首页 | 本学科首页   官方微博 | 高级检索  
检索        


Proteolysis of Human Calcitonin in Excised Bovine Nasal Mucosa: Elucidation of the Metabolic Pathway by Liquid Secondary lonization Mass Spectrometry (LSIMS) and Matrix Assisted Laser Desorption lonization Mass Spectrometry (MALDI)
Authors:Lang  Steffen R  Staudenmann  Werner  James  Peter  Manz  Hans-Jörg  Kessler  Rudolf  Galli  Bruno  Moser  Hans-Peter  Rummelt  Andreas  Merkle  Hans P
Institution:(1) Department of Pharmacy, Swiss Federal Institute of Technology Zurich (ETH), CH-8057, Zurich;(2) Department of Biology, Laboratory of Biochemistry, Swiss Federal Institute of Technology Zurich (ETH), CH-8006, Zurich;(3) Central Analytical Department, Ciba-Geigy AG, CH-4002, Basle;(4) Research and Development, Ciba-Geigy AG, CH-4002, Basle;(5) Central Analytical Department, Sandoz AG, CH-4002, Basle;(6) Research and Development, Sandoz AG, CH-4002, Basle;(7) Present address: Corporate Research Units, Ciba-Geigy AG, CH-4002, Basle
Abstract:Purpose. Two calcitonins, i.e. human calcitonin (hCT) and, for comparison, salmon calcitonin (sCT), were chosen as peptide models to investigate nasal mucosal metabolism. Methods. The susceptibility of hCT and sCT to nasal mucosal enzymes was assessed by in-and-out reflection kinetics experiments in an in vitro model based on the use of freshly excised bovine nasal mucosa, with the mucosal surface of the mucosa facing the peptide solution. The kinetics of CT degradation in the bulk solution was monitored by HPLC. Peptide sequences of the main nasal metabolites of hCT were analyzed by using both liquid secondary ionization mass spectrometry (LSIMS), following HPLC fractionation of the metabolites, and matrix-assisted laser desorption ionization mass (MALDI) spectrometry. For sCT, the molecular weights of two major metabolites were determined by LC-MS with electrospray ionization. Results. Both CTs were readily metabolized by nasal mucosal enzymes. In the concentration range studied metabolic rates were higher with hCT than with sCT. Presence of endopeptidase activities in the nasal mucosa was crucial, cleaving both calcitonins in the central domain of the molecules. Conclusions. Typically, initial metabolic cleavage of hCT in nasal mucosa is due to both chymotryptic- and tryptic-like endopeptidases. The subsequent metabolic break-down follows the sequential pattern of aminopeptidase activity. Tryptic endopeptidase activity is characteristic of nasal sCT cleavage.
Keywords:human calcitonin  salmon calcitonin  peptide metabolism  nasal metabolism  nasal mucosa  metabolic pathway  mass spectrometry  MALDI-MS  LSIMS  LC-MS
本文献已被 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号