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大鼠脑膜上的两类精氨酸加压素结合位点。

Two classes of arginine vasopressin binding sites on rat brain membranes.

作者信息

Junig J T, Abood L G, Skrobala A M

出版信息

Neurochem Res. 1985 Sep;10(9):1187-202. doi: 10.1007/BF00964839.

Abstract

Specific binding sites for arginine vasopressin (AVP) were demonstrated on rat brain membranes using [3H]AVP of high specific activity. At pH 7.4 in the presence of 5 mM MgCl2, one class of sites was measured with a KD of 0.56 nM and a Bmax of 4.3 fmol/mg protein. At pH 8.0 in the presence of MgCl2, two distinct sites were observed, having KD values of 0.42 and 13 nM and Bmax values of 5.6 and 68 fmol/mg protein, respectively, and similar results were obtained at pH 7.4 after repeatedly freezing and thawing the membranes. Binding increased with pH, apparently representing increased occupancy of the high capacity, lower affinity site. Binding to the lower affinity site was also enhanced by freezing and thawing membranes, or by adding 5 mM NiCl2 or 10 microM ZnCl2 to the incubation medium, whereas binding to the high affinity site was dependent on the addition of Mg. AVP was over 35 times more active in displacing 0.4 nM AVP than oxytocin or arginine-vasotocin, and 10,000 times more active than somatostatin. A number of other peptides had no effect on [3H]AVP binding at concentrations up to 10(-5) M. Autoradiography and regional dissection studies revealed a marked concentration of high affinity AVP-binding sites in the supraoptic and paraventricular nuclei of the hypothalamus, and Mg significantly enhanced the binding in these regions.

摘要

利用高比活度的[3H]精氨酸加压素(AVP)在大鼠脑膜上证实了精氨酸加压素的特异性结合位点。在pH 7.4且存在5 mM MgCl2的条件下,测得一类位点的解离常数(KD)为0.56 nM,最大结合容量(Bmax)为4.3 fmol/mg蛋白。在pH 8.0且存在MgCl2的条件下,观察到两个不同的位点,其KD值分别为0.42和13 nM,Bmax值分别为5.6和68 fmol/mg蛋白,并且在对膜进行反复冻融后,于pH 7.4时也获得了类似结果。结合随pH升高而增加,这显然代表高容量、低亲和力位点的占有率增加。膜的冻融、或向孵育介质中添加5 mM NiCl2或10 μM ZnCl2也可增强与低亲和力位点的结合,而与高亲和力位点的结合则依赖于Mg的添加。AVP在置换0.4 nM AVP方面的活性比催产素或精氨酸-促血管紧张素多35倍以上,比生长抑素多10,000倍以上。许多其他肽在浓度高达10(-5) M时对[3H]AVP结合无影响。放射自显影和区域解剖研究显示,下丘脑视上核和室旁核中高亲和力AVP结合位点高度集中,并且Mg可显著增强这些区域的结合。

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