(Circulation. 1999;100:407-412.)
© 1999 American Heart Association, Inc.
Basic Science Reports |
From the Department of Medicine, Cardiovascular Division, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, Mass (S.R., X.Y., E.O.W., F.H., J.B., B.H.L.); and Cambridge NeuroScience Inc, Cambridge Mass (M.A.M.).
Correspondence to Beverly H. Lorell, MD, Cardiovascular Division, Beth Israel Deaconess Medical Center, 330 Brookline Ave, Boston, MA 02215. E-mail blorell{at}caregroup.harvard.edu
BackgroundNeuregulins are a family of peptide growth factors that promote cell growth and viability. The potential role of neuregulin-erbB signaling in hypertrophic growth and later failure in the adult heart in vivo is not known.
Methods and ResultsWe used ribonuclease protection assays to quantify mRNA levels of neuregulin, erbB2, and erbB4 in left ventricular (LV) tissue and myocytes of normal rats and rats with aortic stenosis with pressure-overload hypertrophy 6 and 22 weeks after banding. At both stages of hypertrophy, Northern blot analyses of mRNA from LV myocytes showed upregulation of atrial natriuretic peptide, a molecular marker of hypertrophy (P<0.05). LV tissue neuregulin message levels were similar in animals with aortic stenosis compared with controls (P=NS) and were not detectable in myocytes. LV erbB2 and erbB4 message levels in LV tissue and myocytes were maintained during early compensatory hypertrophy in 6-week aortic stenosis animals compared with age-matched controls; in contrast, erbB2 and erbB4 message levels were depressed in 22-week aortic stenosis animals at the stage of early failure (both P<0.01 vs age-matched controls). Immunoblotting of erbB2 and erbB4 also showed normal protein levels in 6-week aortic stenosis animals compared with controls; however, erbB2 and erbB4 protein levels were depressed in 22-week aortic stenosis animals (48% decrease in erbB2, P<0.05, and 43% decrease in erbB4, P<0.01) relative to age-matched controls.
ConclusionsThe neuregulin receptors erbB2 and erbB4 are downregulated at both the message and protein levels at the stage of early failure in animals with chronic hypertrophy secondary to aortic stenosis. These data suggest a role for disabled erbB receptor signaling in the transition from compensatory hypertrophy to failure.
Key Words: growth substances myocytes hypertrophy heart failure
This article has been cited by other articles:
![]() |
S. Rohrbach, A. Martin, B. Niemann, and A. Cherubini Enhanced myocardial vitamin C accumulation in left ventricular hypertrophy in rats is not attenuated with transition to heart failure Eur J Heart Fail, March 1, 2008; 10(3): 226 - 232. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. Lemmens, K. Doggen, and G. W. De Keulenaer Role of Neuregulin-1/ErbB Signaling in Cardiovascular Physiology and Disease: Implications for Therapy of Heart Failure Circulation, August 21, 2007; 116(8): 954 - 960. [Abstract] [Full Text] [PDF] |
||||
![]() |
P. J. Perik, E. G.E. de Vries, J. A. Gietema, W. T.A. van der Graaf, T. D.J. Smilde, D. T. Sleijfer, and D. J. van Veldhuisen Serum HER2 levels are increased in patients with chronic heart failure Eur J Heart Fail, February 1, 2007; 9(2): 173 - 177. [Abstract] [Full Text] [PDF] |
||||
![]() |
X. Liu, X. Gu, Z. Li, X. Li, H. Li, J. Chang, P. Chen, J. Jin, B. Xi, D. Chen, et al. Neuregulin-1/erbB-Activation Improves Cardiac Function and Survival in Models of Ischemic, Dilated, and Viral Cardiomyopathy J. Am. Coll. Cardiol., October 3, 2006; 48(7): 1438 - 1447. [Abstract] [Full Text] [PDF] |
||||
![]() |
N. J. Freedman and G. S. Ginsburg Novel--and "Neu"--Therapeutic Possibilities for Heart Failure J. Am. Coll. Cardiol., October 3, 2006; 48(7): 1448 - 1450. [Full Text] [PDF] |
||||
![]() |
F.-F. Liu, J. R. Stone, A. J. T. Schuldt, K. Okoshi, M. P. Okoshi, M. Nakayama, K. K. L. Ho, W. J. Manning, M. A. Marchionni, B. H. Lorell, et al. Heterozygous knockout of neuregulin-1 gene in mice exacerbates doxorubicin-induced heart failure Am J Physiol Heart Circ Physiol, August 1, 2005; 289(2): H660 - H666. [Abstract] [Full Text] [PDF] |
||||
![]() |
M.-N. Giraud, M. Fluck, C. Zuppinger, and T. M. Suter Expressional reprogramming of survival pathways in rat cardiocytes by neuregulin-1{beta} J Appl Physiol, July 1, 2005; 99(1): 313 - 322. [Abstract] [Full Text] [PDF] |
||||
![]() |
Y. Kuramochi, G. M. Cote, X. Guo, N. K. Lebrasseur, L. Cui, R. Liao, and D. B. Sawyer Cardiac Endothelial Cells Regulate Reactive Oxygen Species-induced Cardiomyocyte Apoptosis through Neuregulin-1{beta}/erbB4 Signaling J. Biol. Chem., December 3, 2004; 279(49): 51141 - 51147. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. Okoshi, M. Nakayama, X. Yan, M. P. Okoshi, A. J.T. Schuldt, M. A. Marchionni, and B. H. Lorell Neuregulins Regulate Cardiac Parasympathetic Activity: Muscarinic Modulation of {beta}-Adrenergic Activity in Myocytes From Mice With Neuregulin-1 Gene Deletion Circulation, August 10, 2004; 110(6): 713 - 717. [Abstract] [Full Text] [PDF] |
||||
![]() |
Y. Kuramochi, C. C. Lim, X. Guo, W. S. Colucci, R. Liao, and D. B. Sawyer Myocyte contractile activity modulates norepinephrine cytotoxicity and survival effects of neuregulin-1{beta} Am J Physiol Cell Physiol, February 1, 2004; 286(2): C222 - C229. [Abstract] [Full Text] |
||||
![]() |
K. Lemmens, P. Fransen, S. U. Sys, D. L. Brutsaert, and G. W. De Keulenaer Neuregulin-1 Induces a Negative Inotropic Effect in Cardiac Muscle: Role of Nitric Oxide Synthase Circulation, January 27, 2004; 109(3): 324 - 326. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. Negro, B. K. Brar, and K.-F. Lee Essential Roles of Her2/erbB2 in Cardiac Development and Function Recent Prog. Horm. Res., January 1, 2004; 59(1): 1 - 12. [Abstract] [Full Text] |
||||
![]() |
D. L. Brutsaert Cardiac Endothelial-Myocardial Signaling: Its Role in Cardiac Growth, Contractile Performance, and Rhythmicity Physiol Rev, January 1, 2003; 83(1): 59 - 115. [Abstract] [Full Text] [PDF] |
||||
![]() |
T. Mihaljevic, S. Paul, L. H. Cohn, and A. Wechsler Pathophysiology of Aortic Valve Disease Card. Surg. Adult, January 1, 2003; 2(2003): 791 - 810. [Full Text] |
||||
![]() |
C. Ozcelik, B. Erdmann, B. Pilz, N. Wettschureck, S. Britsch, N. Hubner, K. R. Chien, C. Birchmeier, and A. N. Garratt Conditional mutation of the ErbB2 (HER2) receptor in cardiomyocytes leads to dilated cardiomyopathy PNAS, June 25, 2002; 99(13): 8880 - 8885. [Abstract] [Full Text] [PDF] |
||||
![]() |
I. Bergman, M. A. Barmada, J. A. Griffin, and D. J. Slamon Treatment of Meningeal Breast Cancer Xenografts in the Rat Using an Anti-P185/HER2 Antibody Clin. Cancer Res., July 1, 2001; 7(7): 2050 - 2056. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. M. Feldman, B. H. Lorell, and S. E. Reis Trastuzumab in the Treatment of Metastatic Breast Cancer : Anticancer Therapy Versus Cardiotoxicity Circulation, July 18, 2000; 102(3): 272 - 274. [Abstract] [Full Text] [PDF] |
||||
![]() |
B. Ding, R. L. Price, E. C. Goldsmith, T. K. Borg, X. Yan, P. S. Douglas, E. O. Weinberg, J. Bartunek, T. Thielen, V. V. Didenko, et al. Left Ventricular Hypertrophy in Ascending Aortic Stenosis Mice : Anoikis and the Progression to Early Failure Circulation, June 20, 2000; 101(24): 2854 - 2862. [Abstract] [Full Text] [PDF] |
||||
|
Circulation Home | Subscriptions | Archives | Feedback | Authors | Help | AHA Journals Home | Search Copyright © 1999 American Heart Association, Inc. All rights reserved. Unauthorized use prohibited. |