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The Journal of Biological Chemistry|April 12, 1996
The polyelectrolyte nature of F-actin and the mechanism of actin bundle formationJ X Tang, P A JanmeyBiochemistry|June 3, 1999
The polyelectrolyte behavior of actin filaments: a 25Mg NMR studyW Xian, J X Tang, P A Janmey, et al.European Journal of Biochemistry|July 1, 1997
Electrostatic effects of smooth muscle calponin on actin assemblyJ X Tang, P T Szymanski, P A Janmey, et al.Biophysical Journal|March 30, 1999
Thiol oxidation of actin produces dimers that enhance the elasticity of the F-actin networkJ X Tang, P A Janmey, T P Stossel, et al.European Biophysics Journal : EBJ|February 1, 2002
Counterion-induced actin ring formationJ X Tang, J A Käs, J V Shah, et al.Biochemistry|November 5, 1997
Opposite effects of electrostatics and steric exclusion on bundle formation by F-actin and other filamentous polyelectrolytesJ X Tang, T Ito, T Tao, et al.Journal of Molecular Biology|October 1, 1998
Cofilin and gelsolin segment-1: molecular dynamics simulation and biochemical analysis predict a similar actin binding modeW Wriggers, J X Tang, T Azuma, et al.Biophysical Journal|February 1, 1996
F-actin, a model polymer for semiflexible chains in dilute, semidilute, and liquid crystalline solutionsJ Käs, H Strey, J X Tang, et al.Science (New York, N.Y.)|June 17, 2000
Hierarchical self-assembly of F-actin and cationic lipid complexes: stacked three-layer tubule networksG C Wong, J X Tang, A Lin, et al.Physiological Reviews|July 23, 1998
The cytoskeleton and cell signaling: component localization and mechanical couplingP A JanmeyPageof 15