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Journal of Clinical Microbiology|October 7, 2008
Autofluorescence of mycobacteria as a tool for detection of Mycobacterium tuberculosisSol Patiño, Lorenzo Alamo, Mena Cimino, et al.Biophysical Journal|November 12, 2013
Different head environments in tarantula thick filaments support a cooperative activation processGuidenn Sulbarán, Antonio Biasutto, Lorenzo Alamo, et al.Journal of Molecular Biology|October 28, 2008
Three-dimensional reconstruction of tarantula myosin filaments suggests how phosphorylation may regulate myosin activityLorenzo Alamo, Willy Wriggers, Antonio Pinto, et al.Molecular Biosystems|June 4, 2015
Tarantula myosin free head regulatory light chain phosphorylation stiffens N-terminal extension, releasing it and blocking its docking backLorenzo Alamo, Xiaochuan Edward Li, L Michel Espinoza-Fonseca, et al.Elife|June 14, 2017
Effects of myosin variants on interacting-heads motif explain distinct hypertrophic and dilated cardiomyopathy phenotypesLorenzo Alamo, James S Ware, Antonio Pinto, et al.Journal of Molecular Biology|February 7, 2016
Conserved Intramolecular Interactions Maintain Myosin Interacting-Heads Motifs Explaining Tarantula Muscle Super-Relaxed State Structural BasisLorenzo Alamo, Dan Qi, Willy Wriggers, et al.Journal of Molecular Biology|October 1, 2011
A molecular model of phosphorylation-based activation and potentiation of tarantula muscle thick filamentsReicy Brito, Lorenzo Alamo, Ulf Lundberg, et al.Proceedings of the National Academy of Sciences of the United States of America|May 24, 2020
The myosin interacting-heads motif present in live tarantula muscle explains tetanic and posttetanic phosphorylation mechanismsRaúl Padrón, Weikang Ma, Sebastian Duno-Miranda, et al.Proceedings of the National Academy of Sciences of the United States of America|February 16, 2018
Interacting-heads motif has been conserved as a mechanism of myosin II inhibition since before the origin of animalsKyoung Hwan Lee, Guidenn Sulbarán, Shixin Yang, et al.Circulation|January 28, 2020
Myosin Sequestration Regulates Sarcomere Function, Cardiomyocyte Energetics, and Metabolism, Informing the Pathogenesis of Hypertrophic CardiomyopathyChristopher N Toepfer, Amanda C Garfinkel, Gabriela Venturini, et al.Pageof 2