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Cytoskeleton (Hoboken, N.J.)|March 17, 2012
Developmental expression and cardiac transcriptional regulation of Myh7b, a third myosin heavy chain in the vertebrate heartAndrew S Warkman, Samantha A Whitman, Melanie K Miller, et al.
NPJ Regenerative Medicine|September 16, 2024
Leiomodin 2 neonatal dilated cardiomyopathy mutation results in altered actin gene signatures and cardiomyocyte dysfunctionJessika B Iwanski, Christopher T Pappas, Rachel M Mayfield, et al.
Experimental Hematology|July 24, 2002
Effect of oxysterols on hematopoietic progenitor cellsClaudia C Gregorio-King, Fiona M Collier, Karyn A Bolton, et al.
Blood|September 25, 2001
ORP-3, a human oxysterol-binding protein gene differentially expressed in hematopoietic cellsC C Gregorio-King, G R Collier, J S McMillan, et al.
Plos Biology|September 8, 2020
Leiomodin creates a leaky cap at the pointed end of actin-thin filamentsDmitri Tolkatchev, Garry E Smith, Lauren E Schultz, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|June 4, 2014
Phosphorylation of tropomodulin1 contributes to the regulation of actin filament architecture in cardiac muscleKatherine T Bliss, Takehiro Tsukada, Stefanie Mares Novak, et al.
The Journal of General Physiology|April 24, 2025
Prediction and biological significance of small changes in binding of leiomodin to tropomyosinEduardo Sánchez Díaz, Brayan Osegueda, Svetlana Minakhina, et al.
Molecular Biology of the Cell|November 22, 2018
Effects of cardiomyopathy-linked mutations K15N and R21H in tropomyosin on thin-filament regulation and pointed-end dynamicsThu Ly, Christopher T Pappas, Dylan Johnson, et al.
Science Advances|March 13, 2024
Lmod2 is necessary for effective skeletal muscle contractionTania M Larrinaga, Gerrie P Farman, Rachel M Mayfield, et al.
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