Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Regulation of Focal Adhesion Kinase by a Novel Protein Inhibitor FIP200

View through CrossRef
Focal adhesion kinase (FAK) is a major mediator of integrin signaling pathways. The mechanisms of regulation of FAK activity and its associated cellular functions are not very well understood. Here, we present data suggesting that a novel protein FIP200 functions as an inhibitor for FAK. We show the association of endogenous FIP200 with FAK, which is decreased upon integrin-mediated cell adhesion concomitant with FAK activation. In vitro- and in vivo-binding studies indicate that FIP200 interacts with FAK through multiple domains directly. FIP200 bound to the kinase domain of FAK inhibited its kinase activity in vitro and its autophosphorylation in vivo. Overexpression of FIP200 or its segments inhibited cell spreading, cell migration, and cell cycle progression, which correlated with their inhibition of FAK activity in vivo. The inhibition of these cellular functions by FIP200 could be rescued by coexpression of FAK. Last, we show that disruption of the functional interaction between endogenous FIP200 with FAK leads to increased FAK phosphorylation and partial restoration of cell cycle progression in cells plated on poly-l-lysine, providing further support for FIP200 as a negative regulator of FAK. Together, these results identify FIP200 as a novel protein inhibitor for FAK.
Title: Regulation of Focal Adhesion Kinase by a Novel Protein Inhibitor FIP200
Description:
Focal adhesion kinase (FAK) is a major mediator of integrin signaling pathways.
The mechanisms of regulation of FAK activity and its associated cellular functions are not very well understood.
Here, we present data suggesting that a novel protein FIP200 functions as an inhibitor for FAK.
We show the association of endogenous FIP200 with FAK, which is decreased upon integrin-mediated cell adhesion concomitant with FAK activation.
In vitro- and in vivo-binding studies indicate that FIP200 interacts with FAK through multiple domains directly.
FIP200 bound to the kinase domain of FAK inhibited its kinase activity in vitro and its autophosphorylation in vivo.
Overexpression of FIP200 or its segments inhibited cell spreading, cell migration, and cell cycle progression, which correlated with their inhibition of FAK activity in vivo.
The inhibition of these cellular functions by FIP200 could be rescued by coexpression of FAK.
Last, we show that disruption of the functional interaction between endogenous FIP200 with FAK leads to increased FAK phosphorylation and partial restoration of cell cycle progression in cells plated on poly-l-lysine, providing further support for FIP200 as a negative regulator of FAK.
Together, these results identify FIP200 as a novel protein inhibitor for FAK.

Related Results

Molecular bases of the interactions of ATG16L1 with FIP200 and ATG8 family proteins
Molecular bases of the interactions of ATG16L1 with FIP200 and ATG8 family proteins
Abstract Macroautophagy maintains cellular and organismal homeostasis, and entails de novo synthesis of double-membrane autophagosome. The effective formation of autophagos...
Protein kinase activities in rat pancreatic islets of Langerhans
Protein kinase activities in rat pancreatic islets of Langerhans
1. Protein kinase activities in homogenates of rat islets of Langerhans were studied. 2. On incubation of homogenates with [gamma-32P]ATP, incorporation of 32P into protein occurre...
Spatiotemporal organisation of protein nanoclusters in adhesion complexes
Spatiotemporal organisation of protein nanoclusters in adhesion complexes
The main goal of this thesis was to contribute to the understanding of the nanoscale lateral organisation of key proteins in adhesion complexes. For this, we exploited single molec...
Endothelial Protein C Receptor
Endothelial Protein C Receptor
IntroductionThe protein C anticoagulant pathway plays a critical role in the negative regulation of the blood clotting response. The pathway is triggered by thrombin, which allows ...
Characterisation of a plant 3‐phosphoinositide‐dependent protein kinase‐1 homologue which contains a pleckstrin homology domain
Characterisation of a plant 3‐phosphoinositide‐dependent protein kinase‐1 homologue which contains a pleckstrin homology domain
A plant homologue of mammalian 3‐phosphoinositide‐dependent protein kinase‐1 (PDK1) has been identified in Arabidopsis and rice which displays 40% overall identity with human 3‐pho...
Abstract 1627: Kinase-independent function of focal adhesion kinase in lung metastasis of breast cancer
Abstract 1627: Kinase-independent function of focal adhesion kinase in lung metastasis of breast cancer
Abstract Focal adhesion kinase (FAK) has been shown to promote mammary tumorigenesis, lung metastasis and the maintenance of cancer stem cells in the MMTV-PyMT breas...
Quantitative analysis of cell-surface interactions and cell adhesion process in real-time
Quantitative analysis of cell-surface interactions and cell adhesion process in real-time
The cell adhesion process and cellular interactions with extracellular matrix (ECM) proteins were quantitatively evaluated using a thickness shear mode (TSM) sensor. For understand...

Back to Top