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首页> 外文期刊>General and comparative endocrinology >Effects of steroid hormones on synaptosomal ectonucleotidase activities from hippocampus and cortex of adult female rats.
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Effects of steroid hormones on synaptosomal ectonucleotidase activities from hippocampus and cortex of adult female rats.

机译:类固醇激素对成年雌性大鼠海马和皮层突触体外切核苷酸酶活性的影响。

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Over the last few years, the effects of steroid hormones on the brain have been intensively discussed. It has been demonstrated that ATP (acting as a neurotransmitter) is hydrolyzed to adenosine in the synaptic cleft by the conjugated action of ectonucleotidases, which include an enzyme of the E-NTPDase family (NTPDase3, apyrase, EC 3.6.1.5) and a 5'-nucleotidase (EC 3.1.3.5). The 5'-nucleotidase enzyme is able to hydrolyze AMP as well as other monophosphate nucleotides. The importance of this enzyme in the central nervous system is to participate in the adenosine formation, a nucleoside with neuroprotective properties and modulatory effects. However, several questions have been raised about the mechanisms of steroid hormones and the possible neuroprotective effects of estrogen. Thus, we examined the effects of gonadal steroid hormone deprivation, induced by ovary removal (OVX) and estradiol replacement therapy, on the ectonucleotidase activities in synaptosomes from hippocampus and cerebral cortex of adult rats. ATP and ADP hydrolysis in synaptosomes from cerebral cortex and hippocampus did not change as a function of OVX and results demonstrated an increase in AMP hydrolysis (82%) in the animals submitted to OVX in cerebral cortex, but not in hippocampus, when compared to control and sham-operated groups. Estradiol replacement therapy reversed this effect. RT-PCR analysis showed that the enhancement of enzyme activity in cerebral cortex could be explained by the higher expression of 5'-nucleotidase, following OVX. The hormones 17beta-estradiol (cyclodextrin-encapsulated 17beta-estradiol), DHEAS, and pregnenolone (1.0, 2.5, and 5.0 microM) did not alter the nucleotide hydrolysis, in vitro, in synaptosomes from cortex and hippocampus of female adult rats. Results presented, herein, should be considered relevant for hormone replacement therapy, since much controversy exists surrounding this area and the relationship between adenosine and sex steroids is still poorly understood.
机译:在过去的几年中,已经广泛讨论了类固醇激素对大脑的影响。已经证明,ATP(作为神经递质)通过外切核苷酸酶的共轭作用被水解为突触间隙中的腺苷,所述外切核苷酸酶包括E-NTPDase家族的一种酶(NTPDase3,腺苷三磷酸酶,EC 3.6.1.5)和5。 -核苷酸酶(EC 3.1.3.5)。 5'-核苷酸酶能够水解AMP以及其他单磷酸核苷酸。该酶在中枢神经系统中的重要性在于参与腺苷的形成,腺苷是具有神经保护特性和调节作用的核苷。然而,关于类固醇激素的机制以及雌激素可能的神经保护作用,已经提出了几个问题。因此,我们研究了卵巢切除(OVX)和雌二醇替代疗法诱导的性腺类固醇激素剥夺对成年大鼠海马和大脑皮层突触小体中外切核苷酸酶活性的影响。与对照组相比,大脑皮层和海马突触体中的ATP和ADP水解没有随OVX的变化而变化,结果表明,提交给OVX的动物大脑皮层中的AMP水解增加(82%),海马中没有和假手术团体。雌二醇替代疗法逆转了这种作用。 RT-PCR分析表明,OVX后5'-核苷酸酶的高表达可以解释大脑皮层中酶活性的增强。雌成年大鼠皮层和海马突触小体中的激素17β-雌二醇(环糊精包封的17β-雌二醇),DHEAS和孕烯醇酮(1.0、2.5和5.0 microM)在体外不会改变核苷酸水解。本文提出的结果应被认为与激素替代治疗有关,因为围绕该领域存在许多争议,并且腺苷和性类固醇之间的关系仍然知之甚少。

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