Convergent evolutionary pathways toward energy saving in muscle?
Author:
Affiliation:
1. Dipartimento di Medicina Sperimentale e Clinica—PhysioLab, University of Florence, Florence, Italy
Abstract
Funder
Ministero dell’Università e della Ricerca
Publisher
Rockefeller University Press
Subject
Physiology
Link
http://rupress.org/jgp/article-pdf/doi/10.1085/jgp.202012818/1409792/jgp_202012818.pdf
Reference14 articles.
1. Lessons from a tarantula: new insights into myosin interacting-heads motif evolution and its implications on disease;Alamo;Biophys. Rev.,2018
2. Conserved Intramolecular Interactions Maintain Myosin Interacting-Heads Motifs Explaining Tarantula Muscle Super-Relaxed State Structural Basis;Alamo;J. Mol. Biol.,2016
3. Three-dimensional reconstruction of tarantula myosin filaments suggests how phosphorylation may regulate myosin activity;Alamo;J. Mol. Biol.,2008
4. Low temperature traps myosin motors of mammalian muscle in a refractory state that prevents activation;Caremani;J. Gen. Physiol.,2019
5. Thick filament mechano-sensing is a calcium-independent regulatory mechanism in skeletal muscle;Fusi;Nat. Commun.,2016
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