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The Journal of Experimental Biology|March 1, 1985
Properties of the muscle proteins--a comparative approachS V PerryBiochemical and Biophysical Research Communications|March 28, 2008
Background to the discovery of troponin and Setsuro Ebashi's contribution to our knowledge of the mechanism of relaxation in striated muscleS V PerryBiochemistry|June 17, 1997
Interactions of structural C and regulatory N domains of troponin C with repeated sequence motifs in troponin IJ R Pearlstone, B D Sykes, L B SmillieThe Journal of Biological Chemistry|April 25, 1980
A comparison of the amino acid sequences of rabbit skeletal muscle alpha- and beta-tropomyosinsA S Mak, L B Smillie, G R StewartThe Biochemical Journal|March 15, 1989
Effects of deletion of tropomyosin overlap on regulated actomyosin subfragment 1 ATPaseD H Heeley, L B Smillie, E M Lohmeier-VogelThe Biochemical Journal|June 15, 1987
An abundant and novel protein of 22 kDa (SM22) is widely distributed in smooth muscles. Purification from bovine aortaJ P Lees-Miller, D H Heeley, L B SmillieProceedings of the National Academy of Sciences of the United States of America|December 1, 1972
Amino-acid sequence of rabbit skeletal tropomyosin and its coiled-coil structureJ Sodek, R S Hodges, L B Smillie, et al.Journal of Molecular Biology|March 5, 1987
Characterization of a cDNA defining a gene family encoding TM30p1, a human fibroblast tropomyosinA R MacLeod, K Talbot, L B Smillie, et al.The Journal of Biological Chemistry|August 23, 2000
Biological function and site II Ca2+-induced opening of the regulatory domain of skeletal troponin C are impaired by invariant site I or II Glu mutationsJ R Pearlstone, M Chandra, M M Sorenson, et al.Pageof 16