Asian Natural Environmental Science Center (ANESC), The University of Tokyo, Midori-cho, Nishitokyo-shi, Tokyo, Japan.
Laboratory of Crop Physiology, Research Faculty of Agriculture, Hokkaido University, Kita 9 Nishi 9 Kita-ku, Sapporo-shi, Hokkaido, Japan.
J Exp Bot. 2019 Nov 18;70(21):6101-6112. doi: 10.1093/jxb/erz384.
VIP1 is a bZIP transcription factor in Arabidopsis thaliana. When cells are exposed to mechanical stress, VIP1 transiently accumulates in the nucleus, where it regulates the expression of its target genes and suppresses mechanical stress-induced root waving. The nuclear-cytoplasmic shuttling of VIP1 is regulated by phosphorylation and calcium-dependent signaling, but specific regulators of these processes remain to be identified. Here, inhibitors of protein phosphatase 2A (PP2A) are shown to inhibit both the mechanical stress-induced dephosphorylation and nuclear accumulation of VIP1. The PP2A B subunit, which recruits substrates of PP2A holoenzyme, is classified into B, B', B'', and B''' families. Using bimolecular fluorescence complementation, in vitro pull-down, and yeast two-hybrid assays, we show that VIP1 interacts with at least two of the six members of the Arabidopsis PP2A B''-family subunit, which have calcium-binding EF-hand motifs. VIP1AAA, a constitutively nuclear-localized VIP1 variant with substitutions in putative phosphorylation sites of VIP1, suppressed the root waving induced by VIP1-SRDX (a repression domain-fused variant of VIP1). These results support the idea that VIP1 is dephosphorylated by PP2A and that the dephosphorylation suppresses the root waving. The phosphorylation sites of VIP1 and its homologs were narrowed down by in vitro phosphorylation, yeast two-hybrid, and protein subcellular localization assays.
VIP1 是拟南芥中的一个 bZIP 转录因子。当细胞受到机械压力时,VIP1 会短暂地积累在细胞核中,在那里它调节其靶基因的表达,并抑制机械压力诱导的根摆动。VIP1 的核质穿梭受磷酸化和钙依赖性信号调节,但这些过程的特定调节剂仍有待确定。本文显示,蛋白磷酸酶 2A(PP2A)的抑制剂既抑制 VIP1 机械压力诱导的去磷酸化,又抑制其核积累。招募 PP2A 全酶底物的 PP2A B 亚基分为 B、B'、B''和 B'''家族。通过双分子荧光互补、体外下拉和酵母双杂交实验,我们表明 VIP1 与拟南芥 PP2A B''-家族亚基的至少六个成员相互作用,这些成员具有钙结合 EF 手模体。VIP1AAA 是一个组成型核定位的 VIP1 变体,其 VIP1 的假定磷酸化位点发生了取代,它抑制了由 VIP1-SRDX(VIP1 的抑制结构域融合变体)诱导的根摆动。这些结果支持 VIP1 被 PP2A 去磷酸化的观点,并且去磷酸化抑制了根摆动。通过体外磷酸化、酵母双杂交和蛋白质亚细胞定位实验,缩小了 VIP1 及其同源物的磷酸化位点范围。