Shibanoki S, Weinberger S B, Beniston D, Nudelman K A, Schulteis G, Bennett E L, Rosenzweig M R, Ishikawa K, Martinez J L
Department of Pharmacology, Nihon University School of Medicine, Tokyo, Japan.
J Pharmacol Exp Ther. 1991 Feb;256(2):650-5.
The in vitro hydrolysis of [Leu]enkephalin added to plasma collected from 2-day-old chicks was studied with two different techniques: thin-layer chromatography separation of intact [3H]-[Leu]enkephalin from its [3H]-Tyr-containing metabolites and high-performance liquid chromatography-electrochemical detection assay of [Leu]enkephalin disappearance and Tyr-containing metabolite accumulation. The radiometric assay evaluated enkephalin hydrolysis at close to presumed physiological concentrations of this peptide, whereas the liquid chromatography assay necessitated 100-fold higher peptide concentrations to achieve adequate sensitivity. Similar results were obtained with both techniques. We found that the in vitro hydrolysis of [Leu]enkephalin is more rapid in chick plasma (half-life, 0.7-1 min) than in rat (half-life, 2-2.5 min) or mouse (half-life, 9-14 min) plasma. Comparison of the rate of enkephalin hydrolysis and pattern of metabolite accumulation in the absence vs. the presence of various peptidase inhibitors suggested that a bestatin-sensitive aminopeptidase, probably aminopeptidase M, is the primary enzyme responsible for the hydrolysis of enkephalin by chick plasma, and that less than 1% of the total hydrolysis of [Leu]-enkephalin by chick plasma is attributable to dipeptidyl carboxy-peptidase activity. This pattern of enzyme activities differs from that which we identified previously in rat and mouse plasma.
采用两种不同技术研究了添加到2日龄雏鸡采集的血浆中的亮氨酸脑啡肽的体外水解:从其含[³H] - 酪氨酸的代谢产物中通过薄层色谱法分离完整的[³H] - 亮氨酸脑啡肽,以及通过高效液相色谱 - 电化学检测法测定亮氨酸脑啡肽的消失和含酪氨酸代谢产物的积累。放射性测定法在接近该肽假定的生理浓度下评估脑啡肽水解,而液相色谱测定法需要高出100倍的肽浓度以达到足够的灵敏度。两种技术得到了相似的结果。我们发现,亮氨酸脑啡肽在雏鸡血浆中的体外水解(半衰期为0.7 - 1分钟)比在大鼠(半衰期为2 - 2.5分钟)或小鼠(半衰期为9 - 14分钟)血浆中更快。在存在与不存在各种肽酶抑制剂的情况下比较脑啡肽水解速率和代谢产物积累模式表明,一种对贝抑素敏感的氨肽酶,可能是氨肽酶M,是雏鸡血浆中负责脑啡肽水解的主要酶,并且雏鸡血浆对亮氨酸脑啡肽的总水解中不到1%归因于二肽基羧肽酶活性。这种酶活性模式与我们之前在大鼠和小鼠血浆中鉴定的不同。