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Published on: July 17, 2019
Mechanisms of focal adhesion kinase regulation
1Department of Molecular Medicine, Cornell University, Ithaca, NY 14853, USA.
Abstract:
Focal adhesion kinase (FAK) is a tyrosine kinase whose phosphorylation state and activity is tightly linked to cell adhesion to the extracellular matrix through integrin receptors. FAK's regulation by adhesion places it in a key position to be able to influence cellular events that are either dependent on cell adhesion like cell proliferation and survival, or that require modulation of cell adhesion like cell migration. FAK's involvement in cellular pathways that regulate cell growth and cell movement suggests that it may contribute to the development of cancer or other diseases. FAK's possible involvement in these pathways makes it a potential drug target. In this review we will focus on the developing view how FAK's activity and phosphorylation are regulated within the cell. Specifically, we will address the contribution of integrins and growth factor dependent pathways to FAK's activation. The role of the tyrosine kinase Src in FAK's regulation will be discussed. The contribution of various negative regulators of FAK's phosphorylation on its regulation including phosphatases and proteases will be discussed. Lastly, the emerging role of FAK's amino terminal FERM like domain in FAK's regulation will be explored. FAK's function within a cell are tightly linked to its phosphorylation state, thus understanding its normal regulation in the cell will provide important insight into drug development by highlighting novel regulatory mechanisms within FAK that potentially may be exploited.
Insights
Focal adhesion kinase (FAK) activity, crucial for cell adhesion, migration, and survival, is regulated by integrins and growth factors. Understanding FAK regulation offers insights for developing new cancer drugs.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Focal adhesion kinase (FAK) is a tyrosine kinase regulated by cell adhesion via integrin receptors.
- FAK activity influences cell proliferation, survival, and migration, linking it to cancer development.
- FAK is a potential drug target due to its role in critical cellular pathways.
Purpose of the Study:
- To review the regulatory mechanisms of FAK activity and phosphorylation.
- To explore the roles of integrins, growth factors, and Src in FAK activation.
- To discuss negative regulators and the FERM domain's role in FAK regulation.
Main Methods:
- Literature review focusing on FAK regulation.
- Analysis of signaling pathways involving integrins, growth factors, and Src.
- Examination of phosphatases, proteases, and the FERM domain in FAK regulation.
Main Results:
- FAK phosphorylation and activity are tightly controlled by cell adhesion and extracellular matrix interactions.
- Integrin and growth factor signaling pathways significantly contribute to FAK activation.
- Src, phosphatases, proteases, and the FERM domain play crucial roles in modulating FAK activity.
Conclusions:
- Understanding FAK's complex regulatory network is essential for comprehending its role in cell behavior.
- Targeting FAK regulatory mechanisms presents a promising strategy for cancer drug development.
- Further exploration of FAK's FERM domain may reveal novel therapeutic targets.
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