Muscle RING finger-1 attenuates IGF-I-dependent cardiomyocyte hypertrophy by inhibiting JNK signaling

被引:24
作者
Wadosky, Kristine M. [1 ]
Rodriguez, Jessica E. [1 ]
Hite, Rebecca L. [2 ]
Min, Jin-Na [3 ]
Walton, Bethany L. [1 ]
Willis, Monte S. [1 ,3 ]
机构
[1] Univ N Carolina, Dept Pathol & Lab Med, Chapel Hill, NC 27599 USA
[2] Amer Physiol Soc Frontiers, Physiol Res Teacher Fellowship Program, Bethesda, MD USA
[3] Univ N Carolina, McAllister Heart Inst, Chapel Hill, NC 27599 USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM | 2014年 / 306卷 / 07期
关键词
insulin-like growth factor I; c-Jun NH2-terminal kinase; cardiac hypertrophy; muscle RING finger-1; Akt; UBIQUITIN-PROTEASOME SYSTEM; CARDIAC-HYPERTROPHY; C-JUN; M-LINE; LIGASE; GROWTH; HEART; VIVO; ACTIVATION; MICE;
D O I
10.1152/ajpendo.00326.2013
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Recent studies implicate the muscle-specific ubiquitin ligase muscle RING finger-1 (MuRF1) in inhibiting pathological cardiomyocyte growth in vivo by inhibiting the transcription factor SRF. These studies led us to hypothesize that MuRF1 similarly inhibits insulin-like growth factor-I (IGF-I)-mediated physiological cardiomyocyte growth. We identified two lines of evidence to support this hypothesis: IGF-I stimulation of cardiacderived cells with MuRF1 knockdown 1) exhibited an exaggerated hypertrophy and, 2) conversely, increased MuRF1 expression-abolished IGF-I-dependent cardiomyocyte growth. Enhanced hypertrophy with MuRF1 knockdown was accompanied by increases in Akt-regulated gene expression. Unexpectedly, MuRF1 inhibition of this gene expression profile was not a result of differences in p-Akt. Instead, we found that MuRF1 inhibits total protein levels of Akt, GSK-3 beta (downstream of Akt), and mTOR while limiting c-Jun protein expression, a mechanism recently shown to govern Akt, GSK-3 beta, and mTOR activities and expression. These findings establish that MuRF1 inhibits IGF-I signaling by restricting c-Jun activity, a novel mechanism recently identified in the context of ischemia-reperfusion injury. Since IGF-I regulates exercise-mediated physiological cardiac growth, we challenged MuRF1(-/-)and MuRF1-Tg + mice and their wild-type sibling controls to 5 wk of voluntary wheel running. MuRF1(-/-)cardiac growth was increased significantly over wild-type control; conversely, the enhanced exercise-induced cardiac growth was lost in MuRF1-Tg + animals. These studies demonstrate that MuRF1(-/-)dependent attenuation of IGF-I signaling via c-Jun is applicable in vivo and establish that further understanding of this novel mechanism may be crucial in the development of therapies targeting IGF-I signaling.
引用
收藏
页码:E723 / E739
页数:17
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