Aug 2026· Biochemical and Biophysical Research Communications - BBRC· Vol 834, pp.
154470
· 0 citations· 34 references
Medicine
Abstract
Although UFMylation is implicated in skeletal muscle development, the role of its E3 ligase, ubiquitin-fold modifier 1 ligase 1 (UFL1), in bovine muscle and myofiber type determination is unclear. We profiled UFL1 expression in four muscles (biceps femoris (BF), longissimus dorsi (LD), trapezius (TR), psoas major (PM)) from 18-month-old Simmental and Angus bulls via histology, RT-qPCR, western blotting, and immunofluorescence. UFL1 mRNA and protein were significantly higher in fast-twitch muscles (LD, BF) than in slow-twitch PM. UFL1 localized to sarcolemma and sarcoplasmic reticulum, co-localized with MYHC-Fast in LD, and correlated positively with MYHC-Fast. Oxidative PM showed higher SDH/MDH activities, lower LDH activity, and greater lipid deposition than glycolytic LD. UFL1 correlated negatively with PLIN2. LD exhibited lower ACC1, FASN, PPARα, and CPT1A levels than PM. Collectively, UFL1 is specifically expressed in fast-twitch fibers, associates with lipid metabolic reprogramming, suggesting a role in muscle development and meat quality. This study identifies UFL1 as a novel candidate regulator of myofiber type determination in beef cattle.
It is proposed that the age-associated reduction in LANCL1-AS1 contributes to impaired mitochondrial function and reduced myogenic capacity in aging skeletal muscle.
Jen-Hao Yang, Elizabeth K. Izydore, K. Mazan-Mamczarz et al.· bioRxiv· 0 citations
These findings identify MG29 as a critical regulator of SOCE and lipid signaling in skeletal muscle and suggest that its age-related decline contributes to sarcopenia by disrupting triad membrane organization and excitation–contraction coupling.
Kamal Awad, Jian Huang, Marian N. Aziz et al.· Biomolecules· 0 citations
Findings indicate that TWEAK suppression may represent a promising strategy for preserving muscle mass and metabolic homeostasis during aging, though its capacity to fully restore functional capacity requires further investigation.
Zhuoya Maimaitiwusiman, Saiyare Xuekelati, An-Ni Wang et al.· Scientific Reports· 0 citations
It is suggested that UA promotes mitochondrial functional adaptation during myogenic differentiation, with accompanying changes in myogenic phenotype, without clear evidence of altered steady-state mitophagy/autophagy markers or mitochondrial morphology.
R. Vargas-Foitzick, Diego Irribarra-Tapia, M. Valero-Breton et al.· Frontiers in Cell and Develo...· 1 citation
Findings suggest that UFC1 contributes to ACSL3 protein abundance, probably through UFMylation-associated suppression of proteasomal degradation, thereby supporting lipid homeostasis and proliferation in skeletal muscle myoblasts.
Mali Guo, Junjie Xu, Haiyan Xie et al.· Biochemical and Biophysical...· 0 citations
A spatial transcriptomic atlas of skeletal muscle from young and aged mice is presented, resolving transcriptional reprogramming across fiber types and tissue compartments and revealing alterations in sarcomeric organization, excitation-contraction coupling, oxidative stress responses, and fiber type-specific metabolic rewiring.
Veronica Ruggieri, Andrea Bracaglia, Lorenza Esposito et al.· iScience· 0 citations
Related blog posts
MIT News · Artificial Intelligence· news.mit.eduAug 27, 2026
A new machine-learning framework aims to improve the success rate of computational protein design while moving away from results that reproduce sequences found in nature.