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Updated: Jun 20, 2026

Light-mediated Reversible Modulation of the Mitogen-activated Protein Kinase Pathway during Cell Differentiation and Xenopus Embryonic Development
Published on: June 15, 2017
Autophosphorylation-independent and -dependent functions of focal adhesion kinase during development
Jean-Marc Corsi1, Christophe Houbron, Pierre Billuart
1Inserm U839, 17 Rue du Fer-à-Moulin, 75005 Paris, France.
Abstract:
Focal adhesion kinase (FAK) regulates numerous cellular functions and is critical for processes ranging from embryo development to cancer progression. Although autophosphorylation on Tyr-397 appears required for FAK functions in vitro, its role in vivo has not been established. We addressed this question using a mutant mouse (fakDelta) deleted of exon 15, which encodes Tyr-397. The resulting mutant protein FAKDelta is an active kinase expressed at normal levels. Our results demonstrate that the requirement for FAK autophosphorylation varies during development. FAK(Delta/Delta) embryos developed normally up to embryonic day (E) 12.5, contrasting with the lethality at E8.5 of FAK-null embryos. Thus, autophosphorylation on Tyr-397 is not required for FAK to achieve its functions until late mid-gestation. However, FAK(Delta/Delta) embryos displayed hemorrhages, edema, delayed artery formation, vascular remodeling defects, multiple organ abnormalities, and overall developmental retardation at E13.5-14.5, and died thereafter demonstrating that FAK autophosphorylation is also necessary for normal development. Fibroblasts derived from mutant embryos had a normal stellate morphology and expression of focal adhesion proteins, Src family members, p53, and Pyk2. In contrast, in FAK(Delta/Delta) fibroblasts and endothelial cells, spreading and lamellipodia formation were altered with an increased size and number of focal adhesions, enriched in FAKDelta. FAK mutation also decreased fibroblast proliferation. These results show that the physiological functions of FAK in vivo are achieved through both autophosphorylation-independent and autophosphorylation-dependent mechanisms.
Insights
Focal adhesion kinase (FAK) autophosphorylation on Tyr-397 is not essential for early embryonic development but becomes critical for later stages, impacting vascular formation and organ development. FAK functions in vivo depend on both autophosphorylation-dependent and -independent mechanisms.
Area of Science:
- Cell Biology
- Developmental Biology
- Molecular Biology
Background:
- Focal adhesion kinase (FAK) is crucial for cellular functions and processes like embryonic development and cancer progression.
- While FAK autophosphorylation on Tyr-397 is vital in vitro, its in vivo necessity remains unestablished.
Purpose of the Study:
- To investigate the in vivo role of FAK autophosphorylation on Tyr-397 during embryonic development.
Main Methods:
- Generation of a FAK mutant mouse (fakDelta) lacking exon 15, encoding Tyr-397.
- Analysis of FAK(Delta/Delta) embryos at various developmental stages.
- Assessment of cellular functions in FAK(Delta/Delta) fibroblasts and endothelial cells.
Main Results:
- FAK(Delta/Delta) embryos developed normally until embryonic day 12.5, unlike FAK-null embryos which are lethal at E8.5.
- Later developmental stages (E13.5-14.5) in FAK(Delta/Delta) embryos showed defects including hemorrhages, edema, delayed artery formation, and organ abnormalities, leading to lethality.
- Mutant fibroblasts and endothelial cells exhibited altered spreading, lamellipodia formation, and increased focal adhesion size/number, with reduced fibroblast proliferation.
Conclusions:
- FAK autophosphorylation on Tyr-397 is dispensable for early embryonic development but essential for late-gestation development, vascularization, and organogenesis.
- In vivo FAK functions are mediated by both autophosphorylation-dependent and -independent pathways.
- FAK activity and regulation are complex, with distinct roles for its autophosphorylation status in different developmental contexts.
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