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培养的星形胶质细胞上的催产素受体。胎鼠脑完整下丘脑和海马细胞上催产素结合位点的动力学和药理学特性。

Oxytocin receptors on cultured astroglial cells. Kinetic and pharmacological characterization of oxytocin-binding sites on intact hypothalamic and hippocampic cells from foetal rat brain.

作者信息

Di Scala-Guenot D, Strosser M T

机构信息

Laboratoire de Physiologie, URA 1446 C.N.R.S., Strasbourg, France.

出版信息

Biochem J. 1992 Jun 1;284 ( Pt 2)(Pt 2):491-7. doi: 10.1042/bj2840491.

Abstract

The ability of astroglial cells to exhibit oxytocin (OT)-binding sites has been investigated in embryonic hypothalamic and hippocampic astroglial cell cultures. The differential characteristics of binding of OT and [Arg8]vasopressin (AVP) agonists and antagonists to the OT-binding sites using the highly selective iodinated OT antagonist d(CH2)5-[Tyr(Me)2,Thr4,Tyr-NH2(9)]OVT ([125I]OTA) have been evaluated using intact cells maintained for 12 days in culture. The specific binding displayed features of reversibility. Computer analysis of the saturation studies using the LIGAND program indicated that, at 4 degrees C, the antagonist binds to a homogeneous population of sites with a Kd value of 0.02 nM and a low binding-site density of around 2 fmol/dish for hypothalamic cells and 6 fmol/dish for hippocampic cells. For hypothalamic cells, competition curves using unlabelled OT, AVP or V2 AVP agonist were characterized by a pseudo-Hill coefficient below unity (0.7), indicating possible heterogeneity among the binding sites. On the other hand, the dose-inhibition curves resulting from competition studies with hippocampic cells had a pseudo-Hill coefficient close to unity, except for OT. Computer analysis (LIGAND) indicated that the OT dose-inhibition curve was significantly better fitted to a two-site model, and this can be explained by two apparent forms of the receptor having high and low affinities for the displacing drug. The relative potencies of the peptides tested for binding to the high-affinity site were: AVP greater than OT greater than V1 AVP antagonist ([d(CH2)5-Tyr(Me)2]AVP) = V2 AVP agonist greater than AVP-Sar ([d(CH2)5-Sar7,Arg8]VP) in hypothalamic cultures, and OT = AVP greater than V1 AVP antagonist greater than V2 AVP agonist in hippocampic cultures. In addition, autoradiography allowed visualization of OT-binding sites, which are located on both soma and processes of astrocyte-like type of cells. In conclusion, these data provide evidence that glial cell cultures contain specific OT-binding sites which display pharmacological characteristics different from those already reported in neuronal cultures and in the adult rat brain.

摘要

已在胚胎下丘脑和海马星形胶质细胞培养物中研究了星形胶质细胞展现催产素(OT)结合位点的能力。使用高选择性碘化OT拮抗剂d(CH2)5-[Tyr(Me)2,Thr4,Tyr-NH2(9)]OVT([125I]OTA),对OT和[Arg8]加压素(AVP)激动剂及拮抗剂与OT结合位点的结合差异特性进行了评估,评估对象是在培养中维持12天的完整细胞。特异性结合表现出可逆性特征。使用LIGAND程序对饱和研究进行计算机分析表明,在4℃时,该拮抗剂与一组同质位点结合,下丘脑细胞的Kd值为0.02 nM,结合位点密度较低,约为2 fmol/培养皿,海马细胞的结合位点密度为6 fmol/培养皿。对于下丘脑细胞,使用未标记的OT、AVP或V2 AVP激动剂的竞争曲线的伪希尔系数低于1(0.7),表明结合位点可能存在异质性。另一方面,除OT外,海马细胞竞争研究产生的剂量抑制曲线的伪希尔系数接近1。计算机分析(LIGAND)表明,OT剂量抑制曲线与双位点模型拟合得更好,这可以用受体对置换药物具有高亲和力和低亲和力的两种明显形式来解释。在丘脑下部培养物中,测试的肽与高亲和力位点结合的相对效力为:AVP>OT>V1 AVP拮抗剂([d(CH2)5-Tyr(Me)2]AVP)=V2 AVP激动剂>AVP-Sar([d(CH2)5-Sar7,Arg8]VP);在海马培养物中,OT = AVP>V1 AVP拮抗剂>V2 AVP激动剂。此外,放射自显影可显示OT结合位点,其位于星形胶质细胞样细胞的胞体和突起上。总之,这些数据证明胶质细胞培养物中含有特定的OT结合位点,其药理学特性与已报道的神经元培养物和成年大鼠脑中的不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a604/1132665/92cb8b16f188/biochemj00134-0192-a.jpg

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