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Glucose 6-phosphate regulates hepatic glycogenolysis through inactivation of phosphorylase.

机译:6-磷酸葡萄糖通过磷酸化酶的失活来调节肝糖原分解。

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High glucose concentration suppresses hepatic glycogenolysis by allosteric inhibition and dephosphorylation (inactivation) of phosphorylase-a. The latter effect is attributed to a direct effect of glucose on the conformation of phosphorylase-a. Although glucose-6-phosphate (G6P), like glucose, stimulates dephosphorylation of phosphorylase-a by phosphorylase phosphatase, its physiological role in regulating glycogenolysis in intact hepatocytes has not been tested. We show in this study that metabolic conditions associated with an increase in G6P, including glucokinase overexpression and incubation with octanoate or dihydroxyacetone, cause inactivation of phosphorylase. The latter conditions also inhibit glycogenolysis. The activity of phosphorylase-a correlated inversely with the G6P concentration within the physiological range. The inhibition of glycogenolysis and inactivation of phosphorylase-a caused by 10 mmol/l glucose can be at least in part counteracted by inhibition of glucokinase with 5-thioglucose, which lowers G6P. In conclusion, metabolic conditions that alter the hepatic G6P content affect glycogen metabolism not only through regulation of glycogen synthase but also through regulation of the activation state of phosphorylase. Dysregulation of G6P in diabetes by changes in activity of glucokinase or glucose 6-phosphatase may be a contributing factor to impaired suppression of glycogenolysis by hyperglycemia.
机译:高葡萄糖浓度通过磷酸化酶-a的变构抑制和去磷酸化(失活)抑制肝糖原分解。后一种作用归因于葡萄糖对磷酸化酶-α构象的直接作用。尽管6-磷酸葡萄糖(G6P)与葡萄糖一样,可通过磷酸化酶磷酸酶刺激磷酸化酶-a的去磷酸化,但尚未测试其在调节完整肝细胞中糖原分解中的生理作用。我们在这项研究中表明,与G6P增加相关的代谢条件,包括葡萄糖激酶的过表达和与辛酸酯或二羟基丙酮的孵育,会导致磷酸化酶失活。后一条件也抑制糖原分解。磷酸化酶-a的活性与生理范围内的G6P浓度成反比。由10 mmol / l葡萄糖引起的糖原分解抑制和磷酸化酶-a失活可以至少部分被5-硫代葡萄糖抑制葡萄糖激酶抵消,从而降低了G6P。总之,改变肝脏G6P含量的代谢条件不仅通过调节糖原合酶,而且通过调节磷酸化酶的激活状态来影响糖原代谢。糖尿病患者中葡萄糖激酶或葡萄糖6磷酸酶活性的变化引起的G6P失调可能是高血糖损害糖原分解抑制的一个重要因素。

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