The Transcription Factor ATF4 Promotes Skeletal Myofiber Atrophy during Fasting

被引:112
作者
Ebert, Scott M. [1 ]
Monteys, Alex Mas [1 ]
Fox, Daniel K. [1 ]
Bongers, Kale S. [1 ]
Shields, Bridget E. [1 ]
Malmberg, Sharon E. [1 ]
Davidson, Beverly L. [1 ]
Suneja, Manish [1 ]
Adams, Christopher M. [1 ,2 ]
机构
[1] Univ Iowa, Roy J & Lucille A Carver Coll Med, Dept Internal Med, Iowa City, IA 52242 USA
[2] Dept Vet Affairs Med Ctr, Dept Internal Med, Iowa City, IA 52246 USA
关键词
MUSCLE GENE-EXPRESSION; ANKYRIN REPEAT PROTEIN; AMINO-ACID; IN-VIVO; TRANSLATIONAL REGULATION; KAPPA-B; PATHWAY; STRESS; ALPHA; TITIN;
D O I
10.1210/me.2009-0345
中图分类号
R5 [内科学];
学科分类号
100201 [内科学];
摘要
Prolonged fasting alters skeletal muscle gene expression in a manner that promotes myofiber atrophy, but the underlying mechanisms are not fully understood. Here, we examined the potential role of activating transcription factor 4 (ATF4), a transcription factor with an evolutionarily ancient role in the cellular response to starvation. In mouse skeletal muscle, fasting increases the level of ATF4 mRNA. To determine whether increased ATF4 expression was required for myofiber atrophy, we reduced ATF4 expression with an inhibitory RNA targeting ATF4 and found that it reduced myofiber atrophy during fasting. Likewise, reducing the fasting level of ATF4 mRNA with a phosphorylation-resistant form of eukaryotic initiation factor 2 alpha decreased myofiber atrophy. To determine whether ATF4 was sufficient to reduce myofiber size, we overexpressed ATF4 and found that it reduced myofiber size in the absence of fasting. In contrast, a transcriptionally inactive ATF4 construct did not reduce myofiber size, suggesting a requirement for ATF4-mediated transcriptional regulation. To begin to determine the mechanism of ATF4-mediated myofiber atrophy, we compared the effects of fasting and ATF4 overexpression on global skeletal muscle mRNA expression. Interestingly, expression of ATF4 increased a small subset of five fasting-responsive mRNAs, including four of the 15 mRNAs most highly induced by fasting. These five mRNAs encode proteins previously implicated in growth suppression (p21(Cip1/Waf1), GADD45 alpha, and PW1/Peg3) or titin-based stress signaling [muscle LIM protein (MLP) and cardiac ankyrin repeat protein (CARP)]. Taken together, these data identify ATF4 as a novel mediator of skeletal myofiber atrophy during starvation. (Molecular Endocrinology 24: 790-799, 2010)
引用
收藏
页码:790 / 799
页数:10
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