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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The ethylene-receptor family from Arabidopsis: structure and function
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The ethylene-receptor family from Arabidopsis: structure and function

机译:拟南芥中的乙烯受体家族:结构与功能

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摘要

The gaseous hormone ethylene regulates many aspects of plant growth and development. Ethylene is perceived by a family of high-affinity receptors typified by the ETR1 protein from Arabidopsis. The ETR1 gene codes for a protein which contains a hydrophobic N-terminal domain that binds ethylene and a C-terminal domain that is related in sequence to histidine kinase-response regulator two-component signal transducers found in bacteria. A structural model for the ethylene-binding domain is presented in which a Cu(I) ion is coordinated within membrane-spanning alpha-helices of the hydrophobic domain. It is proposed that binding of ethylene to the transition metal would induce a conformational change in the sensor domain that would be propagated to the cytoplasmic transmitter domain of the protein. A total of four additional genes that are related in sequence to ETR1 have been identified in Arabidopsis. Specific missense mutations in any one of the five genes leads to ethylene insensitivity in planta. Models for signal transduction that can account for the genetic dominance of these mutations are discussed. [References: 42]
机译:气体激素乙烯调节植物生长和发育的许多方面。乙烯是由以拟南芥属中的ETR1蛋白为代表的一系列高亲和力受体所感知的。 ETR1基因编码一种蛋白质,该蛋白质包含与乙烯结合的疏水性N末端结构域和与细菌中发现的组氨酸激酶响应调节剂两组分信号转导物序列相关的C末端结构域。提出了乙烯结合域的结构模型,其中Cu(I)离子在疏水域的跨膜α-螺旋内配位。提出乙烯与过渡金属的结合将引起传感器结构域的构象变化,该构象变化将传播至蛋白质的细胞质递质结构域。在拟南芥中已经鉴定出总共四个与ETR1序列相关的基因。五个基因中任何一个的特定错义突变都会导致植物中乙烯的不敏感性。讨论了可以解释这些突变的遗传优势的信号转导模型。 [参考:42]

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