Carnegie Institution for Science, Department of Plant Biology, Stanford, California 94305, USA.
Plant Physiol. 2010 Feb;152(2):762-73. doi: 10.1104/pp.109.151746. Epub 2009 Dec 16.
Phloem and xylem transport of amino acids involves two steps: export from one cell type to the apoplasm, and subsequent import into adjacent cells. High-affinity import is mediated by proton/amino acid cotransporters, while the mechanism of export remains unclear. Enhanced expression of the plant-specific type I membrane protein Glutamine Dumper1 (GDU1) has previously been shown to induce the secretion of glutamine from hydathodes and increased amino acid content in leaf apoplasm and xylem sap. In this work, tolerance to low concentrations of amino acids and transport analyses using radiolabeled amino acids demonstrate that net amino acid uptake is reduced in the glutamine-secreting GDU1 overexpressor gdu1-1D. The net uptake rate of phenylalanine decreased over time, and amino acid net efflux was increased in gdu1-1D compared with the wild type, indicating increased amino acid export from cells. Independence of the export from proton gradients and ATP suggests that overexpression of GDU1 affects a passive export system. Each of the seven Arabidopsis (Arabidopsis thaliana) GDU genes led to similar phenotypes, including increased efflux of a wide spectrum of amino acids. Differences in expression profiles and functional properties suggested that the GDU genes fulfill different roles in roots, vasculature, and reproductive organs. Taken together, the GDUs appear to stimulate amino acid export by activating nonselective amino acid facilitators.
从一种细胞类型输出到质外体,然后随后被相邻细胞吸收。高亲和力的吸收由质子/氨基酸协同转运蛋白介导,而输出的机制仍不清楚。先前的研究表明,植物特异性的 I 型膜蛋白 Glutamine Dumper1 (GDU1) 的增强表达会诱导叶水孔从谷氨酰胺中分泌,并增加叶片质外体和木质部汁液中的氨基酸含量。在这项工作中,使用放射性标记的氨基酸进行耐受性和转运分析表明,在分泌谷氨酰胺的 GDU1 过表达体 gdu1-1D 中,净氨基酸摄取减少。与野生型相比,gdu1-1D 中苯丙氨酸的净摄取率随时间下降,氨基酸净外排增加,表明细胞中氨基酸的外排增加。氨基酸的输出不依赖于质子梯度和 ATP,这表明 GDU1 的过表达会影响被动输出系统。拟南芥 (Arabidopsis thaliana) 的七个 GDU 基因中的每一个都导致类似的表型,包括广泛的氨基酸外排增加。表达谱和功能特性的差异表明,GDU 基因在根部、脉管系统和生殖器官中发挥不同的作用。总的来说,GDUs 似乎通过激活非选择性氨基酸载体来刺激氨基酸的输出。