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褪黑素对兔肾皮质肾小管原代培养物中葡萄糖代谢的调节作用。

Melatonin-induced modulation of glucose metabolism in primary cultures of rabbit kidney-cortex tubules.

作者信息

Derlacz Rafal A, Poplawski Piotr, Napierala Malgorzata, Jagielski Adam K, Bryla Jadwiga

机构信息

Department of Metabolic Regulation, Institute of Biochemistry, Warsaw University, Warsaw, Poland.

出版信息

J Pineal Res. 2005 Apr;38(3):164-9. doi: 10.1111/j.1600-079X.2004.00188.x.

Abstract

The effect of melatonin on glucose metabolism in the presence and absence of insulin has been investigated in the primary cultures of renal tubules grown in a defined medium. In the absence of glucose in the medium containing 5 microg/mL of insulin and 2 mm alanine + 5 mm glycerol + 0.5 mm octanoate, 100 nm melatonin stimulated both glucose and lactate synthesis, while in the medium devoid of insulin melatonin action was negligible. Melatonin-induced increase in glucose and lactate synthesis was accompanied by an enhancement of alanine and glycerol consumption. In view of measurements of [U-14C]L-alanine and [U-14C]L-glycerol incorporation into glucose, it is likely that melatonin increased alanine utilization for glucose production, while accelerated lactate synthesis was because of an enhanced glycerol consumption. As (i) 10 nm luzindole attenuated the stimulatory action of melatonin on glucose formation and (ii) the indole induced a decrease in intracellular cAMP level, it seems likely that in renal tubules melatonin binds to ML1 membrane receptor subtype. In view of a decline of intracellular fructose-1,6-bisphosphate content accompanied by a significant rise in hexose-6-phosphate and glucose levels, melatonin might result in an acceleration of flux through fructose-1,6-bisphosphatase probably because of an increase in the active, dephosphorylated form of this enzyme. Thus, the administration of melatonin in combination with insulin might be beneficial for diabetic therapy because of protection against hypoglycemia.

摘要

在限定培养基中培养的肾小管原代培养物中,研究了褪黑素在有胰岛素和无胰岛素情况下对葡萄糖代谢的影响。在含有5微克/毫升胰岛素以及2毫摩尔丙氨酸 + 5毫摩尔甘油 + 0.5毫摩尔辛酸的培养基中,若没有葡萄糖,100纳摩尔褪黑素会刺激葡萄糖和乳酸的合成,而在不含胰岛素的培养基中,褪黑素的作用可忽略不计。褪黑素诱导的葡萄糖和乳酸合成增加伴随着丙氨酸和甘油消耗的增强。鉴于对[U-14C]L-丙氨酸和[U-14C]L-甘油掺入葡萄糖的测量结果,褪黑素可能增加了丙氨酸用于葡萄糖生成的利用率,而乳酸合成加速是由于甘油消耗增加。由于(i)10纳摩尔鲁辛朵尔减弱了褪黑素对葡萄糖形成的刺激作用,以及(ii)该吲哚导致细胞内cAMP水平降低,肾小管中褪黑素似乎可能与ML1膜受体亚型结合。鉴于细胞内果糖-1,6-二磷酸含量下降,同时己糖-6-磷酸和葡萄糖水平显著升高,褪黑素可能导致通过果糖-1,6-二磷酸酶的通量加速,这可能是因为该酶的活性去磷酸化形式增加。因此,褪黑素与胰岛素联合使用可能对糖尿病治疗有益,因为它能预防低血糖。

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