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Intracellular calcium leak lowers glucose storage in human muscle promoting hyperglycemia and diabetes

机译:细胞内钙泄漏会降低人体肌肉中的葡萄糖储存从而促进高血糖症和糖尿病

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摘要

Most glucose is processed in muscle, for energy or glycogen stores. Malignant Hyperthermia Susceptibility (MHS) exemplifies muscle conditions that increase [Ca ] . 42% of MHS patients have hyperglycemia. We show that phosphorylated glycogen phosphorylase (GP ), glycogen synthase (GS ) – respectively activated and inactivated by phosphorylation – and their Ca -dependent kinase (PhK), are elevated in microsomal extracts from MHS patients’ muscle. Glycogen and glucose transporter GLUT4 are decreased. [Ca ] , increased to MHS levels, promoted GP phosphorylation. Imaging at ~100 nm resolution located GP at sarcoplasmic reticulum (SR) junctional cisternae, and -GP at Z disk. MHS muscle therefore has a wide-ranging alteration in glucose metabolism: high [Ca ] activates PhK, which inhibits GS, activates GP and moves it toward the SR, favoring glycogenolysis. The alterations probably cause these patients’ hyperglycemia. For basic studies, MHS emerges as a variable stressor, which forces glucose pathways from the normal to the diseased range, thereby exposing novel metabolic links.
机译:大部分葡萄糖在肌肉中加工,以储存能量或糖原。恶性高热敏感性(MHS)代表增加[Ca]的肌肉状况。 42%的MHS患者患有高血糖症。我们发现,在MHS患者肌肉的微粒提取物中,磷酸化的糖原磷酸化酶(GP),糖原合酶(GS)(分别通过磷酸化激活和失活)及其钙依赖激酶(PhK)升高。糖原和葡萄糖转运蛋白GLUT4减少。 [Ca]增加到MHS水平,促进GP磷酸化。以〜100 nm分辨率成像时,GP位于肌浆网(SR)交界处,-GP位于Z盘处。因此,MHS肌肉在葡萄糖代谢方面具有广泛的变化:高[Ca]激活PhK,从而抑制GS,激活GP并将其移向SR,有利于糖原分解。这些变化可能导致这些患者的高血糖症。对于基础研究,MHS表现为可变的应激源,它迫使葡萄糖途径从正常到患病范围,从而暴露出新的代谢联系。

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