Cardiac angiotensin-(1–12) expression and systemic hypertension in rats expressing the human angiotensinogen gene

Author:

Ferrario Carlos M.12,VonCannon Jessica13,Jiao Yan1,Ahmad Sarfaraz3,Bader Michael4,Dell'Italia Louis J.5,Groban Leanne36,Varagic Jasmina132

Affiliation:

1. Department of Surgery, Wake Forest School of Medicine, Winston Salem, North Carolina;

2. Departments of Medicine-Nephrology and Physiology-Pharmacology, Wake Forest School of Medicine, Winston Salem, North Carolina

3. Hypertension and Vascular Research Center, Wake Forest School of Medicine, Winston Salem, North Carolina;

4. Max-Delbrück-Center for Molecular Medicine (MDC), Berlin, Germany;

5. Division of Cardiovascular Disease, University of Alabama at Birmingham and Department of Veterans Affairs, Birmingham Veterans Affairs Medical Center, Birmingham, Alabama;

6. Department of Anesthesiology, Wake Forest School of Medicine, Winston Salem, North Carolina; and

Abstract

Angiotensin-(1–12) [ANG-(1–12)] is processed into ANG II by chymase in rodent and human heart tissue. Differences in the amino acid sequence of rat and human ANG-(1–12) render the human angiotensinogen (hAGT) protein refractory to cleavage by renin. We used transgenic rats harboring the hAGT gene [TGR(hAGT)L1623] to assess the non-renin-dependent effects of increased hAGT expression on heart function and arterial pressure. Compared with Sprague-Dawley (SD) control rats ( n = 11), male homozygous TGR(hAGT)L1623 ( n = 9) demonstrated sustained daytime and nighttime hypertension associated with no changes in heart rate but increased heart rate lability. Increased heart weight/tibial length ratio and echocardiographic indexes of cardiac hypertrophy were associated with modest reduction of systolic function in hAGT rats. Robust human ANG-(1–12) immunofluorescence within myocytes of TGR(hAGT)L1623 rats was associated with a fourfold increase in cardiac ANG II content. Chymase enzymatic activity, using the rat or human ANG-(1–12) as a substrate, was not different in the cardiac tissue of SD and hAGT rats. Since both cardiac angiotensin-converting enzyme (ACE) and ACE2 activities were not different among the two strains, the changes in cardiac structure and function, blood pressure, and left ventricular ANG II content might be a product of an increased cardiac expression of ANG II generated through a non-renin-dependent mechanism. The data also underscore the existence in the rat of alternate enzymes capable of acting on hAGT protein. Homozygous transgenic rats expressing the hAGT gene represent a novel tool to investigate the contribution of human relevant renin-independent cardiac ANG II formation and function.

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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