AAK1-mediated phosphorylation of PDLIM5 and Talin1 promotes focal adhesion disassembly to accelerate cell migration

D Daniela Krocianova A Alexander D. Dagg R Rory A. Clayton D David Potěšil (Central European Institute of Technology, Masaryk University) V Veronika Fedorova A Adam Harmanec V Viktoria Benova V Veronika Bosakova J Jonathan G. G. Kaufman P Petra Martinkova M Miroslava Alblova B Bernard T. Kelly K Katerina Hanakova P Pavel Roudnicky S Stephanie J. Spielman J Jan Frič F Filip Sroubek J Josef Houser A Antoni G. Wrobel E Evzen Boura D David J. Owen Z Zbyněk Zdráhal (Central European Institute of Technology, Masaryk University) Z Zuzana Kadlecova

Abstract

Abstract AAK1 and BMP2K are serine/threonine kinases traditionally known for phosphorylating AP2 during clathrin-mediated endocytosis (CME), but their broader roles remained incompletely defined. Here, using motif-guided in silico, biochemical, and phosphoproteomic screens, we identify PDLIM5 and Talin1 as direct AAK1/BMP2K substrates. Despite high kinase-domain similarity, only AAK1 promotes cell migration and potentiates focal adhesion (FA) turnover. Live-cell imaging shows that AAK1 recruitment to FAs peaks as disassembly begins. The conserved AAK1 C-terminal PDZ-binding motif mediates direct, low-affinity binding to PDLIM5, providing a plausible mechanism for localized substrate access. Dynamic analyses of phospho-mimetic and phospho-null mutants support a model in which AAK1-dependent phosphorylation promotes timely release of PDLIM5 and Talin1 during FA disassembly. These findings reveal a kinase-driven contribution to FA turnover distinct from protease- and phosphatase-based mechanisms and suggest that functional divergence between AAK1 and BMP2K may provide a strategy to modulate cell migration with reduced impact on CME.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 04, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (23)

D

Daniela Krocianova

A

Alexander D. Dagg

R

Rory A. Clayton

D

David Potěšil

Central European Institute of Technology, Masaryk University

V

Veronika Fedorova

A

Adam Harmanec

V

Viktoria Benova

V

Veronika Bosakova

J

Jonathan G. G. Kaufman

P

Petra Martinkova

M

Miroslava Alblova

B

Bernard T. Kelly

K

Katerina Hanakova

P

Pavel Roudnicky

S

Stephanie J. Spielman

J

Jan Frič

F

Filip Sroubek

J

Josef Houser

A

Antoni G. Wrobel

E

Evzen Boura

D

David J. Owen

Z

Zbyněk Zdráhal

Central European Institute of Technology, Masaryk University

Z

Zuzana Kadlecova