Adams Christopher M, Ebert Scott M, Dyle Michael C
aDepartment of Internal Medicine bDepartment of Molecular Physiology and Biophysics cFraternal Order of Eagles Diabetes Research Center, Roy J. and Lucille A. Carver College of Medicine, The University of Iowa dIowa City Veterans Affairs Medical Center, Iowa City eEmmyon, Inc., Coralville, Iowa, USA.
Curr Opin Clin Nutr Metab Care. 2017 May;20(3):164-168. doi: 10.1097/MCO.0000000000000362.
Here, we discuss recent work focused on the role of activating transcription factor 4 (ATF4) in skeletal muscle atrophy.
Muscle atrophy involves and requires widespread changes in skeletal muscle gene expression; however, the transcriptional regulatory proteins responsible for those changes are not yet well defined. Recent work indicates that some forms of muscle atrophy require ATF4, a stress-inducible bZIP transcription factor subunit that helps to mediate a broad range of stress responses in mammalian cells. ATF4 expression in skeletal muscle fibers is sufficient to induce muscle fiber atrophy and required for muscle atrophy during several stress conditions, including aging, fasting, and limb immobilization. By helping to activate specific genes in muscle fibers, ATF4 contributes to the expression of numerous mRNAs, including at least two mRNAs (Gadd45a and p21) that encode mediators of muscle fiber atrophy. Gadd45a promotes muscle fiber atrophy by activating the protein kinase MEKK4. p21 promotes atrophy by reducing expression of spermine oxidase, a metabolic enzyme that helps to maintain muscle fiber size under nonstressed conditions.
In skeletal muscle fibers, ATF4 is critical component of a complex and incompletely understood molecular signaling network that causes muscle atrophy during aging, fasting, and immobilization.
在此,我们讨论近期聚焦于激活转录因子4(ATF4)在骨骼肌萎缩中作用的研究工作。
肌肉萎缩涉及并需要骨骼肌基因表达的广泛变化;然而,负责这些变化的转录调节蛋白尚未明确界定。近期研究表明,某些形式的肌肉萎缩需要ATF4,它是一种应激诱导的bZIP转录因子亚基,有助于介导哺乳动物细胞中的多种应激反应。骨骼肌纤维中ATF4的表达足以诱导肌纤维萎缩,并且在包括衰老、禁食和肢体固定在内的多种应激条件下,对肌肉萎缩是必需的。通过帮助激活肌纤维中的特定基因,ATF4促进众多mRNA的表达,包括至少两种编码肌纤维萎缩介质的mRNA(Gadd45a和p21)。Gadd45a通过激活蛋白激酶MEKK4促进肌纤维萎缩。p21通过降低精胺氧化酶的表达促进萎缩,精胺氧化酶是一种代谢酶,在非应激条件下有助于维持肌纤维大小。
在骨骼肌纤维中,ATF4是一个复杂且尚未完全理解的分子信号网络的关键组成部分,该网络在衰老、禁食和固定过程中导致肌肉萎缩。