Gao Zhiyong, Chen Yi-Feng, Randlett Melynda D, Zhao Xue-Chu, Findell Jennifer L, Kieber Joseph J, Schaller G Eric
Department of Biochemistry and Molecular Biology, University of New Hampshire, Durham, New Hampshire 03824, USA.
J Biol Chem. 2003 Sep 5;278(36):34725-32. doi: 10.1074/jbc.M305548200. Epub 2003 Jun 23.
The plant hormone ethylene is perceived by a five-member family of receptors related to the bacterial histidine kinases. The Raf-like kinase CTR1 functions downstream of the ethylene receptors as a negative regulator of ethylene signal transduction. CTR1 is shown here to be associated with membranes of the endoplasmic reticulum in Arabidopsis as a result of its interactions with ethylene receptors. Membrane association of CTR1 is reduced by mutations that eliminate ethylene receptors and by a mutation in CTR1 that reduces its ability to bind to the ethylene receptor ETR1. Direct evidence that CTR1 is part of an ethylene receptor signaling complex was obtained by co-purification of the ethylene receptor ETR1 with a tagged version of CTR1 from an Arabidopsis membrane extract. The histidine kinase activity of ETR1 is not required for its association with CTR1, based on co-purification of tagged ETR1 mutants and CTR1 after expression in a transgenic yeast system. These data demonstrate that CTR1 is part of an ethylene receptor signaling complex in Arabidopsis and support a model in which localization of CTR1 to the endoplasmic reticulum is necessary for its function. Additional data that demonstrate a post-transcriptional effect of ethylene upon the expression of CTR1 suggest that production of ethylene receptor signaling complexes may be coordinately regulated.
植物激素乙烯由一个与细菌组氨酸激酶相关的五成员受体家族感知。类Raf激酶CTR1在乙烯受体下游发挥作用,作为乙烯信号转导的负调控因子。本文显示,由于CTR1与乙烯受体相互作用,它在拟南芥中与内质网的膜相关联。消除乙烯受体的突变以及CTR1中降低其与乙烯受体ETR1结合能力的突变都会减少CTR1与膜的关联。通过从拟南芥膜提取物中用标记版本的CTR1共纯化乙烯受体ETR1,获得了CTR1是乙烯受体信号复合物一部分的直接证据。基于在转基因酵母系统中表达后标记的ETR1突变体和CTR1的共纯化,ETR1与CTR1的关联不需要其组氨酸激酶活性。这些数据表明CTR1是拟南芥中乙烯受体信号复合物的一部分,并支持一种模型,即CTR1定位于内质网对其功能是必需的。证明乙烯对CTR1表达具有转录后效应的其他数据表明,乙烯受体信号复合物的产生可能受到协调调控。