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中枢氨肽酶与血清素系统活性:可能的关系。

Central aminopeptidase and serotonin system activities: possible relationship.

作者信息

Cicin-Sain L, Simaga S, Froebe A, Abramić M

机构信息

Department of Molecular Biology, "Rudjer Bosković" Institute, Bijenicka 54, HR-10000 Zagreb, Croatia.

出版信息

Neuropeptides. 2008 Aug;42(4):435-40. doi: 10.1016/j.npep.2008.04.007. Epub 2008 Jun 10.

DOI:10.1016/j.npep.2008.04.007
PMID:18547641
Abstract

The co-localization of serotonin (5-hydroxytryptamine, 5HT) and neuroactive peptides in the same neuron points to the importance of interactions between serotonergic and peptidergic systems in maintaining body homeostasis. In this work, we used an original genetic rat model to search for possible interrelations between 5HT system functioning and the activities of aminopeptidases, i.e. enzymes which are the key regulators of (neuro)peptides level/function. The activities of three cytosolic exopeptidases: alanyl aminopeptidase (alanyl-AP), arginyl aminopeptidase (arginyl-AP) and dipeptidyl peptidase III (DPP III) were measured in brains and peripheral tissues of the sublines of rats with constitutionally upregulated/downregulated 5HT transporter activity. These rat sublines, termed as high-5HT and low-5HT subline, have been obtained previously by selective breeding for the extreme values of platelet 5HT level and velocity of 5HT uptake. Besides in the periphery they show marked alterations also in brain 5HT function, indicating the differences in central 5HT transmission/homeostasis. In this study, we have found that animals from the high-5HT subline have significantly lower activity of brain alanyl-AP (p<0.05) and arginyl-AP (p<0.01) as compared to control animals. No other differences were noticed regardless of the 5HT subline, investigated organ or analyzed aminopeptidase. Results suggest that the constitutional upregulation of serotonergic activity may be related to a lowered brain cytosolic aminopeptidase activity which may have an influence on the cleavage of their physiological substrates.

摘要

血清素(5-羟色胺,5HT)与神经活性肽在同一神经元中共定位,这表明血清素能系统与肽能系统之间的相互作用对于维持机体稳态具有重要意义。在本研究中,我们使用一种原始的遗传大鼠模型来探寻5HT系统功能与氨肽酶活性之间可能存在的相互关系,氨肽酶是(神经)肽水平/功能的关键调节酶。我们测定了5HT转运体活性在基因层面上调/下调的大鼠亚系的脑和外周组织中三种胞质外肽酶的活性:丙氨酰氨肽酶(丙氨酰-AP)、精氨酰氨肽酶(精氨酰-AP)和二肽基肽酶III(DPP III)。这些大鼠亚系,分别称为高5HT和低5HT亚系,先前是通过对血小板5HT水平和5HT摄取速度的极值进行选择性育种获得的。除了在外周组织中表现出明显变化外,它们在脑5HT功能方面也有显著改变,这表明中枢5HT传递/稳态存在差异。在本研究中,我们发现与对照动物相比,来自高5HT亚系的动物脑丙氨酰-AP活性显著降低(p<0.05),精氨酰-AP活性显著降低(p<0.01)。无论5HT亚系、所研究的器官或所分析的氨肽酶如何,均未发现其他差异。结果表明,血清素能活性的基因上调可能与脑胞质氨肽酶活性降低有关,这可能会影响其生理底物的裂解。

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