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1.
J Biol Chem ; 271(21): 12549-54, 1996 May 24.
Article in English | MEDLINE | ID: mdl-8647864

ABSTRACT

Lck, a lymphocyte-specific tyrosine protein kinase, is bound to cellular membranes as the result of myristoylation and palmitoylation of its amino terminus. Its activity is inhibited by phosphorylation of tyrosine 394. The Tyr-505 --> Phe mutant of Lck (F505Lck) exhibits elevated biological activity and constitutive phosphorylation of Tyr-394 in vivo. Mutations at sites of fatty acylation that prevent F505Lck from associating with cellular membranes abolish the biological activity as a protein kinase in vivo and in vitro, and eliminate the phosphorylation of Tyr-394. Here, we show that exposure of cells expressing cytoplasmic or nuclear forms of F505Lck to H2O2, a general inhibitor of tyrosine protein phosphatases, restores the catalytic activity of these mutant proteins through stimulation of phosphorylation of Tyr-394. H2O2 treatment induced the phosphorylation of Tyr-394 therefore need not occur by autophosphorylation. Thus, there appear to be two mechanisms through which the phosphorylation of Lck at Tyr-394 can occur. One is restricted to the plasma membrane and does not require the presence of oxidants. The other is operational in the nucleus as well as the cytosol and is responsive to oxidants.


Subject(s)
Enzyme Reactivators/pharmacology , Hydrogen Peroxide/pharmacology , Tyrosine/metabolism , src-Family Kinases/metabolism , Amino Acid Sequence , Animals , Base Sequence , Catalysis , Cell Line , Cell Membrane/enzymology , Lymphocyte Specific Protein Tyrosine Kinase p56(lck) , Molecular Sequence Data , Phosphorylation , Rats , Substrate Specificity
2.
Mol Cell Biol ; 15(12): 6914-22, 1995 Dec.
Article in English | MEDLINE | ID: mdl-8524258

ABSTRACT

Palmitoylation can regulate both the affinity for membranes and the biological activity of proteins. To study the importance of the palmitoylation of the Src-like tyrosine protein kinase p56lck in the function of the protein, Cys-3, Cys-5, or both were mutated to serine, and the mutant proteins were expressed stably in fibroblasts and T cells. Both Cys-3 and Cys-5 were apparent sites of palmitoylation in Lck expressed in fibroblasts, as only the simultaneous mutation of both Cys-3 and Cys-5 caused a large reduction in the incorporation of [3H]palmitic acid. The double mutant S3/5Lck was no longer membrane bound when examined by either immunofluorescence or cell fractionation. This indicated that palmitoylation was required for association of Lck with the plasma membrane. Since the S3/5Lck protein was myristoylated, myristoylation of Lck is not sufficient for membrane binding. When Cys-3, Cys-5, or both Cys-3 and Cys-5 were changed to serine in activated F505Lck, palmitoylation of either Cys-3 or Cys-5 was found to be necessary and sufficient for the transformation of fibroblasts and for the induction of spontaneous, antigen-independent interleukin-2 production in the T-helper cell line DO-11.10. Nonpalmitoylated F505Lck exhibited little activity in vivo, where it did not induce elevated levels of tyrosine phosphorylation, and in vitro, where it was unable to phosphorylate angiotensin in an in vitro kinase assay. These findings suggest that F505Lck must be anchored stably to membranes to become activated. Because palmitoylation is dynamic, it may be involved in regulating the cellular localization of p56(lck), and consequently its activity, by altering the proximity of p56(lck) to its activators and/or targets.


Subject(s)
Cysteine , Palmitic Acids/metabolism , Point Mutation , Protein Processing, Post-Translational , src-Family Kinases/metabolism , Amino Acid Sequence , Animals , Base Sequence , Cell Line , Chlorocebus aethiops , DNA Primers , Interleukin-3/biosynthesis , Kinetics , Lymphocyte Activation , Lymphocyte Specific Protein Tyrosine Kinase p56(lck) , Mice , Molecular Sequence Data , Mutagenesis, Site-Directed , Palmitic Acid , Polymerase Chain Reaction , Rats , Recombinant Proteins/biosynthesis , Recombinant Proteins/chemistry , Recombinant Proteins/metabolism , Restriction Mapping , T-Lymphocytes/enzymology , T-Lymphocytes/immunology , Transfection , src-Family Kinases/biosynthesis , src-Family Kinases/chemistry
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