Snowden Christopher J, Thomas Benjamin, Baxter Charles J, Smith J Andrew C, Sweetlove Lee J
Department of Plant Sciences, University of Oxford, South Parks Road, Oxford, OX1 3RB, UK.
Plant J. 2015 Mar;81(5):651-60. doi: 10.1111/tpj.12766.
Vacuolar accumulation of acidic metabolites is an important aspect of tomato fruit flavour and nutritional quality. The amino acids Asp and Glu accumulate to high concentrations during ripening, while γ-aminobutyrate (GABA) shows an approximately stoichiometric decline. Given that GABA can be catabolised to form Glu and subsequently Asp, and the requirement for the fruit to maintain osmotic homeostasis during ripening, we hypothesised the existence of a tonoplast transporter that exports GABA from the vacuole in exchange for import of either Asp or Glu. We show here that the tomato vacuolar membrane possesses such a transport property: transport of Glu across isolated tonoplast vesicle membranes was trans-stimulated in counterexchange mode by GABA, Glu and Asp. We identified SlCAT9 as a candidate protein for this exchanger using quantitative proteomics of a tonoplast-enriched membrane fraction. Transient expression of a SlCAT9-YFP fusion in tobacco confirmed a tonoplast localisation. The function of the protein was examined by overexpression of SlCAT9 in transgenic tomato plants. Tonoplast vesicles isolated from transgenic plants showed higher rates of Glu and GABA transport than wild-type (WT) only when assayed in counterexchange mode with Glu, Asp, or GABA. Moreover, there were substantial increases in the content of all three cognate amino acids in ripe fruit from the transgenic plants. We conclude that SlCAT9 is a tonoplast Glu/Asp/GABA exchanger that strongly influences the accumulation of these amino acids during fruit development.
酸性代谢产物的液泡积累是番茄果实风味和营养品质的一个重要方面。在成熟过程中,氨基酸天冬氨酸(Asp)和谷氨酸(Glu)积累到高浓度,而γ-氨基丁酸(GABA)则呈现出近似化学计量的下降。鉴于GABA可被分解代谢形成Glu,进而形成Asp,且果实成熟期间需要维持渗透稳态,我们推测存在一种液泡膜转运蛋白,它从液泡中输出GABA,以交换导入Asp或Glu。我们在此表明,番茄液泡膜具有这样一种转运特性:GABA、Glu和Asp以反向交换模式反刺激Glu跨分离的液泡膜囊泡膜的转运。我们使用富含液泡膜的膜组分的定量蛋白质组学将SlCAT9鉴定为这种交换体的候选蛋白。SlCAT9-YFP融合蛋白在烟草中的瞬时表达证实了其液泡膜定位。通过在转基因番茄植株中过表达SlCAT9来研究该蛋白的功能。仅在与Glu、Asp或GABA以反向交换模式进行测定时,从转基因植株中分离出的液泡膜囊泡显示出比野生型(WT)更高的Glu和GABA转运速率。此外,转基因植株成熟果实中所有三种同源氨基酸的含量都有显著增加。我们得出结论,SlCAT9是一种液泡膜Glu/Asp/GABA交换体,它在果实发育过程中强烈影响这些氨基酸的积累。