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Biochemical and Biophysical Research Communications|December 30, 1993
Osmotic stress is the main determinant of the diameter of the actin filamentE Grazi, C Schwienbacher, E MagriFEBS Letters|April 8, 1996
Intramolecular interactions regulate serine/threonine phosphorylation of vinculinC Schwienbacher, B M Jockusch, M RüdigerArchives of Biochemistry and Biophysics|September 10, 1995
Osmotic properties of myosin subfragment 1: implications of the mechanism of muscle contractionE Grazi, E Magri, C Schwienbacher, et al.Biochemical and Biophysical Research Communications|April 15, 1994
Actin may contribute to the power stroke in the binary actomyosin systemE Grazi, E Magri, C Schwienbacher, et al.FEBS Letters|December 21, 1992
Preferential binding of alpha-actinin to actin bundlesE Grazi, P Cuneo, E Magri, et al.European Journal of Biochemistry|October 1, 1996
A model relating protein osmotic pressure to the stiffness of the cross-bridge components and the contractile force of skeletal muscleE Grazi, E Magri, C Schwienbacher, et al.Biochemistry|January 24, 1995
Osmotic properties of the calcium-regulated actin filamentC Schwienbacher, E Magri, G Trombetta, et al.FEBS Letters|June 3, 1996
The stiffness of the crossbridge is a function of the intrinsic protein osmotic pressure generated by the crossbridge itselfE Grazi, E Magri, C Schwienbacher, et al.Biochemistry|August 31, 1993
Diffusion hindrance and geometry of filament crossings account for the complex interactions of F-actin with alpha-actinin from chicken gizzardE Grazi, P Cuneo, E Magri, et al.The Biochemical Journal|February 15, 1994
alpha-Actinin from chicken gizzard: at low temperature, the onset of actin-gelling activity correlates with actin bundlingE Grazi, G Trombetta, E Magri, et al.Pageof 2