Michel J Max, Godwin Joshua S, Kerr Nathan R, Childs Thomas E, Booth Frank W, Mobley C Brooks, Hughes David C, Roberts Michael D
School of Kinesiology, Auburn University, Auburn, AL, USA.
Department of Biomedical Sciences, University of Missouri, Columbia, MO, USA.
Mol Biol Rep. 2025 Mar 18;52(1):322. doi: 10.1007/s11033-025-10415-4.
While canonical anabolic and proteolytic pathways have been well examined in the context of skeletal muscle proteostasis, the roles of endoplasmic reticulum stress (ERS) and the induced unfolded protein response (UPR) are underappreciated. Thus, we aimed to determine whether aging and/or disuse atrophy in rats altered skeletal muscle ERS/UPR markers.
Soleus (SOL) and plantaris (PLT) muscles of 3-month-old (mo), 6 mo, 12 mo, 18 mo, and 24 mo rats (9-10 per group, 48 in total) were analyzed for UPR proteins with further analysis performed on the protein CHOP. The gastrocnemius muscles of 4 mo rats that had undergone hindlimb immobilization (HLI, n = 12) or sham casting (CTL, n = 12) were analyzed for similar targets as well as more extensive CHOP-related targets. CHOP protein was greater in the PLT and SOL of 18 and 24 mo rats versus other age groups (P < 0.05). Moreover, negative correlations existed between CHOP expression and normalized PLT (R=-0.702, P < 0.001) and SOL (R=-0.658, P < 0.001) muscle weights in all rats analyzed at different ages. CHOP protein expression was also greater in the gastrocnemius of HLI versus CTL rats (P < 0.001), and a negative correlation existed between CHOP protein expression and normalized muscle weights in these rats (R=-0.814, P < 0.001). Nuclear CHOP protein levels (P < 0.010) and genes transcriptionally regulated by CHOP were also greater in HLI versus CTL rats (P < 0.001) implicating transcriptional activity of CHOP is elevated during disuse atrophy.
CHOP is operative during aging- and disuse-induced skeletal muscle atrophy in rodents, and more research is needed to determine if CHOP is a key mechanistic driver of these processes.
虽然在骨骼肌蛋白质稳态的背景下,经典的合成代谢和蛋白水解途径已得到充分研究,但内质网应激(ERS)和诱导的未折叠蛋白反应(UPR)的作用却未得到充分重视。因此,我们旨在确定大鼠的衰老和/或废用性萎缩是否会改变骨骼肌ERS/UPR标志物。
分析3月龄、6月龄、12月龄、18月龄和24月龄大鼠(每组9 - 10只,共48只)的比目鱼肌(SOL)和跖肌(PLT)中的UPR蛋白,并对CHOP蛋白进行进一步分析。对经历后肢固定(HLI,n = 12)或假石膏固定(CTL,n = 12)的4月龄大鼠的腓肠肌进行类似靶点以及更广泛的CHOP相关靶点分析。与其他年龄组相比,18月龄和24月龄大鼠的PLT和SOL中CHOP蛋白含量更高(P < 0.05)。此外,在分析的不同年龄的所有大鼠中,CHOP表达与标准化的PLT(R = -0.702,P < 0.001)和SOL(R = -0.658,P < 0.001)肌肉重量之间存在负相关。HLI大鼠腓肠肌中的CHOP蛋白表达也高于CTL大鼠(P < 0.001),并且在这些大鼠中CHOP蛋白表达与标准化肌肉重量之间存在负相关(R = -0.814,P < 0.001)。HLI大鼠的核CHOP蛋白水平(P < 0.010)以及受CHOP转录调控的基因也高于CTL大鼠(P < 0.001),这表明在废用性萎缩期间CHOP的转录活性升高。
CHOP在啮齿动物衰老和废用诱导的骨骼肌萎缩过程中起作用,需要更多研究来确定CHOP是否是这些过程的关键机制驱动因素。