Skeletal muscle tropomyosin (Tpm1.1) is an elongated, rod-shaped, alpha-helical coiled-coil protein that forms continuous head-to-tail polymers along both sides of the actin filament. In this study we use single molecule fluorescence TIRF microscopy combined with a microfluidic device and fluorescently labelled proteins to measure Tpm1.1 association to and dissociation from single actin filaments. Our experimental setup allows us to clearly resolve Tpm1.1 interactions on both sides of the filaments. Here we provide a semi-automated method for the extraction and quantification of kymograph data for individual actin filaments bound at different Tpm1.1 concentrations. We determine boundaries on the kymograph on each side of the actin filament,...
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 ...
Skeletal muscle tropomyosin (Tpm1.1) is an elongated, rod-shaped, alpha-helical coiled-coil protein ...
The actin cytoskeleton plays a fundamental role in many biological processes including cell prolifer...
Reconstitution of actin filaments on surfaces for observation of filament-associated protein dynamic...
(A) Schematic of Tpm1.1 molecules binding to actin filament. (B) Actin filaments decorated with AF64...
(A) The total intensity of the region of interest (ROI) as a function of time during the association...
Tropomyosin (Tpm) is an α helical coiled-coil dimer that forms a co-polymer along the actin filament...
Fluorescence spectroscopy can be used to probe protein conformation and is recognized as a technique...
Tropomyosin is a prototypical coiled coil along its length with subtle variations in structure that ...
BACKGROUND:Tropomyosin is a prototypical coiled coil along its length with subtle variations in stru...
Tropomyosin is a well-known regulator of the dynamics of the actin cytoskeleton, yet its molecular i...
The actin cytoskeleton is a dynamic network of filaments that is involved in virtually every cellula...
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 ...
Skeletal muscle tropomyosin (Tpm1.1) is an elongated, rod-shaped, alpha-helical coiled-coil protein ...
The actin cytoskeleton plays a fundamental role in many biological processes including cell prolifer...
Reconstitution of actin filaments on surfaces for observation of filament-associated protein dynamic...
(A) Schematic of Tpm1.1 molecules binding to actin filament. (B) Actin filaments decorated with AF64...
(A) The total intensity of the region of interest (ROI) as a function of time during the association...
Tropomyosin (Tpm) is an α helical coiled-coil dimer that forms a co-polymer along the actin filament...
Fluorescence spectroscopy can be used to probe protein conformation and is recognized as a technique...
Tropomyosin is a prototypical coiled coil along its length with subtle variations in structure that ...
BACKGROUND:Tropomyosin is a prototypical coiled coil along its length with subtle variations in stru...
Tropomyosin is a well-known regulator of the dynamics of the actin cytoskeleton, yet its molecular i...
The actin cytoskeleton is a dynamic network of filaments that is involved in virtually every cellula...
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 ...