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ATP硫酸化酶在亮黄2号烟草细胞中过表达的影响。ATP硫酸化酶和SO4(2-)转运活性的调控。

Effect of ATP sulfurylase overexpression in bright yellow 2 tobacco cells. Regulation Of atp sulfurylase and SO4(2-) transport activities.

作者信息

Hatzfeld Y, Cathala N, Grignon C, Davidian J C

机构信息

Laboratoire de Biochimie et Physiologie Moléculaire des Plantes, Ecole Nationale Supérieure Agronomique de Montpellier, Cedex, France.

出版信息

Plant Physiol. 1998 Apr;116(4):1307-13. doi: 10.1104/pp.116.4.1307.

Abstract

To determine if the ATP sulfurylase reaction is a regulatory step for the SO4(2-)-assimilation pathway in plants, an Arabidopsis thaliana ATP sulfurylase cDNA, APS2, was fused to the 35S promoter of the cauliflower mosaic virus and introduced by Agrobacterium tumefaciens-mediated transformation into isolated Bright Yellow 2 tobacco (Nicotiana tabacum) cells. The ATP sulfurylase activity in transgenic cells was 8-fold that in control cells, and was correlated with the expression of a specific polypeptide revealed by western analysis using an anti-ATP sulfurylase antibody. The molecular mass of this polypeptide agreed with that for the overexpressed mature protein. ATP sulfurylase overexpression had no effect on [35S]SO4(2-) influx or ATP sulfurylase activity regulation by S availability, except that ATP sulfurylase activity variations in response to S starvation in transgenic cells were 8 times higher than in the wild type. There were also no differences in cell growth or sensitivity to SeO4(2-) (a toxic SO4(2-) analog) between transgenic and wild-type cells. We propose that in Bright Yellow 2 tobacco cells, the ATP sulfurylase derepression by S deficiency may involve a posttranscriptional mechanism, and that the ATP sulfurylase abundance is not limiting for cell metabolism.

摘要

为了确定ATP硫酸化酶反应是否是植物中SO4(2-)同化途径的一个调控步骤,将拟南芥ATP硫酸化酶cDNA APS2与花椰菜花叶病毒的35S启动子融合,并通过根癌农杆菌介导的转化方法导入分离的亮黄2烟草(Nicotiana tabacum)细胞中。转基因细胞中的ATP硫酸化酶活性是对照细胞的8倍,并且与使用抗ATP硫酸化酶抗体通过蛋白质免疫印迹分析所揭示的一种特定多肽的表达相关。该多肽的分子量与过表达的成熟蛋白的分子量一致。ATP硫酸化酶的过表达对[35S]SO4(2-)流入或ATP硫酸化酶活性受硫有效性的调节没有影响,只是转基因细胞中ATP硫酸化酶活性对硫饥饿的响应变化比野生型高8倍。转基因细胞和野生型细胞在细胞生长或对SeO4(2-)(一种有毒的SO4(2-)类似物)的敏感性方面也没有差异。我们提出,在亮黄2烟草细胞中,硫缺乏导致的ATP硫酸化酶去阻遏可能涉及一种转录后机制,并且ATP硫酸化酶的丰度对细胞代谢并不构成限制。

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