Titin, a Central Mediator for Hypertrophic Signaling, Exercise-Induced Mechanosignaling and Skeletal Muscle Remodeling
نویسندگان
چکیده
Titin is a giant scaffold protein with multiple functions in striated muscle physiology. Due to the elastic I-band domains and the filament-like integration in the half-sarcomere titin is an important factor for sarcomere assembly and serves as an adaptable molecular spring that determines myofilament distensibility. Protein-interactions e.g., with muscle ankyrin repeat proteins or muscle LIM-protein link titin to hypertrophic signaling and via p62 and Muscle Ring Finger proteins to mechanisms that control protein quality control. This review summarizes our current knowledge on titin as a central node for exercise-induced mechanosignaling and remodeling and further highlights the pathophysiological implications.
منابع مشابه
Effects of fatiguing jumping exercise on mRNA expression of titin-complex proteins and calpains.
Eccentric exercise induced by electrostimulation increases mRNA expression of titin-complex proteins in rodent skeletal muscle. In this study, mRNA expression of titin, muscle LIM protein (MLP), cardiac ankyrin repeat protein (CARP), ankyrin repeat domain protein 2 (Ankrd2), diabetes-related ankyrin repeat protein (DARP), and calcium-activated proteinases, calpains, were investigated in human s...
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متن کاملHIGHLIGHTED TOPIC Regulation of Protein Metabolism in Exercise and Recovery Effects of fatiguing jumping exercise on mRNA expression of titin-complex proteins and calpains
Lehti M, Kivelä R, Komi P, Komulainen J, Kainulainen H, Kyröläinen H. Effects of fatiguing jumping exercise on mRNA expression of titin-complex proteins and calpains. J Appl Physiol 106: 1419 –1424, 2009. First published January 15, 2009; doi:10.1152/japplphysiol.90660.2008.—Eccentric exercise induced by electrostimulation increases mRNA expression of titin-complex proteins in rodent skeletal m...
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It is often assumed that mechanical factors are important for effects of exercise on muscle, but during voluntary training and most experimental conditions the effects could solely be attributed to differences in electrical activity, and direct evidence for a mechanosensory pathway has been scarce. We here show that, in rat muscles stimulated in vivo under deep anesthesia with identical electri...
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ورودعنوان ژورنال:
- Frontiers in physiology
دوره 7 شماره
صفحات -
تاریخ انتشار 2016