
[Cancer Research 65, 6950-6956, August 1, 2005]
© 2005 American Association for Cancer Research
Experimental Therapeutics, Molecular Targets, and Chemical Biology |
CD26 Regulates p38 Mitogen-Activated Protein KinaseDependent Phosphorylation of Integrin ß1, Adhesion to Extracellular Matrix, and Tumorigenicity of T-Anaplastic Large Cell Lymphoma Karpas 299
Tsutomu Sato1,
Tadanori Yamochi1,
Toshiko Yamochi1,
Ugur Aytac1,
Kei Ohnuma2,
Kathryn S. McKee1,
Chikao Morimoto2 and
Nam H. Dang1
1 Department of Lymphoma/Myeloma, University of Texas M.D. Anderson Cancer Center, Houston, Texas and 2 Department of Clinical Immunology, Institute of Medical Science, University of Tokyo, Tokyo, Japan
Requests for reprints: Nam H. Dang, Department of Hematologic Oncology, Nevada Cancer Institute, 10000 West Charleston Boulevard, Suite 260, Las Vegas, NV 89135. Phone: 702-821-0000; Fax: 702-821-0021; E-mail: ndang{at}nvcancer.org.
CD26 is an antigen with key role in T-cell biology and is expressed on selected subsets of aggressive T-cell malignancies. To elucidate the role of CD26 in tumor behavior, we examine the effect of CD26 depletion by small interfering RNA transfection of T-anaplastic large cell lymphoma Karpas 299. We show that the resultant CD26-depleted clones lose the ability to adhere to fibronectin and collagen I. Because antiintegrin ß1 blocking antibodies also prevent binding of Karpas 299 to fibronectin and collagen I, we then evaluate the CD26-integrin ß1 association. CD26 depletion does not decrease integrin ß1 expression but leads to dephosphorylation of both integrin ß1 and p38 mitogen-activated protein kinase (MAPK). Moreover, our data showing that the p38MAPK inhibitor SB203580 dephosphorylates integrin ß1 and that binding of the anti-CD26 antibody 202.36 dephosphorylates both p38MAPK and integrin ß1 on Karpas 299, leading to loss of cell adhesion to the extracellular matrix, indicate that CD26 mediates cell adhesion through p38MAPK-dependent phosphorylation of integrin ß1. Finally, in vivo experiments show that depletion of CD26 is associated with loss of tumorigenicity and greater survival. Our findings hence suggest that CD26 plays an important role in tumor development and may be a novel therapeutic target for selected neoplasms.
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Copyright © 2005 by the American Association for Cancer Research.