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大鼠胃壁中脑啡肽的代谢

Metabolism of enkephalin in stomach wall of rats.

作者信息

Bunnett N W, Walsh J H, Debas H T

机构信息

Department of Surgery, University of California, San Francisco 94143.

出版信息

Am J Physiol. 1990 Jan;258(1 Pt 1):G143-51. doi: 10.1152/ajpgi.1990.258.1.G143.

Abstract

Peptidases degrade neuropeptides and thereby limit the duration and extent of their influence. This investigation examined the importance of peptidases in the degradation of the neuropeptide enkephalin in the stomach wall of the rat. Metabolism of [Leu5]- and [D-Ala2][Leu5]enkephalin by gastric membranes was examined in vitro. Degradation of [Tyr1-3H][Leu5]enkephalin was studied in the gastric submucosa of anesthetized and conscious rats in vivo by using a catheter to deliver peptide to tissues and implanted dialysis fibers to collect the metabolites. Specific inhibitors were used to assess the contribution of particular enzymes. [Leu5]- and [Tyr1-3H][Leu5]enkephalin were metabolized by membranes and in the stomach wall by hydrolysis of the Tyr1-Gly2 bond. Degradation was inhibited by the aminopeptidase inhibitor amastatin (10(-5) M in vitro, 10 nmol in vivo). Inhibitors of endopeptidase-24.11 (phosphoramidon) and angiotensin-converting enzyme (captopril) did not inhibit degradation. Metabolism of the aminopeptidase-resistant analogue [D-Ala2][Leu5]enkephalin by membranes was unaffected by amastatin and weakly inhibited by phosphoramidon affected by amastatin and weakly inhibited by phosphoramidon and captopril. A carboxypeptidase removed the COOH-terminal leucine residue and made a substantial contribution to degradation of both peptides by gastric membranes.

摘要

肽酶可降解神经肽,从而限制其影响的持续时间和范围。本研究探讨了肽酶在大鼠胃壁中对神经肽脑啡肽降解的重要性。在体外检测了胃膜对[亮氨酸5] - 和[D - 丙氨酸2][亮氨酸5]脑啡肽的代谢情况。通过使用导管将肽输送到组织并植入透析纤维来收集代谢产物,在体内研究了麻醉和清醒大鼠胃黏膜中[酪氨酸1 - 3H][亮氨酸5]脑啡肽的降解。使用特异性抑制剂来评估特定酶的作用。[亮氨酸5] - 和[酪氨酸1 - 3H][亮氨酸5]脑啡肽在膜中以及在胃壁中通过酪氨酸1 - 甘氨酸2键的水解而代谢。降解受到氨肽酶抑制剂抑氨肽酶素(体外10(-5) M,体内10 nmol)的抑制。内肽酶 - 24.11(磷酰胺素)和血管紧张素转换酶(卡托普利)的抑制剂未抑制降解。膜对氨肽酶抗性类似物[D - 丙氨酸2][亮氨酸5]脑啡肽的代谢不受抑氨肽酶素影响,但受磷酰胺素轻微抑制,且受卡托普利影响并受磷酰胺素和卡托普利轻微抑制。一种羧肽酶去除了COOH末端的亮氨酸残基,并对胃膜对两种肽的降解有很大贡献。

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