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Frontiers in Physiology|November 18, 2014
X-ray diffraction from flight muscle with a headless myosin mutation: implications for interpreting reflection patternsHiroyuki Iwamoto, Károly Trombitás, Naoto Yagi, et al.Molecular Biology of the Cell|April 13, 2012
Expression of the inclusion body myopathy 3 mutation in Drosophila depresses myosin function and stability and recapitulates muscle inclusions and weaknessYang Wang, Girish C Melkani, Jennifer A Suggs, et al.Aging Cell|March 20, 2024
Aging-affiliated post-translational modifications of skeletal muscle myosin affect biochemical properties, myofibril structure, muscle function, and proteostasisClara L Neal, William A Kronert, Jared Rafael T Camillo, et al.Journal of Molecular Biology|February 24, 2007
Alternative S2 hinge regions of the myosin rod differentially affect muscle function, myofibril dimensions and myosin tail lengthJennifer A Suggs, Anthony Cammarato, William A Kronert, et al.Nature Cell Biology|March 20, 2002
The myosin converter domain modulates muscle performanceDouglas M Swank, Aileen F Knowles, Jennifer A Suggs, et al.Journal of Molecular Biology|September 13, 2005
An alternative domain near the nucleotide-binding site of Drosophila muscle myosin affects ATPase kineticsBecky M Miller, Shuxing Zhang, Jennifer A Suggs, et al.Disease Models & Mechanisms|March 5, 2017
A Drosophila model of dominant inclusion body myopathy type 3 shows diminished myosin kinetics that reduce muscle power and yield myofibrillar defectsJennifer A Suggs, Girish C Melkani, Bernadette M Glasheen, et al.The Journal of Biological Chemistry|February 28, 2003
Variable N-terminal regions of muscle myosin heavy chain modulate ATPase rate and actin sliding velocityDouglas M Swank, Aileen F Knowles, William A Kronert, et al.Skeletal Muscle|August 18, 2020
Drosophila myosin mutants model the disparate severity of type 1 and type 2B distal arthrogryposis and indicate an enhanced actin affinity mechanismYiming Guo, William A Kronert, Karen H Hsu, et al.Plos Genetics|July 3, 2013
The NADPH metabolic network regulates human αB-crystallin cardiomyopathy and reductive stress in Drosophila melanogasterHeng B Xie, Anthony Cammarato, Namakkal S Rajasekaran, et al.Pageof 2