Department of Systems Biology and Division of Life Science, Yonsei University, Seoul, 03722, Korea.
Institute of Life Science and Biotechnology, Yonsei University, Seoul, 03722, Korea.
Plant J. 2020 Jul;103(2):824-842. doi: 10.1111/tpj.14775. Epub 2020 May 2.
Ubiquitination is a critical post-translational protein modification that has been implicated in diverse cellular processes, including abiotic stress responses, in plants. In the present study, we identified and characterized a T-DNA insertion mutant in the At5g10650 locus. Compared to wild-type Arabidopsis plants, at5g10650 progeny were hyposensitive to ABA at the germination stage. At5g10650 possessed a single C-terminal C3HC4-type Really Interesting New Gene (RING) motif, which was essential for ABA-mediated germination and E3 ligase activity in vitro. At5g10650 was closely associated with microtubules and microtubule-associated proteins in Arabidopsis and tobacco leaf cells. Localization of At5g10650 to the nucleus was frequently observed. Unexpectedly, At5g10650 was identified as JAV1-ASSOCIATED UBIQUITIN LIGASE1 (JUL1), which was recently reported to participate in the jasmonate signaling pathway. The jul1 knockout plants exhibited impaired ABA-promoted stomatal closure. In addition, stomatal closure could not be induced by hydrogen peroxide and calcium in jul1 plants. jul1 guard cells accumulated wild-type levels of H O after ABA treatment. These findings indicated that JUL1 acts downstream of H O and calcium in the ABA-mediated stomatal closure pathway. Typical radial arrays of microtubules were maintained in jul1 guard cells after exposure to ABA, H O , and calcium, which in turn resulted in ABA-hyposensitive stomatal movements. Finally, jul1 plants were markedly more susceptible to drought stress than wild-type plants. Overall, our results suggest that the Arabidopsis RING E3 ligase JUL1 plays a critical role in ABA-mediated microtubule disorganization, stomatal closure, and tolerance to drought stress.
泛素化是一种重要的翻译后蛋白修饰,它与多种细胞过程有关,包括植物的非生物胁迫反应。在本研究中,我们鉴定并表征了 At5g10650 基因座的 T-DNA 插入突变体。与野生型拟南芥相比,at5g10650 后代在萌发阶段对 ABA 表现出低敏感性。At5g10650 具有单个 C 末端 C3HC4 型 Really Interesting New Gene (RING) 基序,该基序对于 ABA 介导的萌发和体外 E3 连接酶活性是必需的。At5g10650 在拟南芥和烟草叶片细胞中与微管和微管相关蛋白密切相关。At5g10650 定位于细胞核的现象经常观察到。出乎意料的是,At5g10650 被鉴定为 JAV1-ASSOCIATED UBIQUITIN LIGASE1 (JUL1),它最近被报道参与茉莉酸信号通路。jul1 敲除植物表现出 ABA 促进的气孔关闭受损。此外,在 jul1 植物中,过氧化氢和钙不能诱导气孔关闭。ABA 处理后,jul1 保卫细胞中 H O 的积累量与野生型相同。这些发现表明,JUL1 在 ABA 介导的气孔关闭途径中位于 H O 和钙的下游。在暴露于 ABA、H O 和钙后,jul1 保卫细胞中典型的微管放射状排列得以维持,这反过来又导致了 ABA 诱导的气孔运动。最后,jul1 植物对干旱胁迫的敏感性明显高于野生型植物。总的来说,我们的研究结果表明,拟南芥 RING E3 连接酶 JUL1 在 ABA 介导的微管解聚、气孔关闭和耐旱性方面发挥着关键作用。