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Phosphorylase regulates the association of glycogen synthase with a proteoglycogen substrate in hepatocytes

机译:磷酸化酶调节糖原合酶与肝细胞中蛋白糖原底物的结合

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摘要

Changes in the glucosylation state of the glycogen primer, glycogenin, or its association with glycogen synthase are potential sites for regulation of glycogen synthesis. In this study we found no evidence for hormonal control of the glucosylation state of glycogenin in hepatocytes. However, using a modified glycogen synthase assay that separates the product into acid-soluble (glycogen) and acid-insoluble (proteoglycogen) fractions we found that insulin and glucagon increase and decrease, respectively, the association of glycogen synthase with an acid-insoluble substrate. The latter fraction had a higher affinity for UDP-glucose and accounted for between 5 and 21 of total activity depending on hormonal conditions. Phosphorylase overexpression mimicked the effect of glucagon. It is concluded that phosphorylase activation or overexpression causes dissociation of glycogen synthase from proteoglycogen causing inhibition of initiation of glycogen synthesis.
机译:糖原引物糖原糖基化状态的变化,糖原素,或其与糖原合酶的结合,是调节糖原合成的潜在位点。在这项研究中,我们没有发现激素控制肝细胞中糖原糖基化状态的证据。然而,使用改良的糖原合酶测定法将产物分离为酸溶性(糖原)和酸不溶性(蛋白糖原)组分,我们发现胰岛素和胰高血糖素分别增加和减少糖原合酶与酸不溶性底物的结合。后一部分对UDP-葡萄糖具有更高的亲和力,占总活性的5%至21%,具体取决于荷尔蒙状况。磷酸化酶过表达模仿胰高血糖素的作用。结论是,磷酸化酶激活或过表达导致糖原合酶与蛋白糖原解离,从而抑制糖原合成的启动。

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