Nau R, Schäfer G, Deacon C F, Cole T, Agoston D V, Conlon J M
J Neurochem. 1986 Sep;47(3):856-64. doi: 10.1111/j.1471-4159.1986.tb00690.x.
Membrane vesicles, showing a 21 +/- 2-fold enrichment in the activity of 5'-nucleotidase and a 11 +/- 4-fold enrichment in the activity of angiotensin-converting enzyme relative to homogenate, were prepared from the myenteric plexus-containing longitudinal muscle layer of guinea pig ileum. Incubation of the vesicles with substance P and neurokinin A led to degradation of the peptides, and metabolites were isolated by reverse-phase HPLC and identified by amino acid composition. Cleavages of substance P between Glu6-Phe7, Phe7-Phe8, and Gly9-Leu10 and of neurokinin A between Gly8-Leu9 were observed and could be inhibited in a dose-dependent manner by phosphoramidon, an inhibitor of neutral endopeptidase 24.11. Formation of these metabolites was not completely inhibited by this agent, indicating that a phosphoramidon-insensitive form of endopeptidase 24.11 was present in the gut. Substance P was resistant to degradation by aminopeptidases, but neurokinin A was a substrate for bestatin-sensitive aminopeptidase(s), so that the neurokinin A (3-10) fragment represented the predominant metabolite in the chromatograms. The rate of formation of all the metabolites was not inhibited by enalapril and not enhanced by an increased Cl- concentration, indicating that angiotensin-converting enzyme was unimportant in the degradation process. Degradation of neurokinin A by the vesicles (Km 30 microM; Vmax 7.2 +/- 0.8 nmol min-1 mg of protein-1) was more rapid than degradation of substance P (Km 25 microM; Vmax 4.4 +/- 0.4 nmol min-1 mg of protein-1).
从豚鼠回肠含肌间神经丛的纵行肌层制备了膜囊泡,其5'-核苷酸酶活性相对于匀浆有21±2倍的富集,血管紧张素转换酶活性有11±4倍的富集。将这些囊泡与P物质和神经激肽A一起孵育会导致肽的降解,代谢产物通过反相高效液相色谱法分离并通过氨基酸组成进行鉴定。观察到P物质在Glu6 - Phe7、Phe7 - Phe8和Gly9 - Leu10之间以及神经激肽A在Gly8 - Leu9之间的裂解,并且可以被中性内肽酶24.11的抑制剂膦甲脒以剂量依赖的方式抑制。这些代谢产物的形成并未被该试剂完全抑制,表明肠道中存在膦甲脒不敏感形式的内肽酶24.11。P物质对氨肽酶的降解具有抗性,但神经激肽A是贝司他汀敏感的氨肽酶的底物,因此神经激肽A(3 - 10)片段是色谱图中的主要代谢产物。所有代谢产物的形成速率不受依那普利抑制,也不会因Cl⁻浓度增加而增强,表明血管紧张素转换酶在降解过程中不重要。囊泡对神经激肽A的降解(Km 30 μM;Vmax 7.2±0.8 nmol min⁻¹ mg蛋白⁻¹)比P物质的降解(Km 25 μM;Vmax 4.4±0.4 nmol min⁻¹ mg蛋白⁻¹)更快。