Department of Life Sciences and Biotechnology Research Center, Pohang University of Science and Technology, Pohang 790-784, Korea.
Plant J. 2012 Mar;69(6):934-45. doi: 10.1111/j.1365-313X.2011.04843.x. Epub 2011 Dec 12.
Cytokinins propagate signals via multiple phosphorelays in a mechanism similar to bacterial two-component systems. In Arabidopsis, signal outputs are determined by the activation state of transcription factors termed type-B Arabidopsis response regulators (ARRs); however, their regulatory mechanisms are largely unknown. In this study, we demonstrate that the proteolysis of ARR2, a type-B ARR, modulates cytokinin signaling outputs. ARR2-hemagglutinin (HA) is rapidly degraded by cytokinin treatment, but other type-B ARRs, such as ARR1-HA, ARR10-HA, ARR12-HA and ARR18-HA, are not. ARR2 degradation is mediated by the 26S proteasome pathway, and requires cytokinin-induced phosphorylation of Asp80 residue in the receiver domain. Through mutational analysis of amino acid residues in the receiver domain, we found that substitution of Lys90 with Gly inhibits ARR2 degradation. ARR2(K90G) -HA in transgenic Arabidopsis conferred enhanced cytokinin sensitivity in various developmental processes, including primary root elongation, callus induction, leaf senescence and hypocotyl growth. ARR2(K90G) -HA increased the expression of type-A ARRs, primary cytokinin-responsive genes and indicators of signaling output in two-component circuits. Expression of ARR2(K90G) -HA from the native ARR2 promoter in the arr2-4 knock-out mutant also increased cytokinin sensitivity. In conclusion, ARR2 proteolysis is involved in the maintenance of the primary signaling output for normal developmental processes mediated by cytokinin in Arabidopsis.
细胞分裂素通过类似于细菌双组分系统的多磷酸接力信号转导。在拟南芥中,信号输出取决于被称为拟南芥 B 型反应调节因子(ARR)的转录因子的激活状态;然而,其调控机制在很大程度上尚不清楚。在本研究中,我们证明了 ARR2 的蛋白水解(一种 B 型 ARR)调节细胞分裂素信号输出。ARR2-血影蛋白(HA)可被细胞分裂素处理迅速降解,但其他 B 型 ARRs,如 ARR1-HA、ARR10-HA、ARR12-HA 和 ARR18-HA,则不会。ARR2 降解由 26S 蛋白酶体途径介导,并需要受体结构域中 Asp80 残基的细胞分裂素诱导磷酸化。通过对受体结构域中氨基酸残基的突变分析,我们发现用 Gly 取代 Lys90 可抑制 ARR2 降解。在转基因拟南芥中,ARR2(K90G)-HA 赋予了各种发育过程(包括主根伸长、愈伤组织诱导、叶片衰老和下胚轴生长)对细胞分裂素的增强敏感性。ARR2(K90G)-HA 增加了 A 型 ARRs、初级细胞分裂素反应基因和双组分电路信号输出指标的表达。ARR2-4 敲除突变体中ARR2 启动子表达的 ARR2(K90G)-HA 也增加了细胞分裂素的敏感性。总之,ARR2 的蛋白水解参与了拟南芥中细胞分裂素介导的正常发育过程中初级信号输出的维持。