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Updated: Jun 26, 2026

Visualizing Actin and Microtubule Coupling Dynamics In Vitro by Total Internal Reflection Fluorescence (TIRF) Microscopy
Published on: July 20, 2022
Complex relationship between TCTP, microtubules and actin microfilaments regulates cell shape in normal and cancer
Franck Bazile1, Aude Pascal, Isabelle Arnal
1CNRS UMR 6061, Institute of Genetics & Development, Mitosis & Meiosis Group, IFR 140 GFAS, Faculty of Medicine, University of Rennes 1, 35043 Rennes cedex, France.
Abstract:
Translationally controlled tumor-associated protein (TCTP) is a ubiquitous and highly conserved protein implicated in cancers. Here, we demonstrate that interactions of TCTP with microtubules (MTs) are functionally important but indirect, and we reveal novel interaction of TCTP with the actin cytoskeleton. Firstly, immunofluorescence in Xenopus XL2 cells revealed cytoplasmic fibers stained with TCTP but not with tubulin antibodies, as well as MTs free of TCTP. Furthermore, TCTP localized to a subset of actin-rich fibers in migrating cells. Secondly, Xenopus laevis TCTP did not affect in vitro assembly/disassembly of MTs and lacked MT-binding affinity both in pull-down assays and in cell-free extracts. Although TCTP also failed to bind to purified filamentous actin (F-actin), it was associated with microfilaments in cell-free extracts. Thirdly, TCTP concentrated in mitotic spindle did not colocalize with MTs and was easily dissociated from these structures except at the poles. Finally, RNA interference knockdown of TCTP in XL2 and HeLa cells provoked drastic, MT-dependent shape change. These data show that although TCTP interacts with MTs, it does not behave as classic MT-associated protein. Our evidence for an association of TCTP with F-actin structures, and for an involvement in cell shape regulation, implicates this protein in integrating cytoskeletal interactions both in interphase and mitosis providing a new avenue to fully understand the role of TCTP.
Insights
Translationally controlled tumor-associated protein (TCTP) interacts indirectly with microtubules and associates with actin cytoskeleton, influencing cell shape. This suggests TCTP integrates cytoskeletal dynamics in both interphase and mitosis.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Translationally controlled tumor-associated protein (TCTP) is a ubiquitous protein found in various cancers.
- The precise role of TCTP in cellular structural dynamics and its interactions with the cytoskeleton remain incompletely understood.
Purpose of the Study:
- To investigate the functional interactions of TCTP with microtubules and the actin cytoskeleton.
- To elucidate the role of TCTP in cell shape regulation during interphase and mitosis.
Main Methods:
- Immunofluorescence microscopy in Xenopus XL2 and HeLa cells.
- In vitro microtubule assembly/disassembly assays.
- Pull-down assays and cell-free extracts to assess protein binding.
- RNA interference (RNAi) for TCTP knockdown.
Main Results:
- TCTP localizes to cytoplasmic fibers and actin-rich structures, but not directly to microtubules.
- TCTP does not bind microtubules or filamentous actin in vitro but associates with microfilaments in cell-free extracts.
- TCTP knockdown leads to MT-dependent cell shape changes.
- TCTP concentrates in the mitotic spindle but does not colocalize with microtubules.
Conclusions:
- TCTP's interaction with microtubules is indirect, distinguishing it from classical microtubule-associated proteins.
- TCTP associates with actin cytoskeleton structures and plays a role in cell shape regulation.
- TCTP integrates cytoskeletal interactions during interphase and mitosis, offering new insights into its function in cancer.
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