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使用抗降解的125I-CCK-8探针表征大鼠大脑皮质中的胆囊收缩素结合位点。

Characterization of cholecystokinin binding sites in rat cerebral cortex using a 125I-CCK-8 probe resistant to degradation.

作者信息

Praissman M, Martinez P A, Saladino C F, Berkowitz J M, Steggles A W, Finkelstein J A

出版信息

J Neurochem. 1983 May;40(5):1406-13. doi: 10.1111/j.1471-4159.1983.tb13583.x.

DOI:10.1111/j.1471-4159.1983.tb13583.x
PMID:6300335
Abstract

Specific binding sites for cholecystokinin (CCK) have been characterized in a particulate membrane fraction of rat cerebral cortex using a biologically active 125I-labeled derivative of the C-terminal octapeptide of CCK (CCK-8) prepared by reaction with the iodinated form of the imidoester (125IIE), methyl-p-hydroxybenzimidate. The time course of binding to cortical membranes was rapid, temperature dependent, and saturable. Half-maximal binding at 24 degrees C was reached in 30 min and full binding at 120 min. At 37 degrees C there was only a slight increase in 125IIE-CCK-8 bound after 15 min. The addition of a large excess of CCK-8 after 30 min of binding at 24 degrees C caused a prompt and rapid decline in radioligand bound showing that the interaction was reversible. There was a progressive decline in the amount of 125IIE-CCK-8 bound to membranes with increasing concentrations of CCK-8 and other structurally related peptides. CCK-8 displaced 50% of the radioligand at 4 nM, CCK-33 at 10 nM, and gastrin (desulfated CCK-8) at 60 nM. Secretin, a structurally unrelated peptide, was unable to displace the radioligand from cortical membranes at 1.0 microM. Finally, 125IIE-CCK-8 exposed to cortical membranes or to buffers that had previously contained such membranes for 60 min at 24 degrees C bound equally as well to fresh cortical membranes as control radioligand that had not been exposed to the same conditions. Thus the 125I-CCK-8 radioligand used in this study was highly resistant to degradative processes in rat brain tissue.

摘要

使用通过与亚氨基酯(125IIE)的碘化形式(对羟基苯甲酸甲酯)反应制备的胆囊收缩素(CCK)C末端八肽(CCK-8)的具有生物活性的125I标记衍生物,已在大鼠大脑皮质的微粒体膜部分中鉴定出CCK的特异性结合位点。与皮质膜结合的时间进程迅速,依赖温度且可饱和。在24℃下,30分钟达到最大结合量的一半,120分钟达到完全结合。在37℃下,15分钟后结合的125IIE-CCK-8仅略有增加。在24℃下结合30分钟后加入大量过量的CCK-8导致结合的放射性配体迅速下降,表明这种相互作用是可逆的。随着CCK-8和其他结构相关肽浓度的增加,与膜结合的125IIE-CCK-8量逐渐下降。CCK-8在4 nM时取代50%的放射性配体,CCK-33在10 nM时取代,胃泌素(去硫酸化CCK-8)在60 nM时取代。促胰液素是一种结构不相关的肽,在1.0 microM时无法从皮质膜中取代放射性配体。最后,在24℃下与皮质膜或先前含有此类膜的缓冲液接触60分钟的125IIE-CCK-8与新鲜皮质膜的结合程度与未暴露于相同条件的对照放射性配体相同。因此,本研究中使用的125I-CCK-8放射性配体对大鼠脑组织中的降解过程具有高度抗性。

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Characterization of cholecystokinin binding sites in rat cerebral cortex using a 125I-CCK-8 probe resistant to degradation.使用抗降解的125I-CCK-8探针表征大鼠大脑皮质中的胆囊收缩素结合位点。
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