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马铃薯中葡萄糖-6-磷酸脱氢酶同工酶活性的差异调节

Differential regulation of glucose-6-phosphate dehydrogenase isoenzyme activities in potato.

作者信息

Hauschild Rüdiger, von Schaewen Antje

机构信息

Pflanzenphysiologie, FB5 Biologie/Chemie, Universität Osnabrück, Barbarastrasse 11, 49076 Osnabrück, Germany.

出版信息

Plant Physiol. 2003 Sep;133(1):47-62. doi: 10.1104/pp.103.025676.

Abstract

In plants, Glc-6-phosphate dehydrogenase (G6PDH) isoenzymes are present in the cytosol and in plastids. The plastidic enzymes (P1 and P2) are subject to redox regulation, but mechanisms that adjust cytosolic G6PDH activity are largely unknown. We adopted a leaf disc system for monitoring the effects of various conditions on G6PD isoform expression and enzyme activities in potato (Solanum tuberosum). Cytosolic G6PDH activity remained constant during water incubation in the dark. In continuous light or in the presence of metabolizable sugars in the dark, cytosolic G6PDH activity increased 6-fold within 24 h. Cycloheximide incubation demonstrated that enhanced cytosolic G6PDH activity depends on de novo protein synthesis. Osmotic change, phosphate sequestration, or oxidative stress did not affect cytosolic G6PDH activity. Furthermore, enzyme activity and protein contents closely followed the corresponding mRNA levels. Together with the fact that multiple SURE elements are present in the promoter region of the gene, these results suggest that cytosolic G6PDH activity is regulated by sugar availability at the transcriptional level. Plastidic G6PDH activity stayed constant during water incubation in the light and dropped to minimal levels within 6 h in the dark. Conversely, plastidic G6PDH activity of leaf discs incubated on Paraquat rose to 10-fold higher levels, which was not prevented by cycloheximide. Similar increases were found with nitrite, nitrate, or sulfate. No major changes in protein or mRNA contents of the plastidic P1 and P2 isoforms were registered. K(m) (Glc-6-phosphate) values of plastidic G6PDH activity differed between samples incubated on water or Paraquat, suggesting posttranslational modification of the plastidic enzyme(s). Immunoprecipitation of (32)P-labeled samples with P1 isoform-specific antibodies showed that the chloroplast enzyme is subject to protein phosphorylation. Obviously, in extended dark periods, G6PDH activity in the stroma is restricted but can be stimulated in response to high demands for NADPH.

摘要

在植物中,葡萄糖-6-磷酸脱氢酶(G6PDH)同工酶存在于细胞质和质体中。质体中的酶(P1和P2)受氧化还原调节,但调节细胞质G6PDH活性的机制在很大程度上尚不清楚。我们采用叶盘系统来监测各种条件对马铃薯(Solanum tuberosum)中G6PD同工型表达和酶活性的影响。在黑暗中进行水培养期间,细胞质G6PDH活性保持恒定。在持续光照下或在黑暗中存在可代谢糖的情况下,细胞质G6PDH活性在24小时内增加了6倍。环己酰亚胺处理表明,细胞质G6PDH活性的增强依赖于从头合成蛋白质。渗透变化、磷酸盐螯合或氧化应激均不影响细胞质G6PDH活性。此外,酶活性和蛋白质含量与相应的mRNA水平密切相关。鉴于该基因的启动子区域存在多个SURE元件,这些结果表明细胞质G6PDH活性在转录水平上受糖可用性的调节。在光照下进行水培养期间,质体G6PDH活性保持恒定,而在黑暗中6小时内降至最低水平。相反,在百草枯上培养的叶盘的质体G6PDH活性上升至高出10倍的水平,这并未被环己酰亚胺所阻止。用亚硝酸盐、硝酸盐或硫酸盐处理也发现了类似的增加。质体P1和P2同工型的蛋白质或mRNA含量没有重大变化。在水中或百草枯上培养的样品中,质体G6PDH活性的K(m)(葡萄糖-6-磷酸)值不同,这表明质体酶存在翻译后修饰。用P1同工型特异性抗体对(32)P标记的样品进行免疫沉淀表明,叶绿体酶会发生蛋白质磷酸化。显然,在延长的黑暗时期,基质中的G6PDH活性受到限制,但可响应于对NADPH的高需求而被激活。

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