Requirements for activation and RAFT localization of the T-lymphocyte kinase Rlk/Txk

被引:38
作者
Chamorro M. [1 ,6 ]
Czar M.J. [2 ,7 ]
Debnath J. [1 ,2 ,5 ,8 ]
Cheng G. [3 ]
Lenardo M.J. [4 ]
Varmus H.E. [1 ,6 ]
Schwartzberg P.L. [1 ,2 ]
机构
[1] National Cancer Institute, National Institutes of Health, Bethesda, MD
[2] National Inst. for Human Genome Res., National Institutes of Health, Bethesda, MD
[3] Dept. of Microbiol./Molecular Genet., University of California Los Angeles, Los Angeles, CA
[4] Natl. Inst. of Allergy/Infect. Dis., National Institutes of Health, Bethesda, MD
[5] Howard Hughes Medical Institute, NIH Research Scholars Program, Bethesda, MD
[6] Mem. Sloan Kettering Can. Res. Inst., New York, NY
[7] CuraGen Corp., New Haven, CT
[8] Department of Cell Biology, Harvard Medical School, Boston, MA
关键词
Tyrosine Phosphorylation; Pleckstrin Homology Domain; Raft Fraction; Raft Association; Jurkat Lymphoma Cell Line;
D O I
10.1186/1471-2172-2-3
中图分类号
学科分类号
摘要
Background: The Tec family kinases are implicated in signaling from lymphocyte antigen receptors and are activated following phosphorylation by Src kinases. For most Tec kinases, this activation requires an i nteraction between their pleckstrin homology (PH) domains and the products of phosphoinositide 3-Kinase, which localizes Tec kinases to membrane RAFTs. Rlk/Txk is a Tec related kinase expressed in T cells that lacks a pleckstrin homology domain, having instead a palmitoylated cysteine-string motif. To evaluate Rlk's function in T cell receptor signaling cascades, we examined the requirements for Rlk localization and activation by Src family kinases. Results: We demonstrate that Rlk is also associated with RAFTs, despite its lack of a pleckstrin homology domain. Rlk RAFT association requires the cysteine-string motif and is independent of PI3 Kinase activity. We further demonstrate that Rlk can be phosphorylated and activated by Src kinases, leading to a decrease in its half-life. A specific tyrosine in the activation loop of Rlk, Y420, is required for phosphorylation and activation, as well as for decreased stability, but is not required for lipid RAFT association. Mutation of this tyrosine also prevents increased tyrosine phosphorylation of Rlk after stimulation of the T cell receptor, suggesting that Rlk is phosphorylated by Src family kinases in response to T cell receptor engagement. Conclusions: Like the other related Tec kinases, Rlk is associated with lipid RAFTs and can be phosphorylated and activated by Src family kinases, supporting a role for Rlk in signaling downstream of Src kinases in T cell activation. © 2001 Chamorro et al, licensee BioMed Central Ltd.
引用
收藏
相关论文
共 53 条
[1]  
Wange R.L., Samelson L.E., Complex complexes: Signaling at the TCR, Immunity, 5, pp. 197-205, (1996)
[2]  
Weiss A., Littman D.R., Signal transduction by lymphocyte antigen receptors, Cell, 76, pp. 263-274, (1994)
[3]  
Rawlings D.J., Witte O.N., The Btk subfamily of cytoplasmic tyrosine kinases: Structure, regulation and function, Semin. Immunol., 7, pp. 237-246, (1995)
[4]  
Satterthwaite A.B., Li Z., Witte O.N., Btk function in B cell development and response, Semin. Immunol., 10, pp. 309-316, (1998)
[5]  
Schaeffer E.M., Schwartzberg P.L., Tec family kinases in lymphocyte signaling and function, Curr. Opin. Immunol., 12, pp. 282-288, (2000)
[6]  
Mano H., Ishikawa F., Nishida J., Hirai H., Takaku F., A novel protein-tyrosine kinase, tec, is preferentially expressed in liver, Oncogene, 5, pp. 1781-1786, (1990)
[7]  
Desiderio S., Siliciano J.D., The Itk/Btk/Tec family of protein-tyrosine kinases, Chem. Immunol., 59, pp. 191-210, (1994)
[8]  
Rawlings D.J., Saffran D.C., Tsukada S., Largaespada D.A., Grimaldi J.C., Cohen L., Mohr R.N., Bazan J.F., Howard M., Copeland N.G., Et al., Mutation of unique region of Bruton's tyrosine kinase in immunodeficient XID mice, Science, 261, pp. 358-361, (1993)
[9]  
Thomas J.D., Sideras P., Smith C.I., Vorechovsky I., Chapman V., Paul W.E., Colocalization of X-linked agammaglobulinemia and X-linked immunodeficiency genes, Science, 261, pp. 355-358, (1993)
[10]  
Tsukada S., Saffran D.C., Rawlings D.J., Parolini O., Allen R.C., Klisak I., Sparkes R.S., Kubagawa H., Mohandas T., Quan S., Et al., Deficient expression of a B cell cytoplasmic tyrosine kinase in human X-linked agammaglobulinemia, Cell, 72, pp. 279-290, (1993)