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Synthesis of Phytochelatins and Homo-Phytochelatins in Pisum sativum L.

机译:豌豆(Pisum sativum L.)中植物螯合物和纯植物螯合物的合成

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摘要

In the roots of pea plants (Pisum sativum L.) cultivated with 20 [mu]M CdCl2 for 3 d, synthesis of phytochelatins [PCs or ([gamma]EC)nG, where [gamma]EC is [gamma]glutamylcysteine and G is glycine] and homophytochelatins [h-PCs, ([gamma]EC)n[beta]-alanine] is accompanied by a drastic decrease in glutathione (GSH) content, but an increase in homoglutathione (h-GSH) content. In contrast, the in vitro activity of GSH synthetase increases 5-fold, whereas h-GSH synthetase activity increases regardless of Cd exposure. The consititutive enzyme PC synthase, which catalyzes the transfer of the [gamma]-EC moiety of GSH to an acceptor GSH molecule thus producing ([gamma]EC)2G, is activated by heavy metals, with Cd and Cu being strong activators and Zn being a very poor activator. Using h-GSH or hm-GSH for substrate, the synthesis rate of([gamma]EC)2[beta]-alanine and [gamma]EC)2-serine is only 2.4 and 0.3%, respectively, of the sythesis rate of ([gamma]EC)2G with GSH as substrate. However, in the presence of a constant GSH level, increasing the concentration of h-GSH or hm-GSH results in increased synthesis of ([gamma]EC)2[beta]-alanine or ([gamma]EC)2-serine, respecively; simultaneously, the synthesis of ([gamma]EC)2G is inhibited. [gamma]EC is not a substrate of PC synthase. These results are best explained by assuming that PC synthase has a [gamma]EC donor binding site, which is very specific for GSH, and a [gamma]EC acceptor binding site, which is less specific and accepts several tripeptides, namely GSH, h-GSH, and hm-GSH.
机译:在用20μMCdCl 2培养3天的豌豆植物(Pisum sativum L.)的根中,合成植物螯合蛋白[PCs或(γEC)nG,其中γEC是γ谷氨酰半胱氨酸和G。是甘氨酸]和同型植物螯合素[h-PCs,(γEC)nβ-丙氨酸]伴随着谷胱甘肽(GSH)含量的急剧下降,但同谷胱甘肽(h-GSH)含量的增加。相反,GSH合成酶的体外活性增加了5倍,而h-GSH合成酶的活性增加了,而与Cd暴露无关。组成酶PC合酶,其催化GSH的γ-EC部分转移至受体GSH分子从而产生(γEC)2G,被重金属激活,其中Cd和Cu是强激活剂,而Zn是一个非常糟糕的激活者。使用h-GSH或hm-GSH作为底物,(γEC)2β-丙氨酸和γEC)2-丝氨酸的合成率分别仅是α-GSH或γ-GSH的合成率的2.4%和0.3%。以GSH为底物的(γEC)2G。然而,在恒定的GSH水平存在下,增加h-GSH或hm-GSH的浓度导致(γEC)2β-丙氨酸或(γEC)2-丝氨酸的合成增加,分别地同时,(γEC)2 G的合成被抑制。 γEC不是PC合酶的底物。通过假设PC合酶具有对GSH非常特异的γEC供体结合位点和对GSH特异且接受几个三肽即GSH,h的γEC受体结合位点来最好地解释这些结果。 -GSH和hm-GSH。

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