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淀粉中葡萄糖残基C6和C3位的磷酸化由不同的双激酶催化。

Phosphorylation of C6- and C3-positions of glucosyl residues in starch is catalysed by distinct dikinases.

作者信息

Ritte Gerhard, Heydenreich Matthias, Mahlow Sebastian, Haebel Sophie, Kötting Oliver, Steup Martin

机构信息

Plant Physiology, Institute of Biochemistry and Biology, University of Potsdam, Karl-Liebknecht-Strasse 24-25, Building 20, 14476 Potsdam-Golm, Germany.

出版信息

FEBS Lett. 2006 Sep 4;580(20):4872-6. doi: 10.1016/j.febslet.2006.07.085. Epub 2006 Aug 10.

Abstract

Glucan, water dikinase (GWD) and phosphoglucan, water dikinase (PWD) are required for normal starch metabolism. We analysed starch phosphorylation in Arabidopsis wild-type plants and mutants lacking either GWD or PWD using (31)P NMR. Phosphorylation at both C6- and C3-positions of glucose moieties in starch was drastically decreased in GWD-deficient mutants. In starch from PWD-deficient plants C3-bound phosphate was reduced to levels close to the detection limit. The latter result contrasts with previous reports according to which GWD phosphorylates both C6- and C3-positions. In these studies, phosphorylation had been analysed by HPLC of acid-hydrolysed glucans. We now show that maltose-6-phosphate, a product of incomplete starch hydrolysis, co-eluted with glucose-3-phosphate under the chromatographic conditions applied. Re-examination of the specificity of the dikinases using an improved method demonstrates that C6- and C3-phosphorylation is selectively catalysed by GWD and PWD, respectively.

摘要

葡聚糖水二激酶(GWD)和磷酸葡聚糖水二激酶(PWD)是正常淀粉代谢所必需的。我们使用³¹P NMR分析了拟南芥野生型植株以及缺乏GWD或PWD的突变体中的淀粉磷酸化情况。在GWD缺陷型突变体中,淀粉中葡萄糖部分的C6和C3位的磷酸化显著降低。在PWD缺陷型植株的淀粉中,C3位结合的磷酸盐减少到接近检测限的水平。后一结果与之前的报道形成对比,之前的报道称GWD可使C6和C3位磷酸化。在这些研究中,磷酸化是通过酸水解葡聚糖的HPLC进行分析的。我们现在表明,不完全淀粉水解的产物6-磷酸麦芽糖在所用的色谱条件下与3-磷酸葡萄糖共洗脱。使用改进的方法重新检查二激酶的特异性表明,C6和C3磷酸化分别由GWD和PWD选择性催化。

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