Hass Claudia, Lohrmann Jens, Albrecht Verónica, Sweere Uta, Hummel Florian, Yoo Sang Dong, Hwang Ildoo, Zhu Tong, Schäfer Eberhard, Kudla Jörg, Harter Klaus
Botanisches Institut, Universität zu Köln, Köln, Germany.
EMBO J. 2004 Aug 18;23(16):3290-302. doi: 10.1038/sj.emboj.7600337. Epub 2004 Jul 29.
Hormones are important regulators of plant growth and development. In Arabidopsis, perception of the phytohormones ethylene and cytokinin is accomplished by a family of sensor histidine kinases including ethylene-resistant (ETR) 1 and cytokinin-response (CRE) 1. We identified the Arabidopsis response regulator 2 (ARR2) as a signalling component functioning downstream of ETR1 in ethylene signal transduction. Analyses of loss-of-function and ARR2-overexpressing lines as well as functional assays in protoplasts indicate an important role of ARR2 in mediating ethylene responses. Additional investigations indicate that an ETR1-initiated phosphorelay regulates the transcription factor activity of ARR2. This mechanism may create a novel signal transfer from endoplasmic reticulum-associated ETR1 to the nucleus for the regulation of ethylene-response genes. Furthermore, global expression profiling revealed a complex ARR2-involving two-component network that interferes with a multitude of different signalling pathways and thereby contributes to the highly integrated signal processing machinery in higher plants.
激素是植物生长和发育的重要调节因子。在拟南芥中,植物激素乙烯和细胞分裂素的感知是由一类包括乙烯抗性(ETR)1和细胞分裂素响应(CRE)1的传感组氨酸激酶完成的。我们鉴定出拟南芥响应调节因子2(ARR2)是乙烯信号转导中在ETR1下游起作用的信号成分。对功能缺失和ARR2过表达株系的分析以及原生质体中的功能测定表明,ARR2在介导乙烯反应中起重要作用。进一步的研究表明,由ETR1启动的磷酸化信号传递调节ARR2的转录因子活性。这种机制可能会产生一种从内质网相关的ETR1到细胞核的新型信号传递,用于调节乙烯反应基因。此外,全基因组表达谱分析揭示了一个复杂的涉及ARR2的双组分网络,该网络干扰多种不同的信号通路,从而有助于高等植物中高度整合的信号处理机制。