首页> 外文期刊>Brain research >Ascorbic acid augments the adenylyl cyclase-cAMP system mediated POMC mRNA expression and beta-endorphin secretion from hypothalamic neurons in culture.
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Ascorbic acid augments the adenylyl cyclase-cAMP system mediated POMC mRNA expression and beta-endorphin secretion from hypothalamic neurons in culture.

机译:抗坏血酸增强了培养物中下丘脑神经元的腺苷酸环化酶-cAMP系统介导的POMC mRNA表达和β-内啡肽分泌。

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Besides acting as an important cofactor in the biosynthesis of catecholamine, ascorbic acid (AA) also modulates the activity of peptidylglycine-alpha-amidating monooxygenase for the post-translational modification of neuropeptides such as alpha-MSH and TRH. We report here a novel action of AA in modulating the secretion of immunoreactive beta-endorphin (ir-beta EP) and mRNA expression of proopiomelanocortin (POMC) following the activation of cAMP-dependent protein kinase A pathway in rat hypothalamic neurons. Primary cultures of hypothalamic neurons from neonatal rats as previously described were employed in the present studies. Six days after plating, cultures were replenished with serum-free media and incubated with vehicle or various doses of AA in the presence or absence of forskolin, 3-isobutyl-1-methylxanthine (IBMX), N6,2'-O-dibutyryladenosine 3'5'-(cyclic)monophosphate [(Bu)2cAMP]. Whereas the basal ir-beta EP release was 22.0 +/- 0.4 pg/well (mean +/- S.E.; n = 3), 10 microM of forskolin treatment increased ir-beta EP release approximately 4.2-fold. Co-incubation with AA enhanced forskolin induced ir-beta EP release and that this enhancing effect of AA was both time related and dose-dependent, with an ED50 of approximately 10 microM and an Emax of 100 microM. At the concentration of 10 microM, AA augmented ir-beta EP release approximately 6.1-fold that of cultures treated with forskolin alone. A similar potentiating effect of AA was also seen in cultures co-treated with IBMX or with (Bu)2cAMP. These enhancing effects of AA were similarly found in the abundance of total cAMP and of POMC mRNA of cultures which received identical treatments. However, it is important to point out that AA alone did not modulate ir-beta EP release or the abundance of POMC mRNA or total cAMP levels of the hypothalamic cultures when protein kinase A pathway was not activated. We thus conclude that AA augments cAMP-dependent protein kinase A pathway-induced production and release of beta EP from rat hypothalamic neurons in culture. Furthermore, this biological effect of AA is, at least in part, mediated through enhancing the responsiveness of the adenylyl cyclase-cAMP system.
机译:除在儿茶酚胺的生物合成中起重要的辅助因子作用外,抗坏血酸(AA)还调节肽基甘氨酸-α-酰胺化单加氧酶的活性,以翻译后修饰神经肽,例如α-MSH和TRH。我们在这里报告AA在调节大鼠下丘脑神经元中的cAMP依赖性蛋白激酶A途径激活后,调节免疫反应性β-内啡肽(ir-βEP)和proopiomelanocortin(POMC)mRNA表达的一种新作用。如前所述,本研究采用了新生鼠下丘脑神经元的原代培养。接种后六天,用无血清培养基补充培养物,并在存在或不存在毛喉素,3-异丁基-1-甲基黄嘌呤(IBMX),N6,2'-O-二丁酰腺苷3的情况下,用赋形剂或各种剂量的AA孵育。 '5'-(环状)单磷酸盐[(Bu)2cAMP]。基础的ir-βEP释放量为22.0 +/- 0.4 pg /孔(平均值+/- S.E.; n = 3),而10 microM的福司柯林处理则使ir-βEP释放量增加了约4.2倍。与AA共同孵育增强了福司柯林诱导的ir-βEP释放,并且AA的这种增强作用与时间有关且与剂量有关,ED50约为10 microM,Emax约为100 microM。在10 microM的浓度下,AA增强的ir-βEP的释放约为仅用福司高林处理的培养物的6.1倍。在与IBMX或(Bu)2cAMP共同处理的培养物中也看到了类似的AA增强作用。在接受相同处理的培养物中,总cAMP和POMC mRNA的丰度相似地发现了AA的这些增强作用。然而,重要的是要指出,当蛋白激酶A途径未激活时,单独的AA不能调节ir-βEP的释放或下丘脑培养物中POMC mRNA的丰度或总cAMP水平。因此,我们得出结论,AA增强了cAMP依赖性蛋白激酶A途径诱导的大鼠下丘脑神经元中βEP的产生和释放。此外,AA的这种生物学作用至少部分地通过增强腺苷酸环化酶-cAMP系统的响应性来介导。

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