical compartment. Collectively, our data suggest that the down-regulation of ATP1/SDIRIP1 by AtAIRP2 and SDIR1 RING E3 ubiquitin ligases is critical for ABA and high-salinity responses during germination in Arabidopsis.

摘要

AtAIRP2是一种胞质环型E3泛素连接酶,它正向调控拟南芥中的脱落酸(ABA)应答。以AtAIRP2为诱饵进行酵母双杂交筛选,鉴定出ATP1(AtAIRP2靶蛋白1)是AtAIRP2的底物。发现ATP1与SDIRIP1相同,最近有报道称SDIRIP1是ABA信号传导中的负因子以及环型E3连接酶SDIR1的靶蛋白。因此,ATP1被重新命名为ATP1/SDIRIP1。在体外和植物体内均证实了AtAIRP2与ATP1/SDIRIP1之间的特异性相互作用以及AtAIRP2对ATP1/SDIRIP1的泛素化作用。在无细胞降解和原生质体共转染实验中,ATP1/SDIRIP1的周转受AtAIRP2调控。对拟南芥双突变体后代进行的ABA介导的萌发实验表明,ATP1/SDIRIP1在AtAIRP2的下游起作用。AtAIRP2和SDIR1分别互补了拟南芥和突变体对ABA和盐不敏感的萌发表型,表明它们在种子萌发中具有协同作用。在26S蛋白酶体抑制剂MG132存在的情况下进行的亚细胞定位和双分子荧光互补实验表明,AtAIRP2和ATP1/SDIRIP1共定位于烟草叶细胞中靠近细胞核的胞质球状体。26S蛋白酶体亚基RPN12a和RPT1以及分子伴侣HSP70和HSP101共定位于这些离散的点状结构。这些结果增加了AtAIRP2和ATP1/SDIRIP1在胞质球状体区室中相互作用的可能性。总体而言,我们的数据表明,AtAIRP2和SDIR1环型E3泛素连接酶对ATP1/SDIRIP1的下调对于拟南芥萌发期间的ABA和高盐应答至关重要。

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