Measuring the mobility and interactions of proteins is key to understanding cellular signaling mechanisms; however, quantitative analysis of protein dynamics in living plant cells remains a major challenge. Here we describe an automated, single-molecule protocol based on total internal reflection fluorescence microscopy (TIRFM) imaging that allows protein tracking and subunit counting in living plant cells. This protocol uses TIRFM to image transgenic plant tissues expressing fluorescently tagged proteins that are localized to the plasma membrane. Next, a tracking algorithm quantifies dynamic changes in fluorescent protein motion types, temporary particle displacement and protein photobleaching steps. This protocol allows researchers to stu...
Cells are delineated by a lipid bilayer that physically separates the inside from the outer environm...
AbstractRecent developments in light microscopy enable individual fluorophores to be observed in aqu...
This thesis presents two distinct optical microscopy techniques for applications in cell biophysics:...
Measuring the mobility and interactions of proteins is key to understanding cellular signaling mecha...
International audienceSuper-resolution microscopy techniques have pushed the limit of optical imagin...
International audienceSuper-resolution microscopy techniques have pushed the limit of optical imagin...
Dynamic properties of proteins have crucial roles in understanding protein function and molecular me...
Endocytosis is a key process in the internalization of extracellular materials and plasma membrane p...
Endocytosis is a key process in the internalization of extracellular materials and plasma membrane p...
Endocytosis is a key process in the internalization of extracellular materials and plasma membrane p...
Plasma membrane proteins have important roles in transport and signal transduction. Deciphering the ...
Deciphering the dynamics of protein and lipid molecules on appropriate spatial and temporal scales m...
Abstract Background The assembly of protein complexes and compositional lipid patterning act togethe...
This thesis presents two distinct optical microscopy techniques for applications in cell biophysics:...
Background: The assembly of protein complexes and compositional lipid patterning act together to end...
Cells are delineated by a lipid bilayer that physically separates the inside from the outer environm...
AbstractRecent developments in light microscopy enable individual fluorophores to be observed in aqu...
This thesis presents two distinct optical microscopy techniques for applications in cell biophysics:...
Measuring the mobility and interactions of proteins is key to understanding cellular signaling mecha...
International audienceSuper-resolution microscopy techniques have pushed the limit of optical imagin...
International audienceSuper-resolution microscopy techniques have pushed the limit of optical imagin...
Dynamic properties of proteins have crucial roles in understanding protein function and molecular me...
Endocytosis is a key process in the internalization of extracellular materials and plasma membrane p...
Endocytosis is a key process in the internalization of extracellular materials and plasma membrane p...
Endocytosis is a key process in the internalization of extracellular materials and plasma membrane p...
Plasma membrane proteins have important roles in transport and signal transduction. Deciphering the ...
Deciphering the dynamics of protein and lipid molecules on appropriate spatial and temporal scales m...
Abstract Background The assembly of protein complexes and compositional lipid patterning act togethe...
This thesis presents two distinct optical microscopy techniques for applications in cell biophysics:...
Background: The assembly of protein complexes and compositional lipid patterning act together to end...
Cells are delineated by a lipid bilayer that physically separates the inside from the outer environm...
AbstractRecent developments in light microscopy enable individual fluorophores to be observed in aqu...
This thesis presents two distinct optical microscopy techniques for applications in cell biophysics:...