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Selective Binding of Glutathione Conjugates of Fatty Acid Derivatives by Plant Glutathione Transferases*

机译:植物谷胱甘肽转移酶对脂肪酸衍生物的谷胱甘肽缀合物的选择性结合*

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摘要

Proteomic studies with Arabidopsis thaliana have revealed that the plant-specific Tau (U) class glutathione transferases (GSTs) are selectively retained by S-hexylglutathione affinity supports. Overexpression of members of the Arabidopsis GST superfamily in Escherichia coli showed that 25 of the complement of 28 GSTUs caused the aberrant accumulation of acylated glutathione thioesters in vivo, a perturbation that was not observed with other GST classes. Each GSTU caused a specific group of fatty acyl derivatives to accumulate, which varied in chain length (C6 to C18), additional oxygen content (0 or 1), and desaturation (0 or 1). Thioesters bound tightly to recombinant GSTs (Kd ∼ 1 μm), explaining their accumulation. Transient expression of GSTUs in Nicotiana benthamiana followed by recovery by Strep-tag affinity chromatography allowed the respective plant ligands to be extracted and characterized. Again, each GST showed a distinct profile of recovered metabolites, notably glutathionylated oxophytodienoic acid and related oxygenated fatty acids. Similarly, the expression of the major Tau protein GSTU19 in the endogenous host Arabidopsis led to the selective binding of the glutathionylated oxophytodienoic acid-glutathione conjugate, with the enzyme able to catalyze the conjugation reaction. Additional ligands identified in planta included other fatty acid derivatives including divinyl ethers and glutathionylated chlorogenic acid. The strong and specific retention of various oxygenated fatty acids by each GSTU and the conservation in binding observed in the different hosts suggest that these proteins have selective roles in binding and conjugating these unstable metabolites in vivo.
机译:拟南芥的蛋白质组学研究表明,植物特异性Tau(U)类谷胱甘肽转移酶(GST)被S-己基谷胱甘肽亲和支持体选择性保留。拟南芥GST超家族成员在大肠杆菌中的过量表达表明28个GSTU的互补序列中有25个在体内引起酰化谷胱甘肽硫酯的异常积累,而其他GST类则未观察到这种干扰。每个GSTU都会引起一组特定的脂肪酰基衍生物积聚,它们的链长(C6至C18),附加的氧含量(0或1)和去饱和度(0或1)有所不同。硫酯与重组GST(Kd〜1μm)紧密结合,说明了它们的积累。 GSTUs在烟草中的瞬时表达,然后通过链球菌标签亲和色谱法回收,从而可以提取并鉴定相应的植物配体。同样,每个GST都显示出不同的回收代谢物,尤其是谷胱甘肽化的氧代苯二酸和相关的含氧脂肪酸。类似地,内源宿主拟南芥中主要Tau蛋白GSTU19的表达导致谷胱甘肽化的氧代乙二酸-谷胱甘肽偶联物与能够催化偶联反应的酶选择性结合。在植物中鉴定出的其他配体包括其他脂肪酸衍生物,包括二乙烯基醚和谷胱甘肽化的绿原酸。每个GSTU对各种含氧脂肪酸的强而特异性的保留以及在不同宿主中观察到的结合保守性表明,这些蛋白质在体内结合和结合这些不稳定的代谢物方面具有选择性作用。

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