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February 1, 1996Journal of Clinical Investigation340 citationsOpen Access

Acute angiotensin-converting enzyme inhibition increases the plasma level of the natural stem cell regulator N-acetyl-seryl-aspartyl-lysyl-proline.

MAMichel AziziARA RousseauÉEÉric Ezan

Key Points

  • The aim is to assess how acute ACE inhibition affects plasma levels of Ac-SDKP, a natural stem cell regulator.
  • Double-blind, crossover, placebo-controlled trial with eight healthy subjects.

Structured PICO

Does captopril increase plasma levels of Ac-SDKP in healthy subjects?

P
Population
n=8 healthy subjects
I
Intervention
Captopril 50 mg single oral dose
C
Comparator
Placebo
O
Outcome
Plasma level of Ac-SDKP and in vitro [3H]Ac-SDKP hydrolysissurrogate

Acute ACE inhibition with captopril significantly increases plasma levels of the hematopoietic stem cell regulator Ac-SDKP, suggesting a physiological role for ACE in stem cell regulation.

Abstract

Angiotensin I-converting enzyme (ACE) has two homologous active NH2- and COOH-terminal domains and displays activity toward a broad range of substrates. The tetrapeptide N-acetyl-seryl-aspartyl-lysyl-proline (Ac-SDKP) has been shown to be hydrolyzed in vitro by ACE and to be a preferential substrate for its NH2-terminal active site. This peptide is a regulatory factor of hematopoiesis which reversibly stem cells and normal early progenitors into S-phase. We found that a single oral dose of 50 mg of the ACE inhibitor, captopril, when administered to eight healthy subjects in a double-blind, crossover, placebo-controlled study, massively increased the plasma level of Ac-SDKP. ACE inhibition by captopril induced a 90-99% inhibition of in vitro 3HAc-SDKP hydrolysis and a long-lasting 5.5-fold (range: 4-8.5-fold) increase in the plasma levels of Ac-SDKP. These results demonstrate that Ac-SDKP is the first natural peptide hydrolyzed by the NH2-terminal domain of ACE not only in vitro but also in vivo, confirming that both catalytic sites of ACE are physiologically active. Our data suggest that ACE may also be implicated in the process of hematopoietic stem cell regulation, by permanently degrading this natural circulating inhibitor of cell entry into S-phase.

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Cite This Study

Azizi et al. (1996) studied this question.

synapsesocial.com/papers/6a7212495d37378ac1df006bhttps://doi.org/10.1172/jci118484
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