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The mechanism of the force response to stretch in human skinned muscle fibres with different myosin isoforms.
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- Journal of Physiology, 2004, v. 554, n. 2, p. 335, doi. 10.1113/jphysiol.2003.051748
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- Article
Energy storage during stretch of active single fibres from frog skeletal muscle.
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- Journal of Physiology, 2003, v. 548, n. 2, p. 461, doi. 10.1111/j.1469-7793.2003.00461.x
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- Article
Changes in conformation of myosin heads during the development of isometric contraction and rapid shortening in single frog muscle fibres.
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- Journal of Physiology, 1999, v. 514, n. 2, p. 305, doi. 10.1111/j.1469-7793.1999.305ae.x
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- Article
Structure-Function Relation of the Myosin Motor in Striated Muscle.
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- Annals of the New York Academy of Sciences, 2005, v. 1047, n. 1, p. 232, doi. 10.1196/annals.1341.021
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- Article
Effects of myosin heavy chain (MHC) plasticity induced by HMGCoA-reductase inhibition on skeletal muscle functions.
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- FASEB Journal, 2011, v. 25, n. 11, p. 4037, doi. 10.1096/fj.11-184218
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- Article
Nebulin plays a direct role in promoting strong actin-myosin interactions.
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- FASEB Journal, 2009, v. 23, n. 12, p. 4117, doi. 10.1096/fj.09-137729
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- Article
The myosin motor in muscle generates a smaller and slower working stroke at higher load.
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- Nature, 2004, v. 428, n. 6982, p. 578, doi. 10.1038/nature02380
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- Article
Mechanism of force generation by myosin heads in skeletal muscle.
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- Nature, 2002, v. 415, n. 6872, p. 659, doi. 10.1038/415659a
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- Article
The force and stiffness of myosin motors in the isometric twitch of a cardiac trabecula and the effect of the extracellular calcium concentration.
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- Journal of Physiology, 2018, v. 596, n. 13, p. 2581, doi. 10.1113/JP275579
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- Article
Force and number of myosin motors during muscle shortening and the coupling with the release of the ATP hydrolysis products.
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- Journal of Physiology, 2015, v. 593, n. 15, p. 3313, doi. 10.1113/JP270265
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- Article
The contributions of filaments and cross-bridges to sarcomere compliance in skeletal muscle.
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- Journal of Physiology, 2014, v. 592, n. 17, p. 3881, doi. 10.1113/jphysiol.2014.276196
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- Article
Sarcomere-length dependence of myosin filament structure in skeletal muscle fibres of the frog.
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- Journal of Physiology, 2014, v. 592, n. 5, p. 1119, doi. 10.1113/jphysiol.2013.267849
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- Article
The working stroke of the myosin II motor in muscle is not tightly coupled to release of orthophosphate from its active site.
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- Journal of Physiology, 2013, v. 591, n. 20, p. 5187, doi. 10.1113/jphysiol.2013.257410
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- Article
The mechanism of the resistance to stretch of isometrically contracting single muscle fibres.
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- Journal of Physiology, 2010, v. 588, n. 3, p. 495, doi. 10.1113/jphysiol.2009.178137
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- Article
Force and kinetics of fast and slow muscle myosin determined with a synthetic sarcomere–like nanomachine.
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- Communications Biology, 2024, v. 7, n. 1, p. 1, doi. 10.1038/s42003-024-06033-8
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- Article
Myopalladin promotes muscle growth through modulation of the serum response factor pathway.
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- Journal of Cachexia, Sarcopenia & Muscle, 2020, v. 11, n. 1, p. 169, doi. 10.1002/jcsm.12486
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Matching Mechanics and Energetics of Muscle Contraction Suggests Unconventional Chemomechanical Coupling during the Actin–Myosin Interaction.
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- International Journal of Molecular Sciences, 2023, v. 24, n. 15, p. 12324, doi. 10.3390/ijms241512324
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- Article
Elastic bending and active tilting of myosin heads during muscle contraction.
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- Nature, 1998, v. 396, n. 6709, p. 383, doi. 10.1038/24647
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- Article
The force of the myosin motor sets cooperativity in thin filament activation of skeletal muscles.
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- Communications Biology, 2022, v. 5, n. 1, p. 1, doi. 10.1038/s42003-022-04184-0
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- Article
Orthophosphate increases the efficiency of slow muscle-myosin isoform in the presence of omecamtiv mecarbil.
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- Nature Communications, 2020, v. 11, n. 1, p. 1, doi. 10.1038/s41467-020-17143-2
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- Article
Thick Filament Mechano-Sensing in Skeletal and Cardiac Muscles: A Common Mechanism Able to Adapt the Energetic Cost of the Contraction to the Task.
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- Frontiers in Physiology, 2018, p. N.PAG, doi. 10.3389/fphys.2018.00736
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- Article