首页> 美国卫生研究院文献>Biochemical Journal >Hepatic carbon flux after re-feeding. Hyperthyroidism blocks glycogen synthesis and the suppression of glucose output observed in response to carbohydrate re-feeding.
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Hepatic carbon flux after re-feeding. Hyperthyroidism blocks glycogen synthesis and the suppression of glucose output observed in response to carbohydrate re-feeding.

机译:再次喂入肝碳通量。甲状腺功能亢进会阻止糖原的合成并抑制碳水化合物补充后产生的葡萄糖输出。

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摘要

1. The work investigated hepatic glycogen synthesis and glucose output after the intragastric administration of glucose or glycerol or the provision of chow ad libitum to 48 h-starved euthyroid or hyperthyroid rats. 2. After glucose administration, glycogen synthesis via the indirect pathway [Newgard, Hirsch, Foster & McGarry (1983) J. Biol. Chem. 258, 8046-8052] occurred concomitantly with reversal of glucose flux across the liver and re-activation of pyruvate kinase in the euthyroid controls. Glycogen synthesis was decreased and net glucose output continued in the hyperthyroid rats, but normal re-activation of pyruvate kinase was observed. 3. Use of 3-mercaptopicolinate indicated that the glucose released from liver of hyperthyroid rats was synthesized from substrates metabolized via the gluconeogenic pathway. 4. Hepatic glycogen synthesis was also impaired in hyperthyroid rats after administration of glycerol or chow. Measurement of portal-minus-hepatovenous concentration differences and arterial glucose concentrations after the administration of glycerol in combination with 3-mercaptopicolinate indicated that flux from triose phosphate to glucose 6-phosphate was not decreased. 5. Inhibited glycogen synthesis after chow re-feeding was associated with accelerated re-activation of hepatic pyruvate dehydrogenase complex in the hyperthyroid rats. 6. The results indicate three distinct and independent actions of hyperthyroidism after re-feeding: (i) it inhibits the reversal of glucose flux across the liver normally observed in response to carbohydrate; (ii) it affects glycogen deposition at a site distal to glucose 6-phosphate; (iii) it allows more rapid re-activation of liver pyruvate dehydrogenase complex in response to a mixed diet.
机译:1.这项研究调查了在48小时饥饿的甲状腺功能亢进或甲状腺功能亢进大鼠的胃内给予葡萄糖或甘油或随意提供食物后的肝糖原合成和葡萄糖输出。 2.葡萄糖给药后,糖原通过间接途径合成[Newgard,Hirsch,Foster&McGarry(1983)J.Biol.Chem。,1987。化学[258,8046-8052]伴随着正常肝对照中葡萄糖通过肝脏的通量逆转和丙酮酸激酶的重新激活而发生。甲状腺功能亢进大鼠的糖原合成减少,并且净葡萄糖输出持续,但是丙酮酸激酶正常重启。 3.使用3-巯基亚油酸酯表明甲亢大鼠肝脏释放的葡萄糖是由通过糖异生途径代谢的底物合成的。 4.给予甘油或食物后,甲状腺功能亢进的大鼠肝糖原合成也受损。在甘油与3-巯基亚油酸酯组合施用甘油后,测量门静脉-肝静脉的浓度差异和动脉葡萄糖浓度,表明从磷酸三糖到6-磷酸葡萄糖的通量没有降低。 5.饲料再摄取后抑制的糖原合成与甲状腺功能亢进大鼠肝丙酮酸脱氢酶复合物的加速再活化有关。 6.结果表明,再喂食后甲亢的三种不同和独立的作用:(i)它抑制了正常情况下对碳水化合物的反应而引起的跨肝葡萄糖流的逆转; (ii)影响糖原沉积在6-磷酸葡萄糖远端的位置; (iii)它可以响应混合饮食而更快地重新激活肝丙酮酸脱氢酶复合物。

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