Department of Biology Education, Pusan National University, Busan, 46241, South Korea.
Department of Integrated Biological Science, Pusan National University, Busan, 46241, South Korea.
Plant Mol Biol. 2018 Apr;96(6):593-606. doi: 10.1007/s11103-018-0717-x. Epub 2018 Mar 21.
BPH1 acts as a substrate receptor of CRL3 complex and negatively regulates ABA-mediated cellular responses. The study on its function provides information that helps further understand the relationship between ABA signaling and UPS. Abscisic acid (ABA) plays a crucial role in a variety of cellular processes, including seed dormancy, inhibition of seedling growth, and drought resistance in plants. Cullin3-RING E3 ligase (CRL3) complex is a type of multi-subunit E3 ligase, and BTB/POZ protein, a component of CRL3 complex, functions as a receptor to determine a specific substrate. To elucidate the CRL3 complex that participates in ABA-mediated cellular processes, we first investigated ABA-inducible BTB/POZ genes based on data from the AtGenExpress Visualization Tool (AVT). We then isolated an ABA-inducible gene encoding a potential CRL3 substrate receptor in Arabidopsis, BPH1 (BTB/POZ protein hypersensitive to ABA 1). The isolate gene has a BTB/POZ domain and a NPH3 domain within its N-terminal and C-terminal region, respectively. Yeast two-hybrid and co-immunoprecipitation assays showed that BPH1 physically interacted with cullin3a, a scaffold protein of CRL3, suggesting that it functions as an Arabidopsis CRL3 substrate receptor. The functional mutation of BPH1 caused delayed seed germination in response to ABA and enhanced sensitivity by NaCl and mannitol treatments as ABA-related stresses. Moreover, bph1 mutants exhibited enhanced stomatal closure under ABA application and reduced water loss when compared with wild-type, implying their enhanced tolerance to drought stress. Based on the information from microarray/AVT data and expression analysis of various ABA-inducible genes between wild-type and bph1 plants following ABA treatments, we concluded loss of BPH1 resulted in hyper-induction of a large portion of ABA-inducible genes in response to ABA. Taken together, these results show that BPH1 is negatively involved in ABA-mediated cellular events.
BPH1 作为 CRL3 复合物的底物受体,负调控 ABA 介导的细胞反应。对其功能的研究提供了有助于进一步了解 ABA 信号转导和 UPS 之间关系的信息。脱落酸 (ABA) 在各种细胞过程中发挥着关键作用,包括种子休眠、幼苗生长抑制和植物的抗旱性。Cullin3-RING E3 连接酶 (CRL3) 复合物是一种多亚基 E3 连接酶,其 BT B/POZ 蛋白作为 CRL3 复合物的一个组成部分,作为受体发挥作用以确定特定的底物。为了阐明参与 ABA 介导的细胞过程的 CRL3 复合物,我们首先根据 AtGenExpress 可视化工具 (AVT) 中的数据,研究了 ABA 诱导的 BT B/POZ 基因。然后,我们从拟南芥中分离出一个 ABA 诱导的基因,该基因编码一个潜在的 CRL3 底物受体,命名为 BPH1(对 ABA 敏感的 BT B/POZ 蛋白 1)。该分离基因具有一个 BT B/POZ 结构域和一个 NPH3 结构域,分别位于其 N 端和 C 端区域内。酵母双杂交和共免疫沉淀实验表明,BPH1 与 CRL3 的支架蛋白 cullin3a 发生物理相互作用,表明其作为拟南芥 CRL3 底物受体发挥作用。BPH1 的功能突变导致种子对 ABA 的萌发延迟,并增强了对 NaCl 和甘露醇处理等 ABA 相关胁迫的敏感性。此外,与野生型相比,bph1 突变体在 ABA 处理下表现出增强的气孔关闭和减少的水分流失,表明其对干旱胁迫的耐受性增强。根据微阵列/AVT 数据和 ABA 处理后野生型和 bph1 植物中各种 ABA 诱导基因的表达分析,我们得出结论,BPH1 的缺失导致 ABA 诱导基因的大部分在响应 ABA 时过度诱导。综上所述,这些结果表明 BPH1 负参与 ABA 介导的细胞事件。