Bitran M, Torres G, Tapia W, Huidobro-Toro J P
Departamento de Fisiología, Facultad de Ciencias Biológicas, Pontificia Universidad Católica de Chile, Santiago, Chile.
Neurochem Int. 1996 Mar;28(3):309-17. doi: 10.1016/0197-0186(95)00084-4.
The purpose of the present investigation was to ascertain the functional significance of the reduction in cyclic AMP (cAMP) levels in the inhibitory action of neuropeptide Y (NPY) on [3H]noradrenaline ([3H]NA) release, as well as to further characterize the subtype(s) of NPY receptors involved in the peptide's actions in the rat vas deferens. We studied the effects of NPY, carboxyterminal fragments of this peptide and the NPY analog (Leu31,Pro34)-NPY on three functional responses, namely, the release of [3H]NA and the associated muscle contractions evoked by electrical stimulation, and the accumulation of cAMP stimulated by forskolin. NPY, a known inhibitor of the electrically-evoked [3H]NA release and neurogenic contractions is also a potent inhibitor of the forskolin-stimulated cAMP synthesis in the prostatic portion of the rat vas deferens. However, the ability of NPY to inhibit cAMP accumulation is lost upon tissue denervation, suggesting that this is likely to be a prejunctional effect. Elevation of cAMP levels by the use of the cell permeant analog of cAMP, 8-(p-chlorophenylthio)-cAMP (8pCPTcAMP) increases the electrically-evoked release of [3H]NA. However, the inhibition of [3H]NA release by NPY is not prevented by 8pCPTcAMP. Structure-activity relationship studies reveal that NPY and related peptides inhibit the release of [3H]NA, the muscle contractions and the synthesis of cAMP with a similar pharmacological profile. NPY is the most potent inhibitory agent, whereas [Leu31,Pro34]-NPY and NPY13-36, the respective Y1 and Y2 selective agonists, display similar potencies to inhibit the three responses. It is concluded that NPY inhibits neurotransmission in the rat vas deferens through the activation of a peptide receptor different from the known NPY-Y1 or NPY-Y2 receptor subtypes. NPY receptor activation in the vas deferens is negatively coupled to adenylyl cyclase activity. This intracellular signalling pathway is, however, not likely to mediate the peptide effects on the prejunctional regulation of noradrenaline release.
本研究的目的是确定环磷酸腺苷(cAMP)水平降低在神经肽Y(NPY)对[3H]去甲肾上腺素([3H]NA)释放的抑制作用中的功能意义,并进一步表征参与该肽在大鼠输精管中作用的NPY受体亚型。我们研究了NPY、该肽的羧基末端片段以及NPY类似物(Leu31,Pro34)-NPY对三种功能反应的影响,即[3H]NA的释放以及电刺激引起的相关肌肉收缩,以及福斯可林刺激的cAMP积累。NPY是电诱发的[3H]NA释放和神经源性收缩的已知抑制剂,也是大鼠输精管前列腺部分中福斯可林刺激的cAMP合成的有效抑制剂。然而,NPY抑制cAMP积累的能力在组织去神经后丧失,这表明这可能是一种节前效应。使用cAMP的细胞渗透性类似物8-(对氯苯硫基)-cAMP(8pCPTcAMP)提高cAMP水平会增加电诱发的[3H]NA释放。然而,8pCPTcAMP并不能阻止NPY对[3H]NA释放的抑制。构效关系研究表明,NPY和相关肽以相似的药理学特征抑制[3H]NA的释放、肌肉收缩和cAMP的合成。NPY是最有效的抑制剂,而[Leu31,Pro34]-NPY和NPY13-36,分别为Y1和Y2选择性激动剂,在抑制这三种反应方面显示出相似的效力。结论是,NPY通过激活不同于已知NPY-Y1或NPY-Y2受体亚型的肽受体来抑制大鼠输精管中的神经传递。输精管中的NPY受体激活与腺苷酸环化酶活性负相关。然而,这种细胞内信号通路不太可能介导该肽对去甲肾上腺素释放的节前调节作用。