The titin N2A-MARP signalosome constrains muscle longitudinal hypertrophy in response to stretch
Van der Pijl, R.; Gohlke, J.; Strom, J.; Peters, E.; Shen, S.; Conijn, S.; Hourani, Z.; Lange, S.; Chen, J.; Langlais, P.; Labeit, S.; Granzier, H. L.; Ottenheijm, C.
Show abstract
Titin-based mechanosensing is a key driver of trophic signaling in muscle, yet the downstream pathways linking titin sensing to muscle remodeling remain poorly understood. To investigate these signaling mechanisms, we utilized unilateral diaphragm denervation (UDD), an in vivo model that induces titin-stiffness-dependent hypertrophy via mechanical stretch. Using UDD in rats and mice, we characterized the longitudinal hypertrophic response and distinguished stretch-induced signaling from denervation effects by performing global transcriptomic and proteomic analyses following UDD and bilateral diaphragm denervation (BDD) in rats. Our findings identified upregulation of titin-associated muscle ankyrin repeat proteins (MARPs). Subsequent phosphorylation enrichment mass spectrometry in mouse diaphragm highlighted the involvement of the N2A-element. UDD in MARP knockout (KO) mice resulted in enhanced longitudinal hypertrophy, with Western blot analysis revealing activation of the mTOR pathway. Furthermore, pharmacological inhibition of mTORC1 with rapamycin suppressed longitudinal hypertrophy, demonstrating that mTOR signaling regulates titin-mediated hypertrophic growth in a MARP-dependent manner. These findings establish MARPs as key modulators of titin-based mechanotransduction and highlight mTORC1 as a central regulator of longitudinal muscle hypertrophy.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The microRNA, miR-133b, functions to slow Duchenne muscular dystrophy pathogenesis 94%
- Myonuclear alterations associated with exercise are independent of age in humans 94%
- Mechanical loading reveals an intrinsic cardiomyocyte stiffness contribution to diastolic dysfunction in murine cardiometabolic disease 92%
Similar papers in this journal
- Small-molecule targeting MuRF1 protects against denervation-induced diaphragmatic dysfunction: Underlying molecular mechanisms 95%
- Numb is required for optimal contraction of skeletal muscle 95%
- Receptor-interacting protein kinase-3 mediates both myopathy and cardiomyopathy in preclinical animal models of Duchenne muscular dystrophy 94%
Similar papers in this journal
- Mitochondrial dysfunction in skeletal muscle of fukutin deficient mice is resistant to exercise- and AICAR-induced rescue 95%
- Cardiac and respiratory muscle responses to dietary N-acetylcysteine in rats consuming a high-saturated fat, high-sucrose diet 94%
- Fatiguing Exercise Reduces Cellular Passive Young's Modulus in Human Vastus Lateralis Muscle 90%
Similar papers in this journal
- Knockdown of the E3 Ubiquitin ligase UBR5 and its role in skeletal muscle anabolism 93%
- Response of UBR-box E3 ubiquitin ligases and protein quality control pathways to perturbations in protein synthesis and skeletal muscle size 93%
- Spatially distinct ECM-producing fibroblasts and myonuclei orchestrate early adaptation to mechanical loading in the human muscle-tendon unit 93%
Similar papers in this journal
- Tenotomy-induced muscle atrophy is sex-specific and independent of NFκB 95%
- LSD1 acts as an epigenetic barrier against glucocorticoid-induced atrophy and exercise-induced hypertrophy in skeletal muscle 94%
- A Remarkable Adaptive Paradigm Of Heart Performance And Protection Emerges In Response To The Constitutive Challenge Of Marked Cardiac-Specific Overexpression Of Adenylyl Cyclase Type 8 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.