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Updated: Oct 29, 2025

In Vitro Polymerization of F-actin on Early Endosomes
Published on: August 28, 2017
F-Actin Dynamics in the Regulation of Endosomal Recycling and Immune Synapse Assembly
Nagaja Capitani1, Cosima T Baldari1
1Department of Life Sciences, University of Siena, Siena, Italy.
Abstract:
Membrane proteins endocytosed at the cell surface as vesicular cargoes are sorted at early endosomes for delivery to lysosomes for degradation or alternatively recycled to different cellular destinations. Cargo recycling is orchestrated by multimolecular complexes that include the retromer, retriever, and the WASH complex, which promote the polymerization of new actin filaments at early endosomes. These endosomal actin pools play a key role at different steps of the recycling process, from cargo segregation to specific endosomal subdomains to the generation and mobility of tubulo-vesicular transport carriers. Local F-actin pools also participate in the complex redistribution of endomembranes and organelles that leads to the acquisition of cell polarity. Here, we will present an overview of the contribution of endosomal F-actin to T-cell polarization during assembly of the immune synapse, a specialized membrane domain that T cells form at the contact with cognate antigen-presenting cells.
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