Actin filament dynamics govern many key physiological processes from cell motility to tissue morphogenesis. A central feature of actin dynamics is the capacity of filaments to polymerize and depolymerize at their ends in response to cellular conditions. It is currently thought that filament kinetics can be described by a single rate constant for each end. In this study, using direct visualization of single actin filament elongation, we show that actin polymerization kinetics at both filament ends are strongly influenced by the binding of proteins to the lateral filament surface. We also show that the pointed-end has a non-elongating state that dominates the observed filament kinetic asymmetry. Estimates of flexibility as well as effects on ...
This article has been presented in the Journal Current Biology as the Featured Article, freely avail...
AbstractActin polymerization is the driving force for a large number of cellular processes. Formatio...
The actin cortex of animal cells is the main determinant of cellular mechanics. The continuous turno...
Actin filament dynamics govern many key physiological processes from cell motility to tissue morphog...
Actin filament dynamics govern many key physiological processes from cell motility to tissue morphog...
Actin filament dynamics govern many key physiological processes from cell motility to tissue morphog...
Actin filament dynamics govern many key physiological processes from cell motility to tissue morphog...
SummaryBackgroundThe rapid dynamics of actin filaments is a fundamental process that powers a large ...
AbstractEukaryotic cells have many proteins that cap the barbed ends of actin filaments. Manipulatio...
AbstractDespite the recognition that actin filaments are important for numerous cellular processes, ...
AbstractActin is now realised to play a dynamic role in muscle contraction and many cellular motilit...
AbstractRapid assembly and disassembly (turnover) of actin filaments in cytoplasm drives cell motili...
This article has been presented in the Journal Current Biology as the Featured Article, freely avail...
This article has been presented in the Journal Current Biology as the Featured Article, freely avail...
This article has been presented in the Journal Current Biology as the Featured Article, freely avail...
This article has been presented in the Journal Current Biology as the Featured Article, freely avail...
AbstractActin polymerization is the driving force for a large number of cellular processes. Formatio...
The actin cortex of animal cells is the main determinant of cellular mechanics. The continuous turno...
Actin filament dynamics govern many key physiological processes from cell motility to tissue morphog...
Actin filament dynamics govern many key physiological processes from cell motility to tissue morphog...
Actin filament dynamics govern many key physiological processes from cell motility to tissue morphog...
Actin filament dynamics govern many key physiological processes from cell motility to tissue morphog...
SummaryBackgroundThe rapid dynamics of actin filaments is a fundamental process that powers a large ...
AbstractEukaryotic cells have many proteins that cap the barbed ends of actin filaments. Manipulatio...
AbstractDespite the recognition that actin filaments are important for numerous cellular processes, ...
AbstractActin is now realised to play a dynamic role in muscle contraction and many cellular motilit...
AbstractRapid assembly and disassembly (turnover) of actin filaments in cytoplasm drives cell motili...
This article has been presented in the Journal Current Biology as the Featured Article, freely avail...
This article has been presented in the Journal Current Biology as the Featured Article, freely avail...
This article has been presented in the Journal Current Biology as the Featured Article, freely avail...
This article has been presented in the Journal Current Biology as the Featured Article, freely avail...
AbstractActin polymerization is the driving force for a large number of cellular processes. Formatio...
The actin cortex of animal cells is the main determinant of cellular mechanics. The continuous turno...