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Phosphate Incorporation during Glycogen Synthesis and Lafora Disease.

机译:糖原合成和Lafora疾病过程中的磷酸盐掺入。

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摘要

Glycogen is a branched polymer of glucose that serves as an energy store. Phosphate, a trace constituent of glycogen, has profound effects on glycogen structure, and phosphate hyperaccumulation is linked to Lafora disease, a fatal progressive myoclonus epilepsy that can be caused by mutations of laforin, a glycogen phosphatase. However, little is known about the metabolism of glycogen phosphate. We demonstrate here that the biosynthetic enzyme glycogen synthase, which normally adds glucose residues to glycogen, is capable of incorporating the beta-phosphate of its substrate UDP-glucose at a rate of one phosphate per approximately 10,000 glucoses, in what may be considered a catalytic error. We show that the phosphate in glycogen is present as C2 and C3 phosphomonoesters. Since hyperphosphorylation of glycogen causes Lafora disease, phosphate removal by laforin may thus be considered a repair or damage control mechanism.
机译:糖原是葡萄糖的支链聚合物,可作为能量储存器。磷酸盐是糖原的微量成分,对糖原结构具有深远的影响,磷酸盐的过度积累与Lafora病有关,Lafora病是一种致命的进行性肌阵挛性癫痫,可能由Laforin(一种糖原磷酸酶)的突变引起。然而,关于糖原磷酸的代谢知之甚少。我们在这里证明生物合成酶糖原合酶(通常向糖原中添加葡萄糖残基)能够以大约每10,000个葡萄糖1个磷酸盐的速率掺入其底物UDP-葡萄糖的β-磷酸盐,这可以被认为是催化性的。错误。我们显示糖原中的磷酸根以C2和C3磷酸单酯形式存在。由于糖原的过度磷酸化会引起Lafora疾病,因此Laforin去除磷酸盐可被视为一种修复或损害控制机制。

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