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Use of aminopeptidase M as a hypotensive agent in spontaneously hypertensive rats
J W Wright1, H Z Amir, C E Murray
1Department of Psychology, Washington State University, Pullman 99164-4820.
Abstract:
The present investigation determined that a commercially available aminopeptidase M (AmM, Sigma Chemical) can be utilized to lower blood pressure in normotensive and hypertensive rats. In vitro analyses indicated that the predominant peptidase present in this preparation was AmM; however, it also contained some aminopeptidase A (AmA) and less DAP IV. Although no DAP IV-mediated metabolism of angiotensin II (AII) or angiotensin III (AIII) was measured, both AmM and AmA metabolized AII and AIII. Upon further examination, it appeared that AII could be converted to AIII by either AmM or AmA; however, Arg was cleaved from the N-Terminal of AIII predominantly by AmM. The aminopeptidase inhibitors actinonin (AC), amastatin (AM), and bestatin (BE) effectively blocked the AmM-induced hydrolysis of the Asp-Arg bond of AII, and the Arg-Val bond of AIII. The activity of AmA was inhibited by AM but was relatively resistant to inhibition by AC and BE. Next, exogenous aminopeptidase replacement was employed in the anesthetized spontaneously hypertensive rat (SHR) in an attempt to temporarily correct a hypothesized brain deficiency of receptor-associated peptidases and lower blood pressure. Third-ventricle infusion of AmM produced significant drops in blood pressure and heart rate in both SHRs and Wistar-Kyoto normotensive controls. Pretreatment with AC or BE was particularly effective at interfering with the subsequent AmM-induced hypotensive effect, while AM was less effective. The central mechanisms underlying these effects are in need of further investigation; however, they are at least partially dependent upon the brain angiotensin system.
Insights
Aminopeptidase M (AmM) effectively lowered blood pressure in rats by metabolizing angiotensin peptides. Inhibitors blocked this AmM-induced hypotensive effect, suggesting a role for the brain angiotensin system.
Area of Science:
- Biochemistry
- Physiology
- Pharmacology
Background:
- Aminopeptidases play roles in peptide metabolism.
- The brain angiotensin system is implicated in blood pressure regulation.
- Aminopeptidase M (AmM) is a commercially available enzyme preparation.
Purpose of the Study:
- To investigate the efficacy of aminopeptidase M (AmM) in lowering blood pressure in rats.
- To characterize the peptidase activity of a commercial AmM preparation.
- To explore the role of the brain angiotensin system in AmM-induced hypotension.
Main Methods:
- In vitro analysis of peptidase activity in commercial AmM.
- Metabolism studies of angiotensin II (AII) and angiotensin III (AIII) by AmM, aminopeptidase A (AmA), and dipeptidyl peptidase IV (DAP IV).
- Administration of AmM via third-ventricle infusion in anesthetized spontaneously hypertensive rats (SHRs) and Wistar-Kyoto controls.
- Inhibition studies using actinonin (AC), amastatin (AM), and bestatin (BE).
Main Results:
- Commercial AmM preparation contained AmM, AmA, and DAP IV.
- AmM and AmA metabolized AII and AIII.
- Third-ventricle infusion of AmM significantly reduced blood pressure and heart rate in SHRs and normotensive controls.
- AmM-induced hypotension was partially blocked by AC and BE, but less so by AM.
- The effects were at least partially dependent on the brain angiotensin system.
Conclusions:
- Commercial aminopeptidase M can be used to lower blood pressure in rats.
- The hypotensive effect of AmM is mediated, at least in part, by the brain angiotensin system.
- Aminopeptidase inhibitors can interfere with AmM-induced blood pressure reduction.