Pérez-Schindler Joaquín, Esparza Mary C, McKendry James, Breen Leigh, Philp Andrew, Schenk Simon
MRC-ARUK Centre for Musculoskeletal Ageing Research, Birmingham, United Kingdom.
School of Sport, Exercise and Rehabilitation Sciences, University of Birmingham, Birmingham, United Kingdom.
Am J Physiol Cell Physiol. 2017 Sep 1;313(3):C257-C261. doi: 10.1152/ajpcell.00100.2017. Epub 2017 Jun 28.
Although the signal pathways mediating muscle protein synthesis and degradation are well characterized, the transcriptional processes modulating skeletal muscle mass and adaptive growth are poorly understood. Recently, studies in mouse models of muscle wasting or acutely exercised human muscle have suggested a potential role for the transcription factor signal transducer and activator of transcription 3 (STAT3), in adaptive growth. Hence, in the present study we sought to define the contribution of STAT3 to skeletal muscle adaptive growth. In contrast to previous work, two different resistance exercise protocols did not change STAT3 phosphorylation in human skeletal muscle. To directly address the role of STAT3 in load-induced (i.e., adaptive) growth, we studied the anabolic effects of 14 days of synergist ablation (SA) in skeletal muscle-specific STAT3 knockout (mKO) mice and their floxed, wild-type (WT) littermates. Plantaris muscle weight and fiber area in the nonoperated leg (control; CON) was comparable between genotypes. As expected, SA significantly increased plantaris weight, muscle fiber cross-sectional area, and anabolic signaling in WT mice, although interestingly, this induction was not impaired in STAT3 mKO mice. Collectively, these data demonstrate that STAT3 is not required for overload-mediated hypertrophy in mouse skeletal muscle.
尽管介导肌肉蛋白质合成和降解的信号通路已得到充分表征,但调节骨骼肌质量和适应性生长的转录过程却知之甚少。最近,在肌肉萎缩的小鼠模型或急性运动的人类肌肉中的研究表明,转录因子信号转导和转录激活因子3(STAT3)在适应性生长中可能发挥作用。因此,在本研究中,我们试图确定STAT3对骨骼肌适应性生长的贡献。与先前的研究不同,两种不同的抗阻运动方案并未改变人类骨骼肌中STAT3的磷酸化水平。为了直接研究STAT3在负荷诱导(即适应性)生长中的作用,我们研究了在骨骼肌特异性STAT3基因敲除(mKO)小鼠及其携带floxed基因的野生型(WT)同窝小鼠中进行14天协同肌切除(SA)的合成代谢作用。未手术腿(对照;CON)的比目鱼肌重量和纤维面积在不同基因型之间具有可比性。正如预期的那样,SA显著增加了WT小鼠的比目鱼肌重量、肌纤维横截面积和合成代谢信号,尽管有趣的是,这种诱导在STAT3 mKO小鼠中并未受损。总体而言,这些数据表明,在小鼠骨骼肌中,STAT3不是超负荷介导的肥大所必需的。