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Molecular Control of Acid Phosphatase Secretion into the Rhizosphere of Proteoid Roots from Phosphorus-Stressed White Lupin

机译:磷胁迫白羽扇豆蛋白根根际分泌酸性磷酸酶的分子控制

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摘要

White lupin (Lupinus albus) grown under P deficiency displays a suite of highly coordinated adaptive responses. Included among these is secretion of copious amounts of acid phosphatase (APase). Although numerous reports document that plants secrete APases in response to P deficiency, little is known of the biochemical and molecular events involved in this process. Here we characterize the secreted APase protein, cDNA, and gene from white lupin. The secreted APase enzyme is a glycoprotein with broad substrate specificity. It is synthesized as a preprotein with a deduced Mr of 52,000 containing a 31-amino acid presequence. Analysis of the presequence predicts that the protein is targeted to outside the cell. The processed protein has a predicted Mr of 49,000 but migrates as a protein with Mr of 70,000 on sodium dodecyl sulfate gels. This is likely due to glycosylation. Enhanced expression is fairly specific to proteoid roots of P-stressed plants and involves enhanced synthesis of both enzyme protein and mRNA. Secreted APase appears to be encoded by a single gene containing seven exons interrupted by six introns. The 5′-upstream putative promoter of the white lupin-secreted APase contains a 50-base pair region having 72% identity to an Arabidopsis APase promoter that is responsive to P deficiency. The white lupin-secreted APase promoter and targeting sequence may be useful tools for genetically engineering important proteins from plant roots.
机译:在缺磷条件下生长的白羽扇豆(羽扇豆)表现出一系列高度协调的适应性反应。其中包括大量酸性磷酸酶(APase)的分泌。尽管许多报告表明植物响应P缺乏而分泌APase,但对这一过程涉及的生化和分子事件知之甚少。在这里,我们表征了白色羽扇豆分泌的APase蛋白,cDNA和基因。分泌的APase酶是一种糖蛋白,具有广泛的底物特异性。它被合成为前蛋白,其推导的Mr为52,000,包含一个31个氨基酸的预序列。对该序列的分析预测该蛋白质被靶向细胞外。加工后的蛋白质的Mr预计为49,000,但在十二烷基硫酸钠凝胶上以70,000的Mr身份迁移。这可能是由于糖基化。增强的表达对P胁迫植物的蛋白根非常特异,并且涉及酶蛋白和mRNA的合成增强。分泌的APase似乎由包含七个外显子,被六个内含子打断的单个基因编码。白色羽扇豆分泌的APase的5'-上游推定启动子包含一个50个碱基对的区域,该区域与对P缺乏症有反应的拟南芥APase启动子具有72%的同一性。白羽扇豆分泌的APase启动子和靶向序列可能是从植物根部遗传工程改造重要蛋白质的有用工具。

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