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首页> 外文期刊>Plant physiology >Functional characterization of an unusual phytochelatin synthase, LjPCS3, of Lotus japonicus
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Functional characterization of an unusual phytochelatin synthase, LjPCS3, of Lotus japonicus

机译:莲花的一种不常见的植物螯合酶合酶LjPCS3的功能表征

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摘要

In plants and many other organisms, phytochelatin synthase (PCS) catalyzes the synthesis of phytochelatins from glutathione in the presence of certain metals and metalloids. We have used budding yeast (Saccharomyces cerevisiae) as a heterologous system to characterize two PCS proteins, LjPCS1 and LjPCS3, of the model legume Lotus japonicus. Initial experiments revealed that the metal tolerance of yeast cells in vivo depends on the concentrations of divalent cations in the growth medium. Detailed in vivo (intact cells) and in vitro (broken cells) assays of PCS activity were performed with yeast expressing the plant enzymes, and values of phytochelatin production for each metal tested were normalized with respect to those of cadmium to correct for the lower expression level of LjPCS3. Our results showed that lead was the best activator of LjPCS1 in the in vitro assay, whereas, for both assays, arsenic, iron, and aluminum were better activators of LjPCS3 and mercury was similarly active with the two enzymes. Most interestingly, zinc was a powerful activator, especially of LjPCS3, when assayed in vivo, whereas copper and silver were the strongest activators in the in vitro assay. We conclude that the in vivo and in vitro assays are useful and complementary to assess the response of LjPCS1 and LjPCS3 to a wide range of metals and that the differences in the C-terminal domains of the two proteins are responsible for their distinct expression levels or stabilities in heterologous systems and patterns of metal activation.
机译:在植物和许多其他生物中,植物螯合素合酶(PCS)在某些金属和准金属存在下催化由谷胱甘肽合成植物螯合素。我们已经使用出芽酵母(Saccharomyces cerevisiae)作为异源系统来表征豆科植物日本j模型的两个PCS蛋白LjPCS1和LjPCS3。最初的实验表明,体内酵母细胞的金属耐受性取决于生长培养基中二价阳离子的浓度。使用表达植物酶的酵母对PCS活性进行详细的体内(完整细胞)和体外(破碎细胞)检测,并针对镉对每种测试金属的植物螯合素产量值进行了归一化以校正较低的表达级别的LjPCS3。我们的结果表明,在体外测定中,铅是LjPCS1的最佳活化剂,而在两种测定中,砷,铁和铝都是LjPCS3的较好活化剂,而汞对这两种酶的活性相似。最有趣的是,当在体内测定时,锌是一种强大的活化剂,尤其是LjPCS3,而在体外测定中,铜和银是最强的活化剂。我们得出的结论是,体内和体外测定对评估LjPCS1和LjPCS3对多种金属的反应是有用的和互补的,并且两种蛋白质C末端结构域的差异是其不同表达水平或异源系统的稳定性和金属活化方式。

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