Actin Treadmilling

Actin treadmilling is a dynamic process in which actin filaments grow at one end while shrinking at the other, enabling cells to reorganize their cytoskeleton. ATP-bound actin subunits preferentially add to the filament’s barbed end; after ATP hydrolysis and phosphate release, older ADP-actin subunits dissociate more readily from the pointed end. This continuous turnover maintains filament polarity and converts chemical energy into directed structural change. In biology, actin treadmilling supports cell migration, membrane protrusion, endocytosis, and intracellular organization, while its regulation by actin-binding proteins helps coordinate signaling, development, and tissue remodeling.

Actin Treadmilling - Related Videos

Education

JoVE Core - Cell Biology

Actin Treadmilling

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2023

Actin filaments undergo polymerization and depolymerization from either end. The polymerization and depolymerization rates depend on the cytosolic concentration of free G-actins. The polymerization rate is generally higher at the plus or barbed end, while the depolymerization rate is higher at the minus or pointed end. At a steady state, critical concentration describes the concentration of free G-actin monomers at which the polymerization rate at the plus end is equal to that of the...

Research

JoVE Journal - Neuroscience

Quantification of Filamentous Actin (F-actin) Puncta in Rat Cortical Neurons

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Cited by 8 •

2016

Filamentous actin (F-actin) plays an important role in spinogenesis, synaptic plasticity, and synaptic stability. Quantification of F-actin puncta is therefore a useful tool to study the integrity of synaptic structures. This protocol describes the procedures of quantifying F-actin puncta labeled with Phalloidin in low-density primary cortical neuronal cultures.

Using a Split-belt Treadmill to Evaluate Generalization of Human Locomotor Adaptation

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Cited by 14 •

2017

We describe a protocol for investigating human locomotor adaptation using the split-belt treadmill, which has two belts that can drive each leg at a different speed. We specifically focus on a paradigm designed to test the generalization of adapted locomotor patterns to different walking contexts (e.g., gait speeds, walking environments).

The Treadmill Fatigue Test: A Simple, High-throughput Assay of Fatigue-like Behavior for the Mouse

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Cited by 93 •

2016

Fatigue is a common, undertreated and frequently poorly-understood symptom in many diseases and disorders. New preclinical assays of fatigue may help to improve current understanding and future treatment of fatigue. To that end, the current protocol provides a novel means of measuring fatigue-like behavior in the mouse.

Actin Co-Sedimentation Assay; for the Analysis of Protein Binding to F-Actin

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Cited by 18 •

2008

Proteins bind to filamentous actin (F-actin) through distinct actin binding modules. In this video we demonstrate the procedure of actin co-sedimentation, which is an in vitro assay routinely used to analyze proteins or specific domains that bind F-actin.

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