Substance P (SP), which is known as a pain transmitter or modulator in the spinal cord, was degraded by the synaptic membranes of the mouse spinal cord. The major metabolites of SP were phenylalanine, SP(1-6), SP(1-7), SP(1-9), SP(8-9) and SP(10-11). Degradation of SP was inhibited by a metal chelator, o-phenanthroline, and also by specific inhibitors of endopeptidase-24.11, thiorphan and phosphoramidon. In contrast, captopril (a specific inhibitor of angiotensin-converting enzyme), bestatin (a specific inhibitor of aminopeptidase) and Z-321 (a specific inhibitor of prolylendopeptidase) showed little effect on the degradation of SP. The accumulation of the major cleavage products was strongly inhibited by phosphoramidon and thirophan, as well as the initial cleavage of SP. Thus, endopeptidase-24.11 plays a major role in SP degradation in the mouse spinal cord. Additional in vivo experiments were performed to investigate the antinociceptive effect of SP(1-7), a major product of SP that was detected after incubation with spinal synaptic membranes. In the mouse tail-flick test, the intrathecal administration of SP(1-7) (1.0-4.0 pmol) increased tail-flick latency in a dose-dependent manner. These results suggest that degradation of SP by spinal endopeptidase-24.11 may lead to the formation of SP(1-7), which has an ability to produce antinociceptive effects at the mouse spinal cord level.

译文

p物质 (SP) 被称为脊髓中的疼痛递质或调节剂,被小鼠脊髓的突触膜降解。SP的主要代谢产物为苯丙氨酸,SP(1-6),SP(1-7),SP(1-9),SP(8-9) 和SP(10-11)。SP的降解被金属螯合剂邻菲咯啉以及endopeptidase-24.11,硫代吗啡和磷酰胺的特异性抑制剂抑制。相反,卡托普利 (血管紧张素转化酶的特定抑制剂),bestatin (氨肽酶的特定抑制剂) 和Z-321 (脯氨酸内肽酶的特定抑制剂) 对SP的降解几乎没有影响。磷酰胺和thirophan以及SP的初始裂解强烈抑制了主要裂解产物的积累。因此,endopeptidase-24.11在小鼠脊髓的SP降解中起主要作用。进行了其他体内实验以研究SP(1-7) 的抗伤害感受作用,SP是与脊髓突触膜孵育后检测到的SP的主要产物。在小鼠甩尾试验中,鞘内施用SP(1-7) (1.0-4.0 pmol) 以剂量依赖性方式增加甩尾潜伏期。这些结果表明,脊髓endopeptidase-24.11对SP的降解可能导致SP(1-7) 的形成,SP具有在小鼠脊髓水平产生抗伤害感受作用的能力。

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