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首页> 外文期刊>Plant and Cell Physiology >Cloning, Expression and Characterization of a Nudix Hydrolase that Catalyzes the Hydrolytic Breakdown of ADP-glucose Linked to Starch Biosynthesis in Arabidopsis thaliana
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Cloning, Expression and Characterization of a Nudix Hydrolase that Catalyzes the Hydrolytic Breakdown of ADP-glucose Linked to Starch Biosynthesis in Arabidopsis thaliana

机译:催化与拟南芥淀粉生物合成相关的ADP-葡萄糖水解分解的Nudix水解酶的克隆,表达和表征

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摘要

‘Nudix’ hydrolases are widely distributed nucleotide pyrophosphatases that possess a conserved GX5EX7REUXEEXGU motif where U is usually isoleucine, leucine or valine. Among them, Escherichia coli ADP-sugar pyrophosphatase (ASPP) has been shown to catalyze the hydrolytic breakdown of ADP-glucose linked to bacterial glycogen biosynthesis. Comparisons of the 31 different Nudix-encoding sequences of the Arabidopsis genome with those coding for known bacterial and mammalian ASPPs identified one sequence possessing important divergences in the Nudix motif that, once expressed in E. coli, produced a protein with ASPP activity. This protein, designated as AtASPP, shares strong homology with hypothetical rice and potato proteins, indicating that ASPPs are widely distributed in both mono- and dicotyledonous plants. As a first step to test the possible involvement of plant ASPPs in regulating the intracellular levels of ADP-glucose linked to starch biosynthesis, we produced and characterized AtASPP-overexpressing Arabidopsis plants. Source leaves from these plants exhibited a large reduction in the levels of both ADP-glucose and starch, indicating that plant ASPPs catalyze the hydrolytic breakdown of a sizable pool of ADP-glucose linked to starch biosynthesis. No pleiotropic changes in maximum catalytic activities of enzymes closely linked to starch metabolism could be detected in AtASPP-overexpressing leaves. The overall information provides the first evidence for the existence of plant Nudix hydrolases that have access to an intracellular pool of ADP-glucose linked to starch biosynthesis.
机译:“ Nudix”水解酶是分布广泛的核苷酸焦磷酸酶,具有保守的GX 5 EX 7 REUXEEXGU基序,其中U通常是异亮氨酸,亮氨酸或缬氨酸。其中,已证明大肠杆菌ADP-糖焦磷酸酶(ASPP)催化与细菌糖原生物合成相关的ADP-葡萄糖的水解分解。将拟南芥基因组的31种不同Nudix编码序列与编码已知细菌和哺乳动物ASPP的序列进行比较,发现一个序列在Nudix基序中具有重要的差异,一旦在大肠杆菌中表达,就会产生具有ASPP活性的蛋白质。这种被称为AtASPP的蛋白质与假设的水稻和马铃薯蛋白质具有很强的同源性,表明ASPP在单子叶和双子叶植物中广泛分布。作为测试植物ASPP可能参与调节与淀粉生物合成相关的ADP-葡萄糖胞内水平的第一步,我们生产并表征了过表达AtASPP的拟南芥植物。这些植物的源叶显示出ADP-葡萄糖和淀粉水平都大大降低,表明植物的ASPP催化了与淀粉生物合成相关的相当大的ADP-葡萄糖库的水解分解。在过表达AtASPP的叶片中未检测到与淀粉代谢密切相关的酶的最大催化活性的多效性变化。总体信息为存在植物Nudix水解酶提供了第一个证据,该酶可进入与淀粉生物合成相关的ADP-葡萄糖胞内池。

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