» Articles » PMID: 11786544

Targeted Inhibition of Calcineurin in Pressure-overload Cardiac Hypertrophy. Preservation of Systolic Function

Overview
Journal J Biol Chem
Specialty Biochemistry
Date 2002 Jan 12
PMID 11786544
Citations 45
Authors
Affiliations
Soon will be listed here.
Abstract

Calcineurin is a Ca(2+)/calmodulin-activated protein phosphatase that transduces hypertrophic stimuli to regulate transcriptional control of myocyte transformation. It is not known whether overexpression of MCIP1, a recently described endogenous inhibitor of calcineurin, impacts the hypertrophic response to pathophysiologically relevant pressure overload. Further, the functional consequences of calcineurin inhibition by MCIP1 under conditions of hemodynamic stress are unknown. Transgenic mice expressing a human cDNA encoding hMCIP1 in the myocardium were subjected to thoracic aortic banding. Transgenic mice and wild type littermates tolerated pressure overload equally well. Wild type mice developed left ventricular hypertrophy, but the hypertrophic response in transgenics was significantly blunted. An isoform of MCIP1 transcript was up-regulated by pressure stress, whereas MCIP2 transcript was not. Expression patterns of fetal genes were differentially regulated in banded MCIP1 hearts compared with wild type. Echocardiography performed at 3 weeks and 3 months revealed preservation of both left ventricular size and systolic function in banded MCIP1 mice despite the attenuated hypertrophic response. These data demonstrate attenuation of hypertrophic transformation when calcineurin is inhibited by MCIP1. Further, these data suggest that activation of hypertrophic marker genes may not be directly dependent on calcineurin activity. Finally, they demonstrate that ventricular performance is preserved despite attenuation of compensatory hypertrophy.

Citing Articles

Hypertensive Heart Disease: A Narrative Review Series-Part 2: Macrostructural and Functional Abnormalities.

Nemtsova V, Burkard T, Vischer A J Clin Med. 2023; 12(17).

PMID: 37685790 PMC: 10488346. DOI: 10.3390/jcm12175723.


Calcineurin in the heart: New horizons for an old friend.

Chaklader M, Rothermel B Cell Signal. 2021; 87:110134.

PMID: 34454008 PMC: 8908812. DOI: 10.1016/j.cellsig.2021.110134.


Cooperative Binding of ETS2 and NFAT Links Erk1/2 and Calcineurin Signaling in the Pathogenesis of Cardiac Hypertrophy.

Luo Y, Jiang N, May H, Luo X, Ferdous A, Schiattarella G Circulation. 2021; 144(1):34-51.

PMID: 33821668 PMC: 8247545. DOI: 10.1161/CIRCULATIONAHA.120.052384.


Epigenetic Reader BRD4 (Bromodomain-Containing Protein 4) Governs Nucleus-Encoded Mitochondrial Transcriptome to Regulate Cardiac Function.

Kim S, Zhang X, Schiattarella G, Altamirano F, Ramos T, French K Circulation. 2020; 142(24):2356-2370.

PMID: 33113340 PMC: 7736324. DOI: 10.1161/CIRCULATIONAHA.120.047239.


NULP1 Alleviates Cardiac Hypertrophy by Suppressing NFAT3 Transcriptional Activity.

Zhang X, Lei F, Wang X, Deng K, Ji Y, Zhang Y J Am Heart Assoc. 2020; 9(16):e016419.

PMID: 32805187 PMC: 7660797. DOI: 10.1161/JAHA.120.016419.