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T Pawson

Publications and source records attributed to T Pawson.

At least 235 records · Page 13Linked to original sources

The human c-fps/fes gene product expressed ectopically in rat fibroblasts is nontransforming and has restrained protein-tyrosine kinase activity.

A 13-kilobase EcoRI genomic restriction fragment containing the human c-fps/fes proto-oncogene locus was expressed transiently in Cos-1 monkey cells and stably in Rat-2 fibroblasts. In both cases, human c-fps/fes directed synthesis of a 92-kilodalton protein-tyrosine kinase (p92c-fes) indistinguishable from a tyrosine kinase previously identified with anti-fps antiserum which is specifically expressed in human myeloid cells. Transfected Rat-2 cells containing approximately 50-fold more human p92c-fes than is found in human leukemic cells remained morphologically normal and failed to grow in soft agar. Synthesis of p92c-fes in this phenotypically normal line exceeded that of the P130gag-fps oncoprotein in a v-fps-transformed Rat-2 line. Despite this elevated expression, human p92c-fes induced no substantial increase in cellular phosphotyrosine and was not itself phosphorylated on tyrosine. In contrast, p92c-fes immunoprecipitated from these Rat-2 cells or expressed as an enzymatically active fragment in Escherichia coli from a c-fps/fes cDNA catalyzed tyrosine phosphorylation with an activity similar to that of v-fps/fes polypeptides. Thus, p92c-fes is not transforming when ectopically overexpressed in Rat-2 fibroblasts. This lack of transforming activity correlates with a restriction imposed on the kinase activity of the normal c-fps/fes product in vivo which is apparently lifted for v-fps/fes oncoproteins, suggesting that regulatory interactions within the host cell modify fps/fes protein function and normally restrain its oncogenic potential.

Amino Acids↗

Myelin-associated glycoprotein, a cell adhesion molecule of oligodendrocytes, is phosphorylated in brain.

Myelin-associated glycoprotein (MAG) has been implicated in the mediation of interactions between oligodendrocytes and neurons during the development of the myelin sheath. Here we show that MAG is phosphorylated in intact myelinating mouse brain primarily at serine residues and to a lesser extent at threonine and tyrosine residues. In vivo, only the larger of the two developmentally regulated MAG isoforms is phosphorylated. MAG can be phosphorylated at tyrosine by the v-fps and v-src protein-tyrosine kinases in vitro and by a kinase endogenous to myelin membrane preparations. MAG phosphorylated in myelin membranes in vitro also contains phosphoserine and phosphothreonine. These observations suggest that phosphorylation of MAG is physiologically significant in regulating oligodendrocyte-neuron interactions.

Animals↗

Novel protein-tyrosine kinase cDNAs related to fps/fes and eph cloned using anti-phosphotyrosine antibody.

A rat brain lambda gt11 cDNA expression library was screened with anti-phosphotyrosine antibody to identify recombinant clones that encode enzymatically active protein-tyrosine kinases. The inserts of two bacteriophage that gave positive signals were sequenced. Both translation products possess sequence motifs characteristic of protein-tyrosine kinases. However, each polypeptide is distinct from previously described members of the tyrosine kinase family. The predicted product of the lambda B1 clone contains a catalytic domain and C-terminal tail most closely related to the eph gene product, a presumed transmembrane receptor-like protein-tyrosine kinase. The clone lambda B2 encodes a partial SH2 domain and a kinase domain similar in organization and sequence to the fps/fes cytoplasmic protein-tyrosine kinase. These new protein-tyrosine kinases (elk and flk) are apparently members of subfamilies for which eph and fps/fes are prototypes. elk is predominantly expressed in brain, while flk RNA is widely distributed and most abundant in testes. The preferential isolation of cDNAs for previously uncharacterized protein-tyrosine kinases in a screen based on catalytic activity suggests that additional members of the protein-tyrosine kinase family remain to be identified.

Amino Acid Sequence↗

Mutational analysis of a phosphotransfer motif essential for v-fps tyrosine kinase activity.

The catalytic domains of protein-tyrosine kinases such as the P130gag-fps oncoprotein contain the sequence HRDLAARN, followed thirteen residues C-terminal by DFG (P130gag-fps residues 1041-1048 and 1061-1063). These residues define a structural motif conserved among eucaryotic protein kinases (-RD----N, DFG) and shared with several procaryotic 3'aminoglycoside phosphotransferases (H-D----N, D-G). Functional analysis of mutant v-fps proteins employing bacterial and mammalian expression systems indicated that this motif is critical for P130gag-fps kinase activity and oncogenicity. In particular, conservative substitutions of the two invariant aspartates (asp1043, asp1061) with glutamate or asparagine completely eliminated enzymatic activity, suggesting that these residues are essential for catalysis. In contrast, substitution of arg1042 with glutamate decreased but did not eliminate v-fps kinase activity in bacteria. The effects of these and other amino acid substitutions within the phosphotransfer motif and at the nearby autophosphorylation site (tyr1073) of P130gag-fps indicate that these conserved residues are intrinsically essential to the execution or regulation of catalytic activity, and suggest that tight spatial constraints operate within the active centre of the v-fps tyrosine kinase domain.

Amino Acid Sequence↗

v-fps protein-tyrosine kinase coordinately enhances the malignancy and growth factor responsiveness of pre-neoplastic lung fibroblasts.

The v-fps oncoprotein was expressed in a pre-neoplastic, growth factor-dependent Chinese hamster lung fibroblast line (CCL39) to study its effect on growth controls and on the induction of malignancy. Two transfectants were characterized which expressed low (39FPS-8) or high (51FPS-6) levels of P130gag-f ps protein-tyrosine kinase activity. 39FPS-8 cells still arrested in quiescence when deprived of growth factors, but developed an increased sensitivity to the mitogenic actions of epidermal growth factor (20-fold) and alpha-thrombin (50-fold), although not to insulin. In contrast, 51FPS-6 cells completely escaped growth controls, divided in serum-free medium, and were insensitive to further growth factor stimulation. Both transfectants produced rapidly growing tumors in nude mice that formed pulmonary metastases from a subcutaneous site, unlike the parental cells which are non-metastatic. 51FPS-6 cells were comparatively more efficient than 39FPS-8 cells in colonizing the lungs after intravenous inoculation. The v-fps tyrosine kinase therefore induces a partial to complete relaxation of growth factor-mediated controls on the CCL39 cell cycle, with the extent of factor independence reflecting the amount of P130gag-f ps synthesized. This reduction in growth factor requirements correlates with the capacity of v-fps to confer the attributes of metastatic tumors upon preneoplastic CCL39 fibroblasts. We speculate that increased sensitivity to growth factor stimulation represents a common mechanism by which tumor cells acquire metastatic properties.

Animals↗

Modifications of tumor histology by point mutations in the v-fps oncogene: possible role of extracellular matrix.

Fujinami sarcoma virus (FSV) encodes a protein-tyrosine kinase, p130gag-fps, whose enzymatic activity and ability to transform cultured cells to a neoplastic phenotype are reduced by substitution of the major autophosphorylation site tyrosine-1073 with other amino acids. We compared the histopathology of tumors formed in syngeneic immunocompetent rats by Rat-2 cells and by Rat-2 cells transformed in culture with (a) wild type (wt) FSV, (b) mutant FSV where the codon for tyrosine-1073 of p130gag-fps had been changed to codons for phenylalanine or serine, and (c) a revertant FSV, genotypically identical to wt FSV, in which the codon for tyrosine-1073 had been restored. Latency periods from cell inoculation to tumor formation were 12-29 weeks with Rat-2 cells, 6-8 weeks with mutant-transformed Rat-2 cells, and 2-4 weeks with wt FSV- and revertant FSV-transformed Rat-2 cells. Untransfected Rat-2 cells formed tumors that histologically resembled low grade fibrosarcomas or fibromas and were characterized by uniform fusiform cells in parallel arrays with a prominent collagenous stroma. The growth pattern of tumors produced by mutant FSV-transformed cells was generally similar, although cellular forms and intercellular organization were less uniform. In contrast, Rat-2 cells transformed with either wt FSV or revertant FSV produced tumors that resembled highly malignant sarcomas and were composed of diffuse sheets of pleomorphic, disorganized cells and stroma rich in hyaluronate but poor in fibrous components. Local invasion occurred in 25% of tumors produced by Rat-2 cells and in 53 and 36% of tumors formed by mutant FSV- and wt FSV-transformed cells, respectively. In culture, Rat-2 cells and mutant FSV-transformed cells produced fibrillar pericellular matrices of collagen I and fibronectin. From 5 to 15% of protein secreted by these cells was collagen. Cultures of wt FSV- and revertant FSV-transformed cells lacked collagen and fibronectin matrices and collagen secretion was reduced to 0-2%. These results show that clinically relevant histological characteristics of malignant tumors can correlate with single amino acid substitutions previously shown to affect the enzymatic activity and transforming ability of an oncogenic protein tyrosine kinase. The mechanisms underlying some of the histological differences in this system may be related to differences in the production of extracellular matrix components among the transformed cells.

Animals↗

Enzymatic activation of Fujinami sarcoma virus gag-fps transforming proteins by autophosphorylation at tyrosine.

Site-directed mutagenesis of the Fujinami sarcoma virus (FSV) genome has suggested that Tyr 1073 of the P130gag--fps protein-tyrosine kinase is a regulatory site. To investigate directly the ability of tyrosine phosphorylation to affect P130gag--fps kinase activity, the phosphotyrosyl phosphatase inhibitor orthovanadate and partially purified phosphotyrosyl phosphatases were used to manipulate the stoichiometry of P130gag--fps phosphorylation. Phosphorylation of P130gag--fps at Tyr 1073 correlated with enhanced kinase activity. The thermolabile phosphorylation, kinase activity and transforming ability of P140gag--fps encoded by a temperature-sensitive (ts)FSV variant were restored at the non-permissive temperature for transformation by incubation of infected cells with orthovanadate. In this case tyrosine phosphorylation can apparently functionally reactivate a conditionally defective v-fps kinase activity. These data suggest that reversible autophosphorylation at a conserved tyrosine within the v-fps kinase domain is a positive regulator of enzymatic activity and biological function. Phenotypic suppression of the tsFSV genetic defect by orthovanadate emphasizes the potential importance of phosphotyrosyl phosphatases in antagonizing tyrosine kinase action. It is suggested that autophosphorylation may constitute a molecular switch by which some protein-tyrosine kinases are activated.

Animals↗

A conserved domain regulates interactions of the v-fps protein-tyrosine kinase with the host cell.

All cytoplasmic protein-tyrosine kinases (PTKs) share a noncatalytic domain, termed SH2, which comprises approximately 100 residues located immediately N-terminal to the kinase domain. A linker in the AX9m mutant of Fujinami avian sarcoma virus (FSV) introduces a dipeptide insertion into the SH2 domain of the P130gag-fps PTK, which abolishes its ability to transform Rat-2 cells. However, at 36 degrees C AX9m FSV elicits focus formation and agar colony formation in infected chicken embryo fibroblasts (CEF) with single hit kinetics. At 41.5 degrees C AX9m FSV is nontransforming for CEF, and the mutant is therefore both host and temperature dependent for transforming activity. Both in vitro and in vivo, the specific kinase activity of AX9m FSV P130gag-fps, measured by autophosphorylation and phosphorylation of exogenous substrates, correlated with transforming activity. The consequences of the AX9m mutation for enzymatic function and transforming activity therefore depend on the cellular environment in which the altered v-fps protein is expressed. We conclude that the SH2 domain directs the interaction of the P130gag-fps catalytic domain with cellular proteins such as substrates for phosphorylation or regulators of kinase activity important for its transforming ability.

Animals↗

A ras-encoded protein in Dictyostelium discoideum is acylated and membrane-associated.

Dictyostelium discoideum synthesizes a 23,000 Mr protein, p23dd-ras, closely related to the mammalian oncogene-encoded protein p21ras. To investigate the subcellular localization of p23dd-ras, conditions were optimized to reduce protein degradation following cell breakage. Subcellular fractionation of D. discoideum showed that p23dd-ras was associated predominantly with the membrane fraction during both vegetative growth and differentiation. In the absence of suitable protease inhibitors considerable amounts of a truncated form of p23dd-ras were recovered in the cytosol fraction, suggesting that intact p23dd-ras is attached to the membrane by a short terminal peptide sequence. Radio-isotope labelling of D. discoideum with myristic acid or palmitic acid in the presence of excess unlabelled acetate resulted in radio-isotope incorporation into a select group of proteins including p23dd-ras. No acyl label appeared in the truncated cytoplasmic form of p23dd-ras when cell breakage was performed in the absence of suitable protease inhibitors, indicating that the acyl group is associated with the short terminal peptide that is cleaved. These data suggest that p23dd-ras, like its mammalian counterpart, is acylated and associated with the plasma membrane. There was no evidence during a 30-minute pulse of methionine for a cytoplasmic precursor to the membrane-bound p23dd-ras, suggesting that the turnover of the presumptive precursor must be much more rapid in D. discoideum than for pro-p21ras in mammalian cells.

Acetates↗

The synthesis and degradation of ras-related gene products during growth and differentiation in Dictyostelium discoideum.

A Dictyostelium discoideum protein with an Mr of 23,000 (p23dd-ras) is structurally related to the mammalian proto-oncogene ras-gene product, p21ras, and is specifically precipitated from cell-free extracts of D. discoideum by the Y13-259 monoclonal antibody against p21ras. p23dd-ras was degraded at rates that were very similar to those observed for total protein during both growth and differentiation, suggesting that the previously reported decline in p23dd-ras levels during differentiation is due to a change in the rate of synthesis rather than a change in the rate of degradation. p23dd-ras synthesis did not decrease immediately after the initiation of differentiation, but rather its rate of synthesis increased for the first 1-2 h, suggesting that p23dd-ras is not rapidly down-regulated in response to nutrient deprivation. There were differences in the extent of p23dd-ras turnover during the differentiation of the three tested strains, A-3, NC4, and V12-M2. The relative level of p23dd-ras dropped most rapidly in V12-M2, which may reflect the slightly faster differentiation process exhibited by this strain. In all three strains, very little p23dd-ras was present by the end of the differentiation process. A second protein with an Mr of 24,000 (p24dd-ras) was also immunoprecipitated using the Y13-259 antibody. The amount of p24dd-ras was small or undetectable in vegetative cells, but relatively larger amounts of p24dd-ras were synthesized in pseudoplasmodial cells. We found no evidence to suggest that p24dd-ras is a precursor of p23dd-ras.(ABSTRACT TRUNCATED AT 250 WORDS)

Dictyostelium↗

Catalytic and non-catalytic domains of the Fujinami sarcoma virus P130gag-fps protein-tyrosine kinase distinguished by the expression of v-fps polypeptides in Escherichia coli.

While protein-tyrosine kinases share a region of sequence identity corresponding to their kinase domains, the specific elements essential for catalysis, substrate binding and substrate specificity are largely undefined. The P130gag-fps transforming protein of Fujinami avian sarcoma virus is a cytoplasmic tyrosine kinase with a complex structure that includes a C-terminal kinase domain. To identify the precise N-terminal border of the v-fps catalytic region and to assess its interactions with non-catalytic domains, C-terminal v-fps polypeptide fragments of decreasing size were expressed in E. coli as trpE-v-fps hybrid proteins. All such polypeptides containing 263 or more residues derived from the C-terminus of P130gag-fps (i.e. residues 920-1182) were enzymatically active as tyrosine kinases. They autophosphorylated at physiological sites in vivo and phosphorylated exogenous substrates such as enolase and poly(glu,tyr) at tyrosine in vitro. Deletion of a further five amino acids from P130gag-fps residues 920-925 abolished all enzymatic activity. This deletion coincides with the predicted N-terminus of the v-fps ATP-binding site at residue 922. These data indicate that the N-terminal border of the ATP-binding site defines the start of the minimal v-fps tyrosine kinase catalytic domain, and show that this minimal domain is competent to bind substrates. More N-terminal non-catalytic sequences appear to functionally interact with the catalytic domain.

Catalysis↗

Protein kinase activity of FSV (Fujinami sarcoma virus) P130gag-fps shows a strict specificity for tyrosine residues.

A number of oncogenic viruses encode transforming proteins with protein kinase activities apparently specific for tyrosine residues. Recent evidence has raised questions as to the substrate specificity of these kinases in general and the physiological relevance of tyrosine phosphorylation in particular. The P130gag-fps transforming protein of Fujinami sarcoma virus (FSV) is strongly phosphorylated at 2 tyrosine residues in FSV-transformed cells of which 1 (Tyr-1073) is also the major site of P130gag-fps intermolecular autophosphorylation in vitro. We have investigated the specificity of the protein kinase activity intrinsic to FSV P130gag-fps by using site-directed mutagenesis to change the codon for Tyr-1073 to those for the other commonly phosphorylated hydroxyamino acids, serine and threonine. This approach has some advantages over the use of synthetic peptides to define protein kinase recognition sites in that the protein containing the altered target site can be expressed in intact cells. In addition it allows higher order as well as primary structure of the enzyme recognition site to be considered. Neither serine nor threonine were phosphorylated when substituted for tyrosine at position 1073 of P130gag-fps indicating a stringent specificity for tyrosine as a substrate of the P130gag-fps protein kinase autophosphorylating activity. Consistent with the suggestion that tyrosine phosphorylation is of functional significance we find that these and other FSV Tyr-1073 mutants have depressed enzymatic and oncogenic capacities.

Amino Acid Sequence↗

A lysine in the ATP-binding site of P130gag-fps is essential for protein-tyrosine kinase activity.

The P130gag-fps transforming protein of Fujinami sarcoma virus (FSV) possesses tyrosine-specific protein kinase activity and autophosphorylates at Tyr-1073. Within the kinase domain of P130gag-fps is a putative ATP-binding site containing a lysine (Lys-950) homologous to lysine residues in cAMP-dependent protein kinase and p60v-src which bind the ATP analogue p-fluorosulfonylbenzoyl-5' adenosine. FSV mutants in which the codon for Lys-950 has been changed to codons for arginine or glycine encode metabolically stable but enzymatically defective proteins which are unable to effect neoplastic transformation. Kinase-defective P130gag-fps containing arginine at residue 950 was normally phosphorylated at serine residues in vivo suggesting that this amino acid substitution has a minimal effect on protein folding and processing. The inability of arginine to substitute for lysine at residue 950 suggests that the side chain of Lys-950 is essential for P130gag-fps catalytic activity, probably by virtue of a specific interaction with ATP at the phosphotransfer active site. Tyr-1073 of the Arg-950 P130gag-fps mutant protein was not significantly autophosphorylated either in vitro or in vivo, but could be phosphorylated in trans by enzymatically active P140gag-fps. These data indicate that Tyr-1073 can be modified by intermolecular autophosphorylation.

Adenosine Triphosphate↗

Expression of viral p21ras during acquisition of a transformed phenotype by rat adrenal cortex cells infected with Kirsten murine sarcoma virus.

Rat adrenal cortex cells infected with Kirsten murine sarcoma virus acquire a transformed phenotype in a progressive fashion. The expression of the viral p21ras does not appear to correlate with the degree of transformation of the adrenocortical cells but rather is produced at similar levels as the culture becomes transformed. This indicates that the expression of an oncogenic form of p21ras is not of itself sufficient to completely transform rat adrenal cortex cells.

Adrenal Cortex↗

A noncatalytic domain conserved among cytoplasmic protein-tyrosine kinases modifies the kinase function and transforming activity of Fujinami sarcoma virus P130gag-fps.

Proteins encoded by oncogenes such as v-fps/fes, v-src, v-yes, v-abl, and v-fgr are cytoplasmic protein tyrosine kinases which, unlike transmembrane receptors, are localized to the inside of the cell. These proteins possess two contiguous regions of sequence identity: a C-terminal catalytic domain of 260 residues with homology to other tyrosine-specific and serine-threonine-specific protein kinases, and a unique domain of approximately 100 residues which is located N terminal to the kinase region and is absent from kinases that span the plasma membrane. In-frame linker insertion mutations in Fujinami avian sarcoma virus which introduced dipeptide insertions into the most stringently conserved segment of this N-terminal domain in P130gag-fps impaired the ability of Fujinami avian sarcoma virus to transform rat-2 cells. The P130gag-fps proteins encoded by these transformation-defective mutants were deficient in protein-tyrosine kinase activity in rat cells. However v-fps polypeptides derived from the mutant Fujinami avian sarcoma virus genomes and expressed in Escherichia coli as trpE-v-fps fusion proteins displayed essentially wild-type enzymatic activity, even though they contained the mutated sites. Deletion of the N-terminal domain from wild-type and mutant v-fps bacterial proteins had little effect on autophosphorylating activity. The conserved N-terminal domain of P130gag-fps is therefore not required for catalytic activity, but can profoundly influence the adjacent kinase region. The presence of this noncatalytic domain in all known cytoplasmic tyrosine kinases of higher and lower eucaryotes argues for an important biological function. The relative inactivity of the mutant proteins in rat-2 cells compared with bacteria suggests that the noncatalytic domain may direct specific interactions of the enzymatic region with cellular components that regulate or mediate tyrosine kinase function.

Animals↗

Correspondence between immunological and functional domains in the transforming protein of Fujinami sarcoma virus.

Monoclonal antibodies reactive with either gag or fps portions of the wild-type Fujinami sarcoma virus transforming protein have been used to probe the structure of proteins encoded by mutant genomes constructed in vitro. The pattern of immunoreactivity suggests that the functional domain defined in genetic studies (Stone et al., Cell 37:549-558, 1984) corresponds to a discrete immunological domain in the native, wild-type Fujinami sarcoma virus protein. At least one mutation affecting both the structure and function of the proposed NH2-terminal fps-specific domain encodes a product with high specific activities in kinase assays. Furthermore, a cell line expressing high levels of this mutant protein is only moderately transformed. The striking correspondence between the immunological domain defined here and the functional domain inferred from the results of transfection experiments suggests that this non-kinase-specifying region constitutes a discrete structural as well as functional component of the viral protein.

Animals↗

Regulation of a ras-related protein during development of Dictyostelium discoideum.

Recent work has shown that DNA sequences related to the mammalian ras proto-oncogenes are highly conserved in eucaryotic evolution. A monoclonal antibody (Y13-259) to mammalian p21ras specifically precipitated a 23,000-molecular-weight protein (p23) from lysates of Dictyostelium discoideum amoebae. Tryptic peptide analysis indicated that D. discoideum p23 was closely related in its primary structure to mammalian p21ras. p23 was apparently derived by post-translational modification of a 24,000-molecular-weight primary gene product. The amount of p23 was highest in growing amoebae, but declined markedly with the onset of differentiation such that by fruiting body formation there was less than 10% of the amoeboid level. The rate of p23 synthesis dropped rapidly during aggregation, rose transiently during pseudoplasmodial formation, and then declined during the terminal stages of differentiation. There was, therefore, a strong correlation between the expression of the ras-related protein p23 and cell proliferation of D. discoideum.

Cell Differentiation↗