A talin fragment as an actin trap visualizing actin flow in chemotaxis, endocytosis, and cytokinesis
- 27 August 2002
- journal article
- research article
- Published by Wiley in Cell Motility
- Vol. 53 (2) , 136-149
- https://doi.org/10.1002/cm.10065
Abstract
A C‐terminal 63‐kDa fragment of talin A from Dictyostelium discoideum forms a slowly dissociating complex with F‐actin in vitro. This talin fragment (TalC63) has been tagged with GFP and used as a trap for actin filaments in chemotactic cell movement, endocytosis, and mitotic cell division. TalC63 efficiently sequesters actin filaments in vivo. Its translocation reflects the direction and efficiency of an actin flow. Along the body of a migrating Dictyostelium cell, this flow is directed from the front to the tail. If during chemotaxis one or two new fronts are induced, the flow is always directed away from these fronts. The flow thus reflects the re‐programming of cell polarity in response to changing gradients of chemoattractant. In endocytosis, the fluorescent complexes are translocated to the base of a phagocytic or macropinocytic cup. During mitosis, the complexes of F‐actin with TalC63 accumulate within the midzone of anaphase cells. If TalC63 is strongly expressed, the entire cleavage furrow is filled out by sequestered actin filaments, and cytokinesis is severely impaired. These cells are considered to mimic the phenotype of mutants deficient in the shredding of actin filaments that normally occurs in the mid‐zone of a dividing cell. Cell Motil. Cytoskeleton 53:136–149, 2002.Keywords
Funding Information
- Deutsche Forschungsgemeinschaft (SFB 413/A8)
This publication has 39 references indexed in Scilit:
- Myosin II dynamics and cortical flow during contractile ring formation in Dictyostelium cellsThe Journal of cell biology, 2001
- Domain analysis of cortexillin I: actin-bundling, PIP2-binding and the rescue of cytokinesisThe EMBO Journal, 1999
- Three-dimensional Patterns and Redistribution of Myosin II and Actin in Mitotic Dictyostelium CellsThe Journal of cell biology, 1997
- Microfilament dynamics during cell movement and chemotaxis monitored using a GFP–actin fusion proteinCurrent Biology, 1997
- Actin-Based Cell Motility and Cell LocomotionCell, 1996
- Chemoattractant-controlled accumulation of coronin at the leading edge of Dictyostelium cells monitored using a green fluorescent protein–coronin fusion proteinCurrent Biology, 1995
- Integrin-cytoskeletal interactions in migrating fibroblasts are dynamic, asymmetric, and regulated.The Journal of cell biology, 1993
- Nanometre-level analysis demonstrates that lipid flow does not drive membrane glycoprotein movementsNature, 1989
- Cortical Flow in Animal CellsScience, 1988
- Surface functions during mitosis. III. Quantitative analysis of ligand-receptor movement into the cleavage furrow: diffusion vs. flow.The Journal of cell biology, 1982