Tetraspan TM4SF5-dependent direct activation of FAK and metastatic potential of hepatocarcinoma cells

Author:

Jung Oisun1,Choi Suyong2,Jang Sun-Bok3,Lee Sin-Ae2,Lim Ssang-Taek4,Choi Yoon-Ju2,Kim Hye-Jin2,Kim Do-Hee3,Kwak Tae Kyoung2,Kim Hyeonjung2,Kang Minkyung5,Lee Mi-Sook2,Park Sook Young6,Ryu Jihye2,Jeong Doyoung2,Cheong Hae-Kap7,Kim Hyun Jeong6,Park Ki Hun8,Lee Bong-Jin3,Schlaepfer David D.4,Lee Jung Weon12

Affiliation:

1. Interdisciplinary Program in Genetic Engineering

2. Department of Pharmacy

3. Department of Pharmaceutics, Research Institute of Pharmaceutical Sciences, Tumor Microenvironment Global Core Research Center, Medicinal Bioconvergence Research Center, College of Pharmacy, Seoul National University, Seoul 151-742, Korea (Republic of)

4. Department of Reproductive Medicine, Moores Cancer Center, University of California San Diego, La Jolla, CA 92093, USA

5. Department of Biomedical Sciences, College of Medicine, Seoul National University, Seoul 110-799, Korea (Republic of)

6. Department of Dental Anesthesiology and Dental Research Institute, School of Dentistry, Seoul National University, Seoul 110-768, Korea (Republic of)

7. Division of Magnetic Resonance, Korea Basic Science Institute, 804-1 Yangcheong-Ri, Ochang, Chungbuk 306-883, Korea (Republic of)

8. Division of Applied Life Science, Gyeongsang National University, Jinju 660-701, Korea (Republic of)

Abstract

Summary Transmembrane 4 L six family member 5 (TM4SF5) plays an important role in cell migration, and focal adhesion kinase (FAK) activity is essential for homeostatic and pathological migration of adherent cells. However, it is unclear how TM4SF5 signaling mediates the activation of cellular migration machinery, and how FAK is activated during cell adhesion. Here, we showed that direct and adhesion-dependent binding of TM4SF5 to FAK causes a structural alteration that may release the inhibitory intramolecular interaction in FAK. In turn, this may activate FAK at the cell's leading edge, to promote migration/invasion and in vivo metastasis. TM4SF5-mediated FAK activation occurred during integrin-mediated cell adhesion. TM4SF5 was localized at the leading edge of the cells, together with FAK and actin-organizing molecules, indicating a signaling link between TM4SF5/FAK and actin reorganization machinery. Impaired interactions between TM4SF5 and FAK resulted in an attenuated FAK phosphorylation (the signaling link to actin organization machinery) and the metastatic potential. Our findings demonstrate that TM4SF5 directly binds to and activates FAK in an adhesion-dependent manner, to regulate cell migration and invasion, suggesting that TM4SF5 is a promising target in the treatment of metastatic cancer.

Publisher

The Company of Biologists

Subject

Cell Biology

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