Research Faculty of Agriculture, Graduate School of Agriculture, Hokkaido University, 9 Kita, 9 Nishi, Sapporo, Hokkaido, 060-8589, Japan.
Space Environment and Energy Laboratories, Nippon Telegraph and Telephone Corporation, Musashino, Tokyo, 180-8585, Japan.
In Vitro Cell Dev Biol Anim. 2024 Aug;60(7):748-759. doi: 10.1007/s11626-024-00916-0. Epub 2024 May 17.
Skeletal muscle tissue increases or decreases its volume by synthesizing or degrading myofibrillar proteins. The ubiquitin-proteasome system plays a pivotal role during muscle atrophy, where muscle ring finger proteins (Murf) function as E3 ubiquitin ligases responsible for identifying and targeting substrates for degradation. Our previous study demonstrated that overexpression of Ozz, an E3 specific to embryonic myosin heavy chain (Myh3), precisely reduced the Myh3 replacement rate in the thick filaments of myotubes (E. Ichimura et al., Physiol Rep. 9:e15003, 2021). These findings strongly suggest that E3 plays a critical role in regulating myosin replacement. Here, we hypothesized that the Murf isoforms, which recognize Myhs as substrates, reduced the myosin replacement rates through the enhanced Myh degradation by Murfs. First, fluorescence recovery after a photobleaching experiment was conducted to assess whether Murf isoforms affected the GFP-Myh3 replacement. In contrast to Murf2 or Murf3 overexpression, Murf1 overexpression selectively facilitated the GFP-Myh3 myosin replacement. Next, to examine the effects of Murf1 overexpression on the replacement of myosin isoforms, Cherry-Murf1 was coexpressed with GFP-Myh1, GFP-Myh4, or GFP-Myh7 in myotubes. Intriguingly, Murf1 overexpression enhanced the myosin replacement of GFP-Myh4 but did not affect those of GFP-Myh1 or GFP-Myh7. Surprisingly, overexpression of Murf1 did not enhance the ubiquitination of proteins. These results indicate that Murf1 selectively regulated myosin replacement in a Myh isoform-dependent fashion, independent of enhanced ubiquitination. This suggests that Murf1 may have a role beyond functioning as a ubiquitin ligase E3 in thick filament myosin replacement.
骨骼肌组织通过合成或降解肌原纤维蛋白来增加或减少其体积。泛素-蛋白酶体系统在肌肉萎缩中起着关键作用,其中肌肉环指蛋白(Murf)作为 E3 泛素连接酶,负责识别和靶向降解底物。我们之前的研究表明,胚胎肌球蛋白重链(Myh3)特异性 E3-Ozz 的过表达精确降低了肌管中厚丝的 Myh3 替代率(E. Ichimura 等人,Physiol Rep. 9:e15003,2021)。这些发现强烈表明 E3 在调节肌球蛋白替代中起着关键作用。在这里,我们假设 Murf 同工型作为底物识别 Myhs,通过增强 Murfs 对 Myh 的降解来降低肌球蛋白的替代率。首先,进行光漂白后荧光恢复实验以评估 Murf 同工型是否影响 GFP-Myh3 的替代。与 Murf2 或 Murf3 的过表达相反,Murf1 的过表达选择性地促进 GFP-Myh3 肌球蛋白的替代。接下来,为了研究 Murf1 过表达对肌球蛋白同工型替代的影响,在肌管中与 GFP-Myh1、GFP-Myh4 或 GFP-Myh7 共表达 Cherry-Murf1。有趣的是,Murf1 的过表达增强了 GFP-Myh4 的肌球蛋白替代,但不影响 GFP-Myh1 或 GFP-Myh7。令人惊讶的是,Murf1 的过表达并没有增强蛋白质的泛素化。这些结果表明,Murf1 以依赖于 Myh 同工型的方式选择性地调节肌球蛋白的替代,而不依赖于增强的泛素化。这表明 Murf1 在厚丝肌球蛋白替代中可能具有超越作为 E3 泛素连接酶的作用。