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表皮生长因子(尿抑胃素)对离体大鼠肝细胞糖异生、葡萄糖氧化及糖原合成的影响。

Effects of epidermal growth factor (urogastrone) on gluconeogenesis, glucose oxidation, and glycogen synthesis in isolated rat hepatocytes.

作者信息

Moreno F, Pastor-Anglada M, Hollenberg M D, Soley M

机构信息

Departament de Bioquimica i Fisiologia, Facultat de Biologia, Universitat de Barcelona, Spain.

出版信息

Biochem Cell Biol. 1989 Oct;67(10):724-9. doi: 10.1139/o89-108.

DOI:10.1139/o89-108
PMID:2686720
Abstract

Using isolated rat hepatocytes, we studied the effect of epidermal growth factor (urogastrone) (EGF-URO) on the incorporation of [3-14C]pyruvate into glucose and glycogen, on the incorporation of [U-14C]glucose into glycogen, and on the oxidation of [U-14C]glucose to 14CO2. The effects of EGF-URO were compared with those of glucagon and insulin. EGF-URO, with an EC50 of 0.2 nM, enhanced by 34% (maximal stimulation) the conversion of [3-14C]pyruvate into glucose; no effect was observed on the oxidation of glucose to CO2 and on the incorporation of either pyruvate or glucose into glycogen. The effect of EGF-URO on pyruvate conversion to glucose was observed only when hepatocytes were preincubated with EGF-URO for 40 min prior to the addition of substrate. Glucagon (10 nM) increased the incorporation of [3-14C]pyruvate into glucose (44% above control); however, unlike EGF-URO, glucagon stimulated gluconeogenesis better without than with a preincubation period. Neither insulin nor EGF-URO (both 10 nM) affected the incorporation of [U-14C]glucose into glycogen during a 20-min incubation period. However, at longer time periods of incubation with the substrate (60 instead 20 min), insulin (but not EGF-URO) increased the incorporation of [14C]glucose into glycogen; EGF-URO counteracted this stimulatory effect of insulin. In contrast with previous data, our work indicates that EGF-URO can, under certain conditions, counteract the effects of insulin and, like glucagon, promote gluconeogenesis in isolated rat hepatocytes.

摘要

我们使用分离的大鼠肝细胞,研究了表皮生长因子(尿抑胃素)(EGF-URO)对[3-14C]丙酮酸掺入葡萄糖和糖原、[U-14C]葡萄糖掺入糖原以及[U-14C]葡萄糖氧化为14CO2的影响。将EGF-URO的作用与胰高血糖素和胰岛素的作用进行了比较。EGF-URO的半数有效浓度(EC50)为0.2 nM,可使[3-14C]丙酮酸转化为葡萄糖的量增加34%(最大刺激);未观察到其对葡萄糖氧化为CO2以及丙酮酸或葡萄糖掺入糖原的影响。仅当肝细胞在添加底物前用EGF-URO预孵育40分钟时,才观察到EGF-URO对丙酮酸转化为葡萄糖的作用。胰高血糖素(10 nM)可使[3-14C]丙酮酸掺入葡萄糖的量增加(比对照高44%);然而,与EGF-URO不同的是,胰高血糖素在无预孵育期时比有预孵育期时更能促进糖异生。在20分钟的孵育期内,胰岛素和EGF-URO(均为10 nM)均未影响[U-14C]葡萄糖掺入糖原。然而,在与底物孵育较长时间(60分钟而非20分钟)时,胰岛素(而非EGF-URO)增加了[14C]葡萄糖掺入糖原;EGF-URO抵消了胰岛素的这种刺激作用。与先前的数据相反,我们的研究表明,在某些条件下,EGF-URO可以抵消胰岛素的作用,并且与胰高血糖素一样,促进分离的大鼠肝细胞中的糖异生。

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Effects of epidermal growth factor (urogastrone) on gluconeogenesis, glucose oxidation, and glycogen synthesis in isolated rat hepatocytes.表皮生长因子(尿抑胃素)对离体大鼠肝细胞糖异生、葡萄糖氧化及糖原合成的影响。
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