首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A redox-regulated chloroplast protein phosphatase binds to starch diurnally and functions in its accumulation
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A redox-regulated chloroplast protein phosphatase binds to starch diurnally and functions in its accumulation

机译:氧化还原调节的叶绿体蛋白磷酸酶每天与淀粉结合并在其积累中起作用

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Starch is the ultimate storage molecule formed in the photosynthetic fixation of carbon dioxide by chloroplasts. Starch accumulates during the day and is degraded at night to intermediates that are exported to heterotrophic organs. The mechanism by which diurnal cycles control the transitory biosynthesis and degradation of chloroplast starch has long remained a mystery. We now report evidence that a dual-specificity protein phosphatase, DSP4, binds to starch granules during the day and dissociates at night. Disruption of the DSP4 gene resulted in a dramatic increase in the level of starch in mutant Arabidopsis plants. Moreover, although composition was apparently unchanged, the morphology of the starch granule was significantly altered compared to the wild type counterpart. Two regulatory factors linked to light (i.e., pH and redox status) changed both the activity and the starch-binding capacity of DSP4. The results further revealed that DSP4 represents a major fraction of granule-bound phosphatase activity during the day but not at night. Our study suggests that DSP4 acts as a bridge between light-induced redox changes and protein phosphorylation in the regulation of starch accumulation.
机译:淀粉是叶绿体在二氧化碳的光合作用固定中形成的最终储存分子。淀粉在白天累积,在晚上降解为中间体,这些中间体输出到异养器官。昼夜周期控制瞬时生物合成和叶绿体淀粉降解的机制一直是个谜。现在,我们报告有证据表明,双特异性蛋白磷酸酶DSP4在白天与淀粉颗粒结合,而在晚上解离。 DSP4基因的破坏导致突变拟南芥植物中淀粉水平的急剧增加。而且,尽管组成显然没有改变,但是与野生型对应物相比,淀粉颗粒的形态显着改变。与光有关的两个调节因子(即pH和氧化还原状态)改变了DSP4的活性和淀粉结合能力。结果进一步表明,DSP4代表白天而非晚上的颗粒结合磷酸酶活性的主要部分。我们的研究表明,DSP4在调节淀粉积累中起光诱导的氧化还原变化和蛋白质磷酸化之间的桥梁作用。

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