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K C Robbins

Publications and source records attributed to K C Robbins.

At least 37 records · Page 2Linked to original sources

Painful realities.

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Health Policy↗

Cloning and characterization of cbl-b: a SH3 binding protein with homology to the c-cbl proto-oncogene.

We have cloned a new gene, cbl-b, with homology to the c-cbl proto-oncogene. A large protein is predicted (approx. MW 108,000) that has a proline rich domain, a nuclear localization signal, a C3HC4 zinc finger and a putative leucine zipper. There is striking nucleotide and amino acid homology to the c-cbl proto-oncogene most notably in the structural motifs described above. Cbl-b is expressed in normal and malignant mammary epithelial cells, in a variety of normal tissues, and in hematopoietic tissue and cell lines. Cbl-b expressions is up-regulated with macrophage/monocyte differentiation of the HL60 and U937 cell lines. There is direct association of the cbl-b protein with the Src Homology 3 domains of several proteins including signaling, cytoskeletal and adaptor proteins. Our data suggest that cbl-b encodes a protein which can interact with signal transduction proteins to regulate their function or to be regulated by them. Together, cbl-b and c-cbl are members of a novel family of proto-oncogenes involved in signal transduction.

Animals↗

Identification of the major tyrosine kinase substrate in signaling complexes formed after engagement of Fc gamma receptors.

We have recently identified the protein product of the c-cbl proto-oncogene as an SH3 binding protein expressed in macrophages. To investigate the possibility that p120c-cbl is involved in signaling pathways initiated by cell surface receptors for IgG (Fc gamma R), lysates of HL60 cells were examined for tyrosine phosphorylation of p120c-cbl upon Fc gamma R engagement. Our findings demonstrate that p120c-cbl is tyrosine-phosphorylated upon Fc gamma R engagement and that this molecule represents the major tyrosine kinase substrate in this signaling pathway. Protein complexes containing p120c-cbl, p72syk, and p56lyn were observed either in resting or activated cells. In vitro studies showed that the direct association between p120c-cbl and p56lyn was mediated by the SH3 domain of p56lyn.

Enzyme Precursors↗

Tyrosine phosphorylation as a marker for aberrantly regulated growth-promoting pathways in cell lines derived from head and neck malignancies.

We have utilized a broad approach to address whether tyrosine kinases and the growth pathways they regulate might be functionally aberrant in squamous cell carcinomas (SCC) of the upper aerodigestive tract. This strategy involved assaying for evidence of tyrosine kinase action in lysates of cell lines representing SCC. Our findings revealed a spectrum of elevated tyrosine phosphorylation in SCC lines ranging from less than 2-fold to more than 10-fold above that of control human epidermal keratinocytes. Thus the ability to regulate growth and other pathways controlled by tyrosine phosphorylation was impaired in all the 19 lines examined. Assessment of the receptor for epidermal growth factor (EGF) revealed that its activity was elevated above normal in 14 of the 19 cell lines examined, suggesting that at least a portion of the increased tyrosine phosphorylation observed could be attributed to excessive EGF receptor activity. Our findings provide functional evidence that growth pathways are aberrantly regulated in cell lines representing SCC of the upper aerodigestive tract.

Biomarkers, Tumor↗

Wiskott-Aldrich syndrome protein physically associates with Nck through Src homology 3 domains.

In the second of a series of experiments designed to identify p47nck-Src homology 3 (SH3)-binding molecules, we report the cloning of SAKAP II (Src A box Nck-associated protein II) from an HL60 cDNA expression library. This molecule has been identified as a cDNA encoding the protein product of WASP, which is mutated in Wiskott-Aldrich syndrome patients. Studies in vivo and in vitro demonstrated a highly specific interaction between the SH3 domains of p47nck and Wiskott-Aldrich syndrome protein. Furthermore, anti-Wiskott-Aldrich syndrome protein antibodies recognized a protein of 66 kDa by Western blot (immunoblot) analysis. In vitro translation studies identified the 66-kDa protein as the protein product of WASP, and subcellular fractionation experiments showed that p66WASP is mainly present in the cytosol fraction, although significant amounts are also present in membrane and nuclear fractions. The main p47nck region implicated in the association with p66WASP was found to be the carboxy-terminal SH3 domain.

Adaptor Proteins, Signal Transducing↗

Physical association between Src homology 3 elements and the protein product of the c-cbl proto-oncogene.

To investigate the nature of proteins recognized by Src homology 3 (SH3) domains, a cDNA expression library was prepared from macrophages and screened with a probe representing the three SH3 domains of p47nck. Two clones were isolated, and one, designated SAKAP I (for Src A box Nck-associated protein I), contained the carboxyl-terminal half of the cbl proto-oncogene product. Studies in vitro demonstrated reactivity between SAKAP I and SH3 domains derived from a variety of molecules. Wide variations in this assay suggested a high degree of specificity inherent in SAKAP I binding. Moreover, it was possible to demonstrate an in vivo association between p47nck and p120c-cbl in HL60 cells. These findings suggest that proteins containing SH3 elements regulate Cbl function.

Adaptor Proteins, Signal Transducing↗

Specificity of protein interactions with highly related SRC homology (SH) domains of FGR and FYN protein-tyrosine kinases.

As an approach toward identification and isolation of cellular proteins that may act as substrates or effectors of the SRC-family of protein-tyrosine kinases, fusion proteins containing noncatalytic elements of two highly related SRC-family members were tested for their ability to recognize distinct molecules present in lysates of cells known to normally express both enzymes. Our results demonstrate differences of protein binding between the SH2 elements of FYN and FGR kinases, but do not discriminate proteins binding to their SH3 domains.

3T3 Cells↗

MTS1/CDK4I is altered in cell lines derived from primary and metastatic oral squamous cell carcinoma.

The MTS1/CDK4I gene encodes a 16 kDa cyclin kinase inhibitor and maps to chromosome 9p21. Previous studies have suggested the presence of a major tumour suppressor gene at this locus which may be inactivated in head and neck squamous cell carcinoma (HNSCC). To determine the status of this gene in human primary and metastatic HNSCC, we examined the locus and its transcript for abnormalities by polymerase chain reaction (PCR). Out of 14 cell lines studied, four had lost only exon 1, one had lost only exon 2, three had lost both exons 1 and 2, and none of the remaining six lines expressed a normal p16 mRNA. These latter six cell lines expressed p16 transcripts that had suffered deletions ranging in size from 2-16 base pairs. In each case, deletions led to a change of reading frame. Furthermore, in two cases abnormalities in the MTS1/CDK4I gene were identical in cells derived from metastatic tumours as compared to cells derived independently from the corresponding primary tumour. The identical nature of mutations observed in primary tumours and metastases derived from the same patient provides strong evidence that inactivation of p16 function was an in vivo event.

Base Sequence↗

Substrate specificity for normal but not mutationally activated variants of src family kinases.

Although structural features and expression patterns of the src family of tyrosine kinases have been extensively analyzed, there are no direct comparative studies of the putative protein substrates that are tyrosine-phosphorylated by the normal cellular versions of these enzymes. In this report, we have expressed normal and enzymatically activated versions of the fyn, fgr, and src translational products by transfection of appropriate cDNAs into mouse fibroblasts. Because the same parental cell line was used for all transfections, each enzyme was expressed in a similar milieu of potential in vivo substrates. After verification of appropriate expression from each transfected cDNA and assessment of relative transforming potency, a series of putative protein substrates was specifically assayed for expression and tyrosine phosphorylation. Our data indicate that the normal src family kinases display some degree of substrate specificity but that specificity is diminished when these enzymes are constitutively activated. In the course of these studies, tyrosine-phosphorylated proteins were noted to coimmunoprecipitate with some of these putative in vivo substrates. Some of these coimmunoprecipitating proteins have been reported previously, whereas others, such as the presence of p59fyn in anti-p80/85 immunoprecipitates, are heretofore undescribed.

3T3 Cells↗

Isolation and identification of two proto-oncogene products related to c-fgr and fyn in a tyrosine-protein-kinase fraction of rat spleen.

TPK-III, a tyrosine-protein-kinase fraction previously isolated from rat spleen [Brunati, A. M. & Pinna, L. A. (1988) Eur. J. Biochem. 172, 451-457] has been further purified and resolved by Mono-Q FPLC into two homogeneous compounds, Q1 and Q2, with molecular mass approximately 52 kDa, exhibiting high specific activities for phosphate incorporation into the phosphoacceptor substrate poly(Glu80Tyr20) (1194 nmol.min-1 x mg-1 and 579 nmol.min-1 x mg-1, respectively). Both Q1 and Q2 appear to be scr-related enzymes since they are readily recognised by anti-SEEP serum raised against the highly conserved segment at positions 330-345 of p60c-scr. Q1, but not Q2, interacts with a specific antibody raised against the N-terminal segment of p55c-fgr. Microsequence analysis of tryptic fragments generated from Q1 revealed five peptides which exactly overlap the expected segments of p55c-fgr. Two of these peptides were not entirely conserved in any of the other src-related tyrosine protein kinases. A sixth fragment is very similar, albeit not identical, to the C-terminus of p55c-fgr. Microsequence analysis of two tryptic fragments from the other TPK-III fraction, Q2, provided the sequences FQILNSSE and LTTQETGYIPSNY, which are identical to two segments of fyn not entirely conserved in any of the other src-related tyrosine protein kinases. These results provide evidence that the spleen tyrosine-protein-kinase fraction, conventionally designated TPK-III, is composed of products from two proto-oncogenes, one of which corresponds to fyn, while the other is either identical or very closely related to c-fgr.

Amino Acid Sequence↗

Involvement of p72syk, a protein-tyrosine kinase, in Fc gamma receptor signaling.

Previous studies have demonstrated that multichain immune recognition receptors, such as the T-cell receptor, signal their occupancy by inducing tyrosine phosphorylation of cellular protein substrates. Type I and II receptors for the Fc portion of IgG are single-chain immune recognition receptors having external, transmembrane, and cytoplasmic domains. In the present study, we have investigated the possibility that, upon engagement, Fc gamma receptors induce protein-tyrosine phosphorylation. Our findings reveal increased phosphorylation of a number of proteins on tyrosine residues after cross-linking of either high (Fc gamma RI) or low (Fc gamma RII) affinity receptors expressed on HL60 cells. Engagement of Fc gamma RII induced rapid tyrosine phosphorylation that decayed to basal levels by 40 min. In contrast, phosphorylation induced by Fc gamma RI cross-linking was more delayed, peaking at 5-10 min, and returning to basal levels by 60 min. Kinase assays of cellular proteins immunoprecipitated from lysates of activated cells by antibody to phosphotyrosine revealed phosphorylation of a 72-kDa molecule that was not present in lysates of resting cells. This phosphoprotein was identified as p72syk by immunoprecipitation with antibodies directed against two different regions of the syk gene product. Immunoprecipitation with antibodies against p72syk followed by immunoblotting with anti-phosphotyrosine antibodies revealed an activation-dependent tyrosine phosphorylation of p72syk. Thus, our present findings demonstrate induction of protein-tyrosine phosphorylation following engagement of monomeric immune recognition receptors and identify p72syk as a tyrosine kinase substrate involved in signaling by Fc gamma RI and Fc gamma RII.

Cell Line↗

Activation of transforming G protein-coupled receptors induces rapid tyrosine phosphorylation of cellular proteins, including p125FAK and the p130 v-src substrate.

We have used the family of human muscarinic receptors (mAChRs) as a model for receptors coupled to G proteins and have shown that genes for certain mAChR subtypes can behave as potent agonist-dependent oncogenes. Furthermore, transforming mAChRs can transduce mitogenic signals in transfected NIH 3T3 cells. In this study, we show that in cells expressing ml mAChRs, the cholinergic agonist carbachol, induces a rapid and dose-dependent increase in tyrosine phosphorylation of cellular proteins which are different from those induced by PDGF. Interestingly, carbachol, but not PDGF, induces an increase in tyrosine phosphorylation of the p125FAK and p130 v-src substrates. Thus, growth promoting pathways activated by receptors coupled to G proteins might involve tyrosine phosphorylation of a small set of cellular proteins previously identified as substrates for oncogene-encoded tyrosine kinases.

1-Phosphatidylinositol 4-Kinase↗

High-affinity IgE receptor-mediated stimulation of rat basophilic leukemia (RBL-2H3) cells induces early and late protein-tyrosine phosphorylations.

We reported previously that stimulation of RBL-2H3 cells through the high-affinity IgE receptor resulted in tyrosine phosphorylation of a 72-kDa protein (pp72) that was coupled to signal transduction. In the present study, although pp72 tyrosine phosphorylation was induced only by antigen triggering, stimulation of RBL-2H3 cells by either antigen or the calcium-ionophore A23187 led to increased tyrosine phosphorylation of a 110-kDa protein (pp110). This tyrosine phosphorylated protein was also observed when RBL-2H3 cells were transfected with the G protein-coupled m3 muscarinic receptor and then stimulated to secrete with carbachol. In contrast to tyrosine phosphorylation of pp72, antigen-induced pp110 tyrosine phosphorylation required extracellular calcium, was absent in cells depleted of protein kinase C, and was detected between 1 and 5 min after stimulation. The protein-tyrosine kinase inhibitor genistein blocked both histamine release and tyrosine phosphorylation induced by A23187. Altogether, the data suggest a role for pp110 in secretion. However, protein kinase C activation induced pp110 tyrosine phosphorylation but not histamine release demonstrating that pp110 tyrosine phosphorylation alone is not sufficient for degranulation. We conclude that tyrosine phosphorylation of pp72 is associated with the early steps of IgE receptor-generated signaling, whereas pp110 tyrosine phosphorylation occurs secondary to calcium influx and protein kinase C activation.

Animals↗

Fc epsilon RI-induced protein tyrosine phosphorylation of pp72 in rat basophilic leukemia cells (RBL-2H3). Evidence for a novel signal transduction pathway unrelated to G protein activation and phosphatidylinositol hydrolysis.

Recently, we demonstrated that aggregation of the high affinity IgE receptor in rat basophilic leukemia (RBL-2H3) cells results in rapid tyrosine phosphorylation of a 72-kDa protein (pp72). Here we investigated the relationship of pp72 phosphorylation to guanine nucleotide-binding protein (G protein) activation and phosphatidylinositol hydrolysis. The activation of G proteins by NaF in intact cells or by guanosine 5'-O-(3-thiotriphosphate) in streptolysin O-permeabilized cells induced both phosphatidylinositol hydrolysis and histamine release without tyrosine phosphorylation of pp72. Similarly, in RBL-2H3 cells expressing the G protein-coupled muscarinic acetylcholine receptor, carbachol activated phospholipase C and induced secretion without concomitant pp72 phosphorylation. Therefore, pp72 phosphorylation was not induced by G protein activation or as a consequence of phosphatidylinositol hydrolysis. To investigate whether pp72 tyrosine phosphorylation precedes the activation of phospholipase C, we studied the effect of the tyrosine kinase inhibitor genistein. Preincubation of cells with genistein decreased, in parallel, antigen-induced tyrosine phosphorylation of pp72 (IC50 = 34 micrograms/ml) and histamine release (IC50 = 31 micrograms/ml). However, genistein at concentrations of up to 60 micrograms/ml did not inhibit phosphatidylinositol hydrolysis nor did it change the amount of the secondary messenger inositol (1,4,5)-triphosphate. Previous observations showed that there was no pp72 tyrosine phosphorylation after activation of protein kinase C or after an increase in intracellular calcium. Taken together, these results suggest that pp72 tyrosine phosphorylation represents a distinct, independent signaling pathway induced specifically by aggregation of the Fc epsilon RI.

3T3 Cells↗

Diverse biologic properties imparted by the c-fgr proto-oncogene.

The c-fgr proto-oncogene specifies a nonreceptor protein-tyrosine kinase, p55c-fgr, a member of the src family. In the present study, we have mutagenized c-fgr to mimic alterations found at the 3' end of the v-fgr oncogene and have investigated the biologic effects of normal and mutant p55c-fgr expression. Genes lacking 10 or 13 codons at the 3' end, as well as a gene encoding phenylalanine instead of tyrosine at codon 523, were potent oncogenes when transfected into NIH 3T3 cells. Specific enzymatic activities of the more highly transforming gene products were 3-4-fold greater than that of p55c-fgr. In vivo, the amount of tyrosine phosphorylation of cellular proteins was directly proportional to potency in focus-forming assays. These findings are the first to identify highly transforming mutations of the c-fgr proto-oncogene. The proto-oncogene was also active in transforming assays, demonstrably greater than that of a kinase-deficient mutant. Foci arising in c-fgr-transfected cultures expressed abundant enzyme that was normal by a number of criteria. In addition, growth rates for cells expressing p55c-fgr were restricted, as compared with cells expressing a kinase-deficient protein or cells transformed by proteins with high specific enzymatic activities. Thus, enzymatically active p55c-fgr can simultaneously activate transforming and growth inhibitory pathways.

3T3 Cells↗

Suramin, an experimental chemotherapeutic drug, activates the receptor for epidermal growth factor and promotes growth of certain malignant cells.

Previous studies have shown that suramin is capable of disrupting autocrine growth involving coexpression of platelet-derived growth factor and its receptors in a fibroblast model for mesenchymal oncogenesis. Suramin is currently in use as an experimental drug for the treatment of patients with epithelial cell tumors. In the present study, we have investigated the efficacy of suramin in a carcinoma model system. Our findings demonstrate that suramin enhances cell surface signaling in A431 cells by activating an autocrine loop involving the receptor for epidermal growth factor (EGFR). The mechanism of suramin action was shown to be indirect, not affecting the ability of ligand to bind and activate the EGFR. Instead, suramin induced the release of membrane-bound transforming growth factor alpha, thereby increasing its potential to activate cell surface EGFRs. Since suramin potently blocks tyrosine phosphorylation induced by platelet-derived growth factor but can activate the growth pathway regulated by the EGFR, biological responses of tumor cells to suramin treatment may differ dramatically.

Cell Division↗

Identification of distinct populations of PI-3 kinase activity following T-cell activation.

Activation of mature CD4+ T lymphocytes by antigen-presenting cells involves engagement of the CD3/T-cell antigen receptor complex along with the CD4 surface glycoprotein and the phosphorylation of cellular proteins on tyrosine residues leading to stimulation of a variety of cellular second-messenger systems. Several recent studies have implicated non-receptor protein tyrosine kinase of the src family, especially p56lck and p59fyn, in mediating at least a portion of these tyrosine phosphorylation events. In the present study we have examined the involvement of one type of second-messenger system, phosphatidylinositol-3 kinase (PI-3 kinase), in signal transduction during antibody-induced activation of normal resting human CD4+ T cells. We demonstrate that PI-3 kinase activity is increased following co-approximation of CD4 with the T-cell receptor and that PI-3 kinase activity co-precipitates with the CD4-p56lck complex. We also show that following T-cell activation a complex containing PI-3 kinase activity can be demonstrated in CD3 epsilon immunoprecipitates which is distinct from that which interacts with p56lck.

Antigens, Differentiation, T-Lymphocyte↗