Tropomyosins consist of nearly 100% alpha-helix and assemble into parallel and in-register coiled-coil dimers. In vitro it has been established that nonmuscle as well as native muscle tropomyosins can form homodimers. However, a mixture of muscle alpha and beta tropomyosin subunits results in the formation of the thermodynamically more stable alpha/beta heterodimer. Although the assembly preference of the muscle tropomyosin heterodimer can be understood thermodynamically, the presence of multiple tropomyosin isoforms expressed in nonmuscle cells points toward a more complex principle for determining dimer formation. We have investigated the dimerization of rat tropomyosins in living cells by the use of epitope tagging with a 16-aa sequence ...
International audienceActin filaments assemble into a variety of networks to provide force for diver...
International audienceActin filaments assemble into a variety of networks to provide force for diver...
Actin filaments assemble into a variety of networks to provide force for diverse cellular processes ...
Tropomyosins (TMs) are a family of actin filament-binding proteins. They consist of nearly 100% α-he...
Myosin binding to actin, and thus muscle contraction, is regulated by Tropomyosin (Tpm), Troponin (T...
Tropomyosin (Tpm) is an α helical coiled-coil dimer that forms a co-polymer along the actin filament...
AbstractTropomodulins (Tmods) are tropomyosin (TM) binding proteins that bind to the pointed end of ...
The rat beta-tropomyosin (TM) gene expresses two isoforms via alternative RNA splicing, namely skele...
AbstactThe structural mechanics of tropomyosin are essential determinants of its affinity and positi...
Tropomyosin is a rod-like coiled-coil protein that forms a continuous filament that is weakly associ...
Actin filaments assemble into a variety of networks to provide force for diverse cellular processes ...
Actin filaments assemble into a variety of networks to provide force for diverse cellular processes ...
Actin filaments assemble into a variety of networks to provide force for diverse cellular processes ...
Actin filaments assemble into a variety of networks to provide force for diverse cellular processes ...
Vertebrate tropomyosins (TMs) are expressed from four genes, and at least 18 distinct isoforms are g...
International audienceActin filaments assemble into a variety of networks to provide force for diver...
International audienceActin filaments assemble into a variety of networks to provide force for diver...
Actin filaments assemble into a variety of networks to provide force for diverse cellular processes ...
Tropomyosins (TMs) are a family of actin filament-binding proteins. They consist of nearly 100% α-he...
Myosin binding to actin, and thus muscle contraction, is regulated by Tropomyosin (Tpm), Troponin (T...
Tropomyosin (Tpm) is an α helical coiled-coil dimer that forms a co-polymer along the actin filament...
AbstractTropomodulins (Tmods) are tropomyosin (TM) binding proteins that bind to the pointed end of ...
The rat beta-tropomyosin (TM) gene expresses two isoforms via alternative RNA splicing, namely skele...
AbstactThe structural mechanics of tropomyosin are essential determinants of its affinity and positi...
Tropomyosin is a rod-like coiled-coil protein that forms a continuous filament that is weakly associ...
Actin filaments assemble into a variety of networks to provide force for diverse cellular processes ...
Actin filaments assemble into a variety of networks to provide force for diverse cellular processes ...
Actin filaments assemble into a variety of networks to provide force for diverse cellular processes ...
Actin filaments assemble into a variety of networks to provide force for diverse cellular processes ...
Vertebrate tropomyosins (TMs) are expressed from four genes, and at least 18 distinct isoforms are g...
International audienceActin filaments assemble into a variety of networks to provide force for diver...
International audienceActin filaments assemble into a variety of networks to provide force for diver...
Actin filaments assemble into a variety of networks to provide force for diverse cellular processes ...