Dubos Christian, Huggins David, Grant Guy H, Knight Marc R, Campbell Malcolm M
Department of Plant Sciences, University of Oxford, South Parks Road, Oxford OX1 3RB, UK.
Plant J. 2003 Sep;35(6):800-10. doi: 10.1046/j.1365-313x.2003.01849.x.
The amino acid glycine has a well-established role in signalling in the mammalian central nervous system. For example, glycine acts synergistically with the major excitatory neurotransmitter, glutamate, to regulate the influx of ions such as calcium, through N-methyl-d-aspartate (NMDA) receptors. Plants possess NMDA-like receptors, generically referred to as glutamate receptors (GLRs), named on the basis of their presumed ligand, glutamate. Previously, glycine has not been implicated in plant GLR activity or any other aspect of plant signalling. Using transgenic Arabidopsis seedlings expressing aequorin to monitor ligand-mediated changes in the cytosolic concentration of Ca2+ ([Ca2+]cyt), the data presented herein show that glutamate and glycine act synergistically to control ligand-mediated gating of calcium in plants. Glutamate and glycine synergism also regulates hypocotyl elongation. Transient increases in [Ca2+]cyt mediated by glutamate and glycine, as well as hypocotyl elongation, were inhibited by 6,7-dinitroquinoxaline-2,3 dione (DNQX), a competitive inhibitor of animal GLRs. Using a multiscale docking algorithm in combination with a molecular model of the ligand-binding domain of plant GLRs, evidence is provided indicating that glycine, and not glutamate, is likely to be the natural ligand for most plant GLR subunits. These findings uncover a hitherto unconsidered role for glycine signalling in plants, and suggest that the synergistic action of glutamate and glycine at NMDA-like receptors predates the divergence of plants and animals.
氨基酸甘氨酸在哺乳动物中枢神经系统的信号传导中具有既定作用。例如,甘氨酸与主要的兴奋性神经递质谷氨酸协同作用,通过N-甲基-D-天冬氨酸(NMDA)受体调节钙离子等离子的内流。植物具有类似NMDA的受体,通常称为谷氨酸受体(GLRs),其命名基于推测的配体谷氨酸。此前,甘氨酸尚未被认为与植物GLR活性或植物信号传导的任何其他方面有关。本文利用表达水母发光蛋白的转基因拟南芥幼苗来监测配体介导的胞质钙离子浓度([Ca2+]cyt)变化,数据表明谷氨酸和甘氨酸协同作用以控制植物中配体介导的钙离子门控。谷氨酸和甘氨酸的协同作用还调节下胚轴伸长。由谷氨酸和甘氨酸介导的[Ca2+]cyt瞬时增加以及下胚轴伸长受到6,7-二硝基喹喔啉-2,3-二酮(DNQX)的抑制,DNQX是动物GLRs的竞争性抑制剂。结合植物GLRs配体结合域的分子模型使用多尺度对接算法,提供的证据表明,对于大多数植物GLR亚基而言,甘氨酸而非谷氨酸可能是天然配体。这些发现揭示了甘氨酸信号传导在植物中迄今未被考虑的作用,并表明谷氨酸和甘氨酸在类似NMDA受体处的协同作用早于植物和动物的分化。