Baehr Leslie M, de Sousa Luis Gustavo Oliveira, Goodman Craig A, Sharples Adam P, Waddell David S, Bodine Sue C, Hughes David C
Aging and Metabolism Research Program, Oklahoma Medical Research Foundation, Oklahoma City, OK, USA.
Centre for Muscle Research (CMR), Department of Anatomy and Physiology, The University of Melbourne, Victoria, AUS.
bioRxiv. 2025 Jul 27:2025.07.23.666188. doi: 10.1101/2025.07.23.666188.
The N-degron pathway contributes to proteolysis by targeting N-terminal residues of destabilized proteins via E3 ligases that contain a UBR-box domain. Emerging evidence suggests the UBR-box family of E3 ubiquitin ligases (UBR1-7) are involved in the positive regulation of skeletal muscle mass. The purpose of this study was to explore the role of UBR-box E3 ubiquitin ligases under enhanced protein synthesis and skeletal muscle growth conditions. Cohorts of adult male mice were electroporated with constitutively active Akt (Akt-CA) or UBR5 RNAi constructs with a rapamycin diet intervention for 7 and 30 days, respectively. In addition, the UBR-box family was studied during the regrowth phase post nerve crush induced inactivity. Skeletal muscle growth with Akt-CA or regrowth following inactivity increased protein abundance of UBR1, UBR2, UBR4, UBR5 and UBR7. This occurred with corresponding increases in Akt-mTORC1/S6K and MAPK/p90RSK signaling and protein synthesis. The increases in UBR-box E3s, ubiquitination, and proteasomal activity occurred independently of mTORC1 activity and were associated with increases in markers related to autophagy, ER-stress, and protein quality control pathways. Finally, while UBR5 knockdown (KD) evokes atrophy, it occurs together with hyperactivation of mTORC1 and protein synthesis. In UBR5 KD muscles, we identified an increase in protein abundance for UBR2, UBR4 and UBR7, which may highlight a compensatory response to maintain proteome integrity. Future studies will seek to understand the role of UBR-box E3s towards protein quality control in skeletal muscle plasticity.
N-端规则途径通过含有UBR-box结构域的E3连接酶靶向不稳定蛋白的N端残基,从而促进蛋白质水解。新出现的证据表明,E3泛素连接酶的UBR-box家族(UBR1 - 7)参与骨骼肌质量的正向调节。本研究的目的是探讨在蛋白质合成增强和骨骼肌生长条件下UBR-box E3泛素连接酶的作用。分别用组成型活性Akt(Akt-CA)或UBR5 RNAi构建体对成年雄性小鼠进行电穿孔,并给予雷帕霉素饮食干预7天和30天。此外,在神经挤压诱导的失活后的再生阶段研究了UBR-box家族。Akt-CA介导的骨骼肌生长或失活后的再生增加了UBR1、UBR2、UBR4、UBR5和UBR7的蛋白质丰度。这伴随着Akt-mTORC1/S6K和MAPK/p90RSK信号传导及蛋白质合成的相应增加。UBR-box E3s、泛素化和蛋白酶体活性的增加独立于mTORC1活性发生,并与自噬、内质网应激和蛋白质质量控制途径相关标志物的增加有关。最后,虽然UBR5基因敲低(KD)会引发萎缩,但它与mTORC1的过度激活和蛋白质合成同时发生。在UBR5 KD肌肉中,我们发现UBR2、UBR4和UBR7的蛋白质丰度增加,这可能突出了维持蛋白质组完整性的代偿反应。未来的研究将试图了解UBR-box E3s在骨骼肌可塑性中对蛋白质质量控制的作用。