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Updated: Sep 29, 2026

A Time-Efficient Fluorescence Spectroscopy-Based Assay for Evaluating Actin Polymerization Status in Rodent and Human Brain Tissues
Published on: June 3, 2021
Filamin is essential in actin cytoskeletal assembly mediated by p21-activated kinase 1
Ratna K Vadlamudi1, Feng Li, Liana Adam
1Department of Molecular and Cellular Oncology, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.
Abstract:
The serine/threonine kinase p21-activated kinase 1 (Pak1) controls the actin cytoskeletal and ruffle formation through mechanisms that are independent of GTPase activity. Here we identify filamin FLNa as a Pak1-interacting protein through a yeast two-hybrid screen using the amino terminus of Pak1 as a bait. FLNa is stimulated by physiological signalling molecules to undergo phosphorylation by Pak1 and to interact and colocalize with endogenous Pak1 in membrane ruffles. The ruffle-forming activity of Pak1 is functional in FLNa-expressing cells but not in FLNa-deficient cells. In FLNa, the Pak1-binding site involves tandem repeat 23 in the carboxyl terminus and phosphorylation takes place on serine 2152. The FLNa-binding site in Pak1 is localized between amino acids 52 and 132 in the conserved Cdc42/Rac-interacting (CRIB) domain; accordingly, FLNa binding to the CRIB domain stimulates Pak1 kinase activity. Our results indicate that FLNa may be essential for Pak1-induced cytoskeletal reorganization and that the two-way regulatory interaction between Pak1 and FLNa may contribute to the local stimulation of Pak1 activity and its targets in cytoskeletal structures.
Insights
Filamin (FLNa) interacts with p21-activated kinase 1 (Pak1), regulating actin cytoskeleton and cell ruffles. This interaction is crucial for Pak1
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- p21-activated kinase 1 (Pak1) regulates actin cytoskeleton and cell ruffle formation.
- Pak1's mechanisms are independent of GTPase activity.
Purpose of the Study:
- Identify proteins interacting with Pak1.
- Investigate the role of filamin (FLNa) in Pak1-mediated cellular processes.
Main Methods:
- Yeast two-hybrid screen using Pak1 amino terminus.
- Co-localization and interaction studies of Pak1 and FLNa.
- Analysis of Pak1 activity in FLNa-expressing and deficient cells.
Main Results:
- Filamin (FLNa) identified as a Pak1-interacting protein.
- Pak1 phosphorylates FLNa on Serine 2152, enhancing interaction and co-localization in membrane ruffles.
- Pak1-induced ruffle formation requires FLNa expression.
- FLNa binding to Pak1's CRIB domain stimulates Pak1 kinase activity.
Conclusions:
- FLNa is essential for Pak1-induced cytoskeletal reorganization.
- A two-way regulatory interaction between Pak1 and FLNa enhances local Pak1 activity in cytoskeletal structures.
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