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神经激肽结合位点类型之间对酚苄明烷基化的差异敏感性。

Differential sensitivity to phenoxybenzamine alkylation among types of neurokinin binding sites.

作者信息

Buck S H, Burcher E

出版信息

Neuropeptides. 1987 Jan;9(1):33-9. doi: 10.1016/0143-4179(87)90029-1.

Abstract

The effect of phenoxybenzamine (PBZ) treatment of crude membranes was examined on binding to neurokinin/tachykinin NK-1, NK-2, and NK-3 binding sites. PBZ in concentrations up to 300 microM resulted in only a slight reduction in Bmax in binding of iodinated substance P to NK-1 sites in rat submaxillary gland and in rat urinary bladder. PBZ in concentrations as low as 30 microM resulted in a decrease in Bmax or in affinity in binding of iodinated neurokinin A (substance K) to NK-2 sites in hamster bladder and in rat bladder, and a decrease in affinity in binding of iodinated eledoisin to NK-3 sites in rat cerebral cortex. The results indicate a parallelism in differential sensitivity to PBZ alkylation between neurokinin biological receptors and neurokinin ligand binding sites.

摘要

研究了苯氧苄胺(PBZ)处理粗制膜对其与神经激肽/速激肽NK-1、NK-2和NK-3结合位点结合的影响。浓度高达300微摩尔的PBZ仅使碘化P物质与大鼠颌下腺和大鼠膀胱中NK-1位点的结合Bmax略有降低。低至30微摩尔的PBZ导致碘化神经激肽A(物质K)与仓鼠膀胱和大鼠膀胱中NK-2位点的结合Bmax或亲和力降低,以及碘化eledoisin与大鼠大脑皮层中NK-3位点的结合亲和力降低。结果表明神经激肽生物受体和神经激肽配体结合位点对PBZ烷基化的差异敏感性具有平行性。

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