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Mutations in the Paxillin-binding Site of Integrin-linked Kinase (ILK) Destabilize the Pseudokinase Domain and Cause Embryonic Lethality in Mice
Authors:Daniel Moik  Anika B?ttcher  Tatiana Makhina  Carsten Grashoff  Nada Bulus  Roy Zent  Reinhard F?ssler
Affiliation:From the Department of Molecular Medicine, Max Planck Institute of Biochemistry, 82152 Martinsried, Germany.;the §Molecular Mechanotransduction Research Group, Max Planck Institute of Biochemistry, 82152 Martinsried, Germany.;the Division of Nephrology, Department of Medicine, Vanderbilt University, Nashville, Tennessee 37232, and ;the Department of Medicine, Veterans Affairs Medical Center, Nashville, Tennessee 37232
Abstract:Integrin-linked kinase (ILK) localizes to focal adhesions (FAs) where it regulates cell spreading, migration, and growth factor receptor signaling. Previous reports showed that overexpressed ILK in which Val386 and Thr387 were substituted with glycine residues (ILK-VT/GG) could neither interact with paxillin nor localize to FA in cells expressing endogenous wild-type ILK, implying that paxillin binding to ILK is required for its localization to FAs. Here, we show that introducing this mutation into the germ line of mice (ILK-VT/GG) caused vasculogenesis defects, resulting in a general developmental delay and death at around embryonic day 12.5. Fibroblasts isolated from ILK-VT/GG mice contained mutant ILK in FAs, showed normal adhesion to and spreading on extracellular matrix substrates but displayed impaired migration. Biochemical analysis revealed that VT/GG substitutions decreased ILK protein stability leading to decreased ILK levels and reduced binding to paxillin and α-parvin. Because paxillin depletion did not affect ILK localization to FAs, the embryonic lethality and the in vitro migration defects are likely due to the reduced levels of ILK-VT/GG and diminished binding to parvins.
Keywords:Cell Adhesion   Cell Migration   Development   Protein Stability   Vasculogenesis   Embryonic Development   Integrin-linked Kinase   PINCH   Parvin   Paxillin
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