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肾上腺素、胰高血糖素和氢化可的松对大鼠肝脏灌注过程中磷酸化酶和糖原合成酶激活与失活的影响。

Activation and inactivation of phosphorylase and glycogen synthetase during perfusion of rat liver as influenced by epinephrine, glucagon and hydrocortisone.

作者信息

Saitoh Y, Ui M

出版信息

Biochim Biophys Acta. 1975 Sep 8;404(1):7-17. doi: 10.1016/0304-4165(75)90142-7.

Abstract
  1. The changes in phosphorylase activity and glycogen synthetase I (active form) activity during perfusion of rat liver were studied together with their responses to added epinephrine and glucagon. 2. Phosphorylase activity of the liver from fed or fasted rats fell rapidly during perfusion, regardless of whether the perfusate was added with glucose or not. The addition of epinephrine or glucagon at the start or at 60 min of perfusion caused a prompt restoration of the initial high activity. Both glycogen breakdown and glucose liberation proceeded in parallel with the changes in phosphorylase activity. 3. The I-form of glycogen synthetase in the liver from fed rats increased rapidly when the concentration of perfusate glucose was raised to near 10 mM. This increase was promptly prevented by the addition of epinephrine or glucagon. In contrast, glycogen synthetase of the liver from fasted rats responded to neither glucose nor epinephrine (or glucagon) during perfusion. 4. Phosphorylase in the liver of fasted, adrenalectomized rats did not respond to a low concentration of epinephrine (3 - 10(-8) M) or glucagon (5 - 10(-9) M), but was increased by higher concentrations of the hormones. The treatment of adrenalectomized rats with hydrocortisone restored the response of liver phosphorylase to the low concentrations of the hormones. Thus, glucocorticoid plays a "permissive" role by increasing the affinity of liver phosphorylase to epinephrine or glucagon.
摘要
  1. 研究了大鼠肝脏灌注过程中磷酸化酶活性和糖原合成酶I(活性形式)活性的变化,以及它们对添加肾上腺素和胰高血糖素的反应。2. 无论灌注液中是否添加葡萄糖,喂食或禁食大鼠肝脏的磷酸化酶活性在灌注过程中均迅速下降。在灌注开始时或60分钟时添加肾上腺素或胰高血糖素可使初始高活性迅速恢复。糖原分解和葡萄糖释放均与磷酸化酶活性的变化平行进行。3. 当灌注液葡萄糖浓度升高至接近10 mM时,喂食大鼠肝脏中的糖原合成酶I型迅速增加。添加肾上腺素或胰高血糖素可迅速阻止这种增加。相反,禁食大鼠肝脏中的糖原合成酶在灌注过程中对葡萄糖和肾上腺素(或胰高血糖素)均无反应。4. 禁食、肾上腺切除大鼠肝脏中的磷酸化酶对低浓度肾上腺素(3 - 10(-8) M)或胰高血糖素(5 - 10(-9) M)无反应,但在较高浓度的激素作用下会增加。用氢化可的松治疗肾上腺切除大鼠可恢复肝脏磷酸化酶对低浓度激素的反应。因此,糖皮质激素通过增加肝脏磷酸化酶对肾上腺素或胰高血糖素的亲和力发挥“允许”作用。

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