首页> 外文期刊>Regulatory peptides. >Neurotensin modulates central muscarinic receptors, an effect which does not involve the high-affinity neurotensin receptor (NTS1).
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Neurotensin modulates central muscarinic receptors, an effect which does not involve the high-affinity neurotensin receptor (NTS1).

机译:神经降压素调节中央毒蕈碱受体,该作用不涉及高亲和力神经降压素受体(NTS1)。

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摘要

Neurotensin (NT) is a tridecapeptide distributed in central and peripheral nervous systems, which can behave as a neurotransmitter or neuromodulator at central and peripheral levels. Herein we tested the potential effect of this peptide on quinuclidinyl benzilate ([3H]-QNB) binding to muscarinic receptor in rat CNS membranes. It was observed that NT decreased up to 50-70% ligand binding at 1x10(-7) M-1x10(-5) M concentration in cerebral cortex, cerebellum and striatum. In the hippocampus, NT exerted a biphasic effect, behaving as a stimulator in the presence of 1x10(-12) M-1x10(-10) M concentration but as an inhibitor at 1x10(-8) M-1x10(-5) M concentration. In order to test the involvement of high-affinity NT receptor (NTS1) in NT inhibitory effect, assays were carried out in the presence of 1x10(-6) M NT and/or SR 48692 (Sanofi-Aventis, U.S., Inc.), a specific antagonist for this receptor, dissolved in dimethylsulfoxide (DMSO) 10% v/v. As controls, membranes incubated with DMSO and/or NT 1x10(-6) M plus DMSO were processed. It was found that NT+DMSO decreased [3H]-QNB binding to cerebral cortex, cerebellum and hippocampal membranes by 49%, 32% and 53%, respectively. This inhibition was not observed with the DMSO control group. Membrane preincubation with 1x10(-6) M SR 48692 failed to alter NT effect on binding. SR 48692 at 1x10(-6) M concentration decreased the binding by 50% only in cerebral cortex membranes, suggesting a possible direct effect of the antagonist on muscarinic receptors in this area. It was therefore concluded that the high-affinity NT receptor may not be involved in ligand binding inhibition to muscarinic receptor by NT.
机译:神经降压素(NT)是分布在中枢和外周神经系统中的三肽,在中枢和外周水平上可以充当神经递质或神经调节剂。本文中,我们测试了该肽对奎宁环烷基苯磺酸盐([3H] -QNB)与大鼠CNS膜中毒蕈碱受体结合的潜在作用。观察到,在大脑皮层,小脑和纹状体中,在1x10(-7)M-1x10(-5)M浓度下,NT最多可降低50-70%的配体结合。在海马中,NT发挥了双相作用,在浓度为1x10(-12)M-1x10(-10)M时表现为刺激物,但在1x10(-8)M-1x10(-5)M时表现为抑制剂浓度。为了测试高亲和力NT受体(NTS1)在NT抑制作用中的参与,在1x10(-6)M NT和/或SR 48692(Sanofi-Aventis,US,Inc.)存在下进行测定,该受体的特异性拮抗剂,溶于10%v / v的二甲亚砜(DMSO)。作为对照,处理与DMSO和/或NT 1x10(-6)M加DMSO孵育的膜。发现NT + DMSO降低了[3H] -QNB与大脑皮层,小脑和海马膜的结合,分别降低了49%,32%和53%。在DMSO对照组中未观察到这种抑制作用。膜与1x10(-6)M SR 48692的预孵育未能改变NT对结合的影响。 SR 48692在1x10(-6)M浓度下仅在大脑皮层膜中使结合降低了50%,表明该拮抗剂可能对该区域的毒蕈碱受体具有直接作用。因此得出结论,高亲和力NT受体可能不参与NT对毒蕈碱受体的配体结合抑制。

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