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Journal of Molecular Biology|March 21, 2006
alphaB-crystallin maintains skeletal muscle myosin enzymatic activity and prevents its aggregation under heat-shock stressGirish C Melkani, Anthony Cammarato, Sanford I BernsteinJournal of Muscle Research and Cell Motility|November 19, 2004
Passive stiffness of Drosophila IFM myofibrils: a novel, high accuracy measurement methodYudong Hao, Sanford I Bernstein, Gerald H PollackInternational Review of Cell and Molecular Biology|November 8, 2014
The UNC-45 myosin chaperone: from worms to flies to vertebratesChi F Lee, Girish C Melkani, Sanford I BernsteinBiophysical Journal|September 6, 2011
Disrupting the myosin converter-relay interface impairs Drosophila indirect flight muscle performanceSeemanti Ramanath, Qian Wang, Sanford I Bernstein, et al.Plos One|July 30, 2011
The UNC-45 chaperone is critical for establishing myosin-based myofibrillar organization and cardiac contractility in the Drosophila heart modelGirish C Melkani, Rolf Bodmer, Karen Ocorr, et al.The Journal of Biological Chemistry|October 9, 2015
A Failure to Communicate: MYOSIN RESIDUES INVOLVED IN HYPERTROPHIC CARDIOMYOPATHY AFFECT INTER-DOMAIN INTERACTIONWilliam A Kronert, Girish C Melkani, Anju Melkani, et al.Biochemical and Biophysical Research Communications|April 21, 2010
Drosophila UNC-45 prevents heat-induced aggregation of skeletal muscle myosin and facilitates refolding of citrate synthaseGirish C Melkani, Chi F Lee, Anthony Cammarato, et al.Anatomical Record (Hoboken, N.J. : 2007)|August 16, 2014
Getting folded: chaperone proteins in muscle development, maintenance and diseaseDaniel A Smith, Carmen R Carland, Yiming Guo, et al.The Journal of Biological Chemistry|March 15, 2014
Mapping interactions between myosin relay and converter domains that power muscle functionWilliam A Kronert, Girish C Melkani, Anju Melkani, et al.Pageof 181