首页> 外文期刊>Plant Physiology >The Two Plastidial Starch-Related Dikinases Sequentially Phosphorylate Glucosyl Residues at the Surface of Both the A- and B-Type Allomorphs of Crystallized Maltodextrins But the Mode of Action Differs
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The Two Plastidial Starch-Related Dikinases Sequentially Phosphorylate Glucosyl Residues at the Surface of Both the A- and B-Type Allomorphs of Crystallized Maltodextrins But the Mode of Action Differs

机译:在结晶麦芽糖糊精的A型和B型同质异形体表面上,两个质控淀粉相关的二激酶依次磷酸化葡萄糖基残基,但作用方式不同

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In this study, two crystallized maltodextrins were generated that consist of the same oligoglucan pattern but differ strikingly in the physical order of double helices. As revealed by x-ray diffraction, they represent the highly ordered A- and B-type allomorphs. Both crystallized maltodextrins were similar in size distribution and birefringence. They were used as model substrates to study the consecutive action of the two starch-related dikinases, the glucan, water dikinase and the phosphoglucan, water dikinase. The glucan, water dikinase and the phosphoglucan, water dikinase selectively esterify glucosyl residues in the C6 and C3 positions, respectively. Recombinant glucan, water dikinase phosphorylated both allomorphs with similar rates and caused complete glucan solubilization. Soluble neutral maltodextrins inhibited the glucan, water dikinase-mediated phosphorylation of crystalline particles. Recombinant phosphoglucan, water dikinase phosphorylated both the A- and B-type allomorphs only following a prephosphorylation by the glucan, water dikinase, and the activity increased with the extent of prephosphorylation. The action of the phosphoglucan, water dikinase on the prephosphorylated A- and B-type allomorphs differed. When acting on the B-type allomorph, by far more phosphoglucans were solubilized as compared with the A type. However, with both allomorphs, the phosphoglucan, water dikinase formed significant amounts of monophosphorylated phosphoglucans. Thus, the enzyme is capable of acting on neutral maltodextrins. It is concluded that the actual carbohydrate substrate of the phosphoglucan, water dikinase is defined by physical rather than by chemical parameters. A model is proposed that explains, at the molecular level, the consecutive action of the two starch-related dikinases.
机译:在这项研究中,生成了两个结晶的麦芽糊精,它们由相同的寡葡聚糖模式组成,但在双螺旋的物理顺序上却明显不同。正如X射线衍射所揭示的,它们代表了高度有序的A型和B型同种异形体。两种结晶的麦芽糊精在大小分布和双折射方面相似。它们被用作模型底物,以研究两种淀粉相关的二激酶(葡聚糖,水二激酶和磷酸葡聚糖,水二激酶)的连续作用。葡聚糖,水二激酶和磷酸葡聚糖,水二激酶分别选择性地酯化C6和C3位的葡糖残基。重组葡聚糖,水二激酶以相似的速率磷酸化两种同种异形体,并导致葡聚糖完全溶解。可溶性中性麦芽糊精可抑制葡聚糖,水二激酶介导的结晶颗粒的磷酸化。重组磷酸葡聚糖,水二激酶仅在葡聚糖,水二激酶被预磷酸化后磷酸化A型和B型同种异形物,并且活性随预磷酸化程度的增加而增加。磷酸葡聚糖,水二激酶对预磷酸化的A型和B型同种异型物的作用不同。当作用于B型同种异形体时,与A型相比,可溶解的磷酸葡聚糖要多得多。然而,对于两种同质异形体,磷酸葡聚糖,水二激酶形成了大量的单磷酸化磷酸葡聚糖。因此,该酶能够作用于中性麦芽糊精。结论是,磷酸葡聚糖,水二激酶的实际碳水化合物底物是通过物理而非化学参数定义的。提出了一个在分子水平上解释两种淀粉相关的二激酶的连续作用的模型。

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  • 来源
    《Plant Physiology》 |2009年第2期|p.962-976|共15页
  • 作者单位

    Institute of Biochemistry and Biology, Department of Plant Physiology, University of Potsdam, 14476 Potsdam-Golm, Germany (M.H., J.F., M.S.);

    Mass Spectrometry of Biopolymers, Institute of Biochemistry and Biology, University of Potsdam, 14476 Potsdam-Golm, Germany (J.F.);

    and Max-Planck-Institute of Colloids and Surfaces, 14476 Potsdam-Golm, Germany (O.P.);

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  • 入库时间 2022-08-17 23:31:58

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