Bradykinin, a circulating vasoactive peptide, is degraded almost completely during a single passage through the lung. The enzymes responsible for bradykinin metabolism are located on the plasma membrane of vascular endothelial cells. While angiotensin converting enzyme has been implicated in this process, a considerable amount of evidence suggests that other less-well characterized enzymes are also significantly involved. We have identified a novel mechanism of bradykinin degradation in lung which involves cleavage of the Arg-1-Pro-2 -bond by aminopeptidase P. This membrane-bound enzyme is likely to be highly specific for bradykinin, and its importance has been demonstrated both in vitro and in situ using the isolated perfused rat lung model. In order to Fetter understand the role of this enzyme in regulating bradykinin function, aminopeptidase P will be purified to homogeneity and then extensively characterized in terms of its physical and enzymatic properties. A search will be made for potent and highly selective inhibitors of aminopeptidase P. The inhibitors will then be tested for their ability to prevent degradation of bradykinin in the isolated perfused rat lung. This information may provide the rationale for the control of both the plasma levels and physiological actions of circulating bradykinin.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL045159-03
Application #
2221964
Study Section
Pathology A Study Section (PTHA)
Project Start
1991-08-01
Project End
1995-07-31
Budget Start
1993-08-01
Budget End
1995-07-31
Support Year
3
Fiscal Year
1993
Total Cost
Indirect Cost
Name
Loyola University Chicago
Department
Biochemistry
Type
Schools of Medicine
DUNS #
791277940
City
Maywood
State
IL
Country
United States
Zip Code
60153
Maggiora, L L; Orawski, A T; Simmons, W H (1999) Apstatin analogue inhibitors of aminopeptidase P, a bradykinin-degrading enzyme. J Med Chem 42:2394-402
Ersahin, C; Simmons, W H (1997) Inhibition of both aminopeptidase P and angiotensin-converting enzyme prevents bradykinin degradation in the rat coronary circulation. J Cardiovasc Pharmacol 30:96-101
Orawski, A T; Simmons, W H (1995) Purification and properties of membrane-bound aminopeptidase P from rat lung. Biochemistry 34:11227-36
Prechel, M M; Orawski, A T; Maggiora, L L et al. (1995) Effect of a new aminopeptidase P inhibitor, apstatin, on bradykinin degradation in the rat lung. J Pharmacol Exp Ther 275:1136-42
Yoshimoto, T; Orawski, A T; Simmons, W H (1994) Substrate specificity of aminopeptidase P from Escherichia coli: comparison with membrane-bound forms from rat and bovine lung. Arch Biochem Biophys 311:28-34
Orawski, A T; Simmons, W H (1992) Aminopeptidase P: purification of a membrane-bound bradykininase from rat lung. Agents Actions Suppl 38 ( Pt 1):414-21