Related Content
Search Google Scholar for:
|
J. Cell Biol. 149 (2): 423-430
Copyright © 2000 by the Rockefeller University Press.
© The Rockefeller University Press, /2000/4/423/ $5.00 The Journal of Cell Biology, Volume 149, Number 2, April 17, 2000 423-430
Original Article
Suppression of Pyk2 Kinase and Cellular Activities by FIP200
Hiroki Uedaa,
Smita Abbia,
Chuanhai Zhenga, and
Jun-Lin Guana
a Cancer Biology Laboratories, Department of Molecular Medicine, College of Veterinary Medicine, Cornell University, Ithaca, New York 14853
Jun-Lin Guan, Cancer Biology Laboratories, Department of Molecular Medicine, College of Veterinary Medicine, Cornell University, Ithaca, NY 14853. Tel:(607) 253-3586 Fax:(607) 253-3708 E-mail:jg19{at}cornell.edu.
Proline-rich tyrosine kinase 2 (Pyk2) is a cytoplasmic tyrosine kinase implicated to play a role in several intracellular signaling pathways. We report the identification of a novel Pyk2-interacting protein designated FIP200 (FAK family kinaseinteracting protein of 200 kD) by using a yeast two-hybrid screen. In vitro binding assays and coimmunoprecipitation confirmed association of FIP200 with Pyk2, and similar assays also showed FIP200 binding to FAK. However, immunofluorescent staining indicated that FIP200 was predominantly localized in the cytoplasm. FIP200 bound to the kinase domain of Pyk2 and inhibited its kinase activity in in vitro kinase assays. FIP200 also inhibited the kinase activity of the Pyk2 isolated from SYF cells (deficient in Src, Yes, and Fyn expression) and the Pyk2 mutant lacking binding site for Src, suggesting that it regulated Pyk2 kinase directly rather than affecting the associated Src family kinases. Consistent with its inhibitory effect in vitro, FIP200 inhibited activation of Pyk2 and Pyk2-induced apoptosis in intact cells, which correlated with its binding to Pyk2. Finally, activation of Pyk2 by several biological stimuli correlated with the dissociation of endogenous FIP200Pyk2 complex, which provided further support for inhibition of Pyk2 by FIP200 in intact cells. Together, these results suggest that FIP200 functions as an inhibitor of Pyk2 via binding to its kinase domain.
phosphorylation, FAK, tyrosine kinase, inhibitor, signal transduction
THIS ARTICLE HAS BEEN CITED BY OTHER ARTICLES:
- FIP200, a ULK-interacting protein, is required for autophagosome formation in mammalian cells.
- T. Hara, A. Takamura, C. Kishi, S.-i. Iemura, T. Natsume, J.-L. Guan, and N. Mizushima (2008)
J. Cell Biol.
181, 497-510
| Abstract »
| Full Text »
| PDF »
- Analysis of the Calcium-Dependent Regulation of Proline-Rich Tyrosine Kinase 2 by Gonadotropin-Releasing Hormone.
- J. Xie, K. H. Allen, A. Marguet, K. A. Berghorn, S. P. Bliss, A. M. Navratil, J. L. Guan, and M. S. Roberson (2008)
Mol. Endocrinol.
22, 2322-2335
| Abstract »
| Full Text »
| PDF »
- Spatial Interplay between PIASy and FIP200 in the Regulation of Signal Transduction and Transcriptional Activity.
- N. Martin, K. Schwamborn, H. Urlaub, B. Gan, J.-L. Guan, and A. Dejean (2008)
Mol. Cell. Biol.
28, 2771-2781
| Abstract »
| Full Text »
| PDF »
- Spatial and Temporal Regulation of Focal Adhesion Kinase Activity in Living Cells.
- X. Cai, D. Lietha, D. F. Ceccarelli, A. V. Karginov, Z. Rajfur, K. Jacobson, K. M. Hahn, M. J. Eck, and M. D. Schaller (2008)
Mol. Cell. Biol.
28, 201-214
| Abstract »
| Full Text »
| PDF »
- Calcium-dependent growth regulation of small cell lung cancer cells by neuropeptides.
- T. Gudermann and S. Roelle (2006)
Endocr. Relat. Cancer
13, 1069-1084
| Abstract »
| Full Text »
| PDF »
- Role of FIP200 in cardiac and liver development and its regulation of TNF{alpha} and TSC-mTOR signaling pathways.
- B. Gan, X. Peng, T. Nagy, A. Alcaraz, H. Gu, and J.-L. Guan (2006)
J. Cell Biol.
175, 121-133
| Abstract »
| Full Text »
| PDF »
- Identification of FIP200 interaction with the TSC1-TSC2 complex and its role in regulation of cell size control.
- B. Gan, Z. K. Melkoumian, X. Wu, K.-L. Guan, and J.-L. Guan (2005)
J. Cell Biol.
170, 379-389
| Abstract »
| Full Text »
| PDF »
- Mechanism of Cell Cycle Regulation by FIP200 in Human Breast Cancer Cells.
- Z. K. Melkoumian, X. Peng, B. Gan, X. Wu, and J.-L. Guan (2005)
Cancer Res.
65, 6676-6684
| Abstract »
| Full Text »
| PDF »
- FERM Domain Interaction Promotes FAK Signaling.
- J. M. Dunty, V. Gabarra-Niecko, M. L. King, D. F. J. Ceccarelli, M. J. Eck, and M. D. Schaller (2004)
Mol. Cell. Biol.
24, 5353-5368
| Abstract »
| Full Text »
| PDF »
- Androgen Receptor in Prostate Cancer.
- C. A. Heinlein and C. Chang (2004)
Endocr. Rev.
25, 276-308
| Abstract »
| Full Text »
| PDF »
- Regulation of Focal Adhesion Kinase by Its Amino-Terminal Domain through an Autoinhibitory Interaction.
- L. A. Cooper, T.-L. Shen, and J.-L. Guan (2003)
Mol. Cell. Biol.
23, 8030-8041
| Abstract »
| Full Text »
| PDF »
- Differential Role of Proline-Rich Tyrosine Kinase 2 and Focal Adhesion Kinase in Determining Glioblastoma Migration and Proliferation.
- C. A. Lipinski, N. L. Tran, C. Bay, J. Kloss, W. S. McDonough, C. Beaudry, M. E. Berens, and J. C. Loftus (2003)
Mol. Cancer Res.
1, 323-332
| Abstract »
| Full Text »
| PDF »
- Regulation of Focal Adhesion Kinase by a Novel Protein Inhibitor FIP200.
- S. Abbi, H. Ueda, C. Zheng, L. A. Cooper, J. Zhao, R. Christopher, and J.-L. Guan (2002)
Mol. Biol. Cell
13, 3178-3191
| Abstract »
| Full Text »
| PDF »
- Phosphatidylinositol 3,4,5-Trisphosphate Directs Association of Src Homology 2-containing Signaling Proteins with Gelsolin.
- M. A. Chellaiah, R. S. Biswas, D. Yuen, U. M. Alvarez, and K. A. Hruska (2001)
J. Biol. Chem.
276, 47434-47444
| Abstract »
| Full Text »
| PDF »
|
|