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大鼠颌下腺体外葡萄糖、乙酰乙酸和肾上腺素的代谢相互作用

Metabolic interactions of glucose, acetoacetate and adrenaline in rat submaxillary gland in vitro.

作者信息

Thompson M P, Williamson D H

出版信息

Biochem J. 1975 Mar;146(3):635-44. doi: 10.1042/bj1460635.

Abstract
  1. The metabolic interactions between glucose, acetoacetate and adrenaline were studied in submaxillary-gland slices. 2. Acetoacetate (2.5 mM) inhibited glucose removal by 22% and entry of glucose carbon into the tricarboxylic acid cycle by 54%. 3. Acetoacetate caused an increase in (glucose 6-phosphate) together with an increase in (citrate), a finding that suggests that the phosphofructokinase step might be inhibited by the elevated (citrate). Support for this suggestion was obtained in experiments in which fluoracetate was used to elevate (citrate). 4. A further site of action of acetoacetate at the pyruvate dehydrogenase step was suggested by an increase in the lactate+pyruvate pool, and the finding that pyruvate removal and (3-14C)pyruvate oxidation were inhibited by acetoacetate. 5. Adrenaline, a stimulator of secretion by this tissue, increased glucose removal by 25%. Adrenaline increased glucose removal to the same extent when acetoacetate was also present in the incubation medium. In both cases the increase was accompanied by a fall in (glucose 6-phosphate). 6. Adrenaline also overcame the inhibition of pyruvate removal caused by acetoacetate. 7. The tissue (ATP) decreased by about 50% on addition of adrenaline, and a similar fall was observed in vivo after adrenergic stimulation by isoproterenol. 8. Omission of Ca-2+ from the medium prevented the fall in (glucose 6-phosphate) and (ATP) caused by adrenaline, although adrenaline was still able to stimulate glucose removal. The inhibitory effect of acetoacetate on gluocse removal was reversed by adrenaline, but there was no stimulation above the control rates. Inhibition of pyruvate removal by acetoacetate was not overcome by adrenaline in the absence of Ca-2+. 9. Dibutyryl cyclic AMP had no effect on glucose removal or on (ATP). 10. Possible mechanisms by which adrenaline can bring about its metabolic effects are discussed.
摘要
  1. 研究了颌下腺切片中葡萄糖、乙酰乙酸和肾上腺素之间的代谢相互作用。2. 乙酰乙酸(2.5 mM)使葡萄糖的清除率降低22%,葡萄糖碳进入三羧酸循环的量减少54%。3. 乙酰乙酸导致(6-磷酸葡萄糖)增加,同时(柠檬酸)增加,这一发现表明磷酸果糖激酶步骤可能受到升高的(柠檬酸)的抑制。在用氟乙酸升高(柠檬酸)的实验中得到了对这一推测的支持。4. 乳酸+丙酮酸池增加,以及乙酰乙酸抑制丙酮酸清除和(3-14C)丙酮酸氧化,提示乙酰乙酸在丙酮酸脱氢酶步骤还有另一个作用位点。5. 肾上腺素是该组织分泌的刺激剂,可使葡萄糖清除率提高25%。当孵育介质中也存在乙酰乙酸时,肾上腺素使葡萄糖清除率提高到相同程度。在这两种情况下,葡萄糖清除率的增加都伴随着(6-磷酸葡萄糖)的下降。6. 肾上腺素还克服了乙酰乙酸对丙酮酸清除的抑制作用。7. 添加肾上腺素后,组织中的(ATP)下降了约50%,在异丙肾上腺素进行肾上腺素能刺激后,体内也观察到了类似的下降。8. 培养基中省略Ca-2+可防止肾上腺素引起的(6-磷酸葡萄糖)和(ATP)下降,尽管肾上腺素仍能刺激葡萄糖清除。肾上腺素可逆转乙酰乙酸对葡萄糖清除的抑制作用,但没有超过对照速率的刺激作用。在没有Ca-2+的情况下,肾上腺素不能克服乙酰乙酸对丙酮酸清除的抑制作用。9. 二丁酰环磷酸腺苷对葡萄糖清除或(ATP)没有影响。10. 讨论了肾上腺素产生其代谢效应的可能机制。

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