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Biomedical subjects

H Hanafusa

Publications and source records attributed to H Hanafusa.

At least 109 records · Page 6Linked to original sources

Activation of c-Src in cells bearing v-Crk and its suppression by Csk.

The protein product of the CT10 virus, p47gag-crk (v-Crk), which contains Src homology region 2 (SH2) and 3 (SH3) domains but lacks a kinase domain, is believed to cause an increase in cellular protein tyrosine phosphorylation. A candidate tyrosine kinase, Csk (C-terminal Src kinase), has been implicated in c-Src Tyr-527 phosphorylation, which negatively regulates the protein tyrosine kinase of pp60c-src (c-Src). To investigate how c-Src kinase activity is regulated in vivo, we first looked at whether v-Crk can activate c-Src kinase. We found that cooverexpression of v-Crk and c-Src caused elevation of c-Src kinase activity, resulting in an increase of tyrosine phosphorylation of cellular proteins and morphological transformation of rat 3Y1 fibroblasts. v-Crk and c-Src complexes were not detected, although v-Crk bound to a variety of tyrosine-phosphorylated proteins in cells overexpressing v-Crk and c-Src. Overexpression of Csk in these transformed cells caused reversion to normal phenotypes and also reduced the level of c-Src kinase activity. However, Csk did not cause reversion of cells transformed by v-Src or c-Src527F, in which Tyr-527 was changed to Phe. These results strongly suggest that Csk acts on Tyr-527 of c-Src and suppresses c-Src kinase activity in vivo. Because Csk can suppress transformation by cooverexpression of v-Crk and c-Src, we suggest that v-Crk causes activation of c-Src in vivo by altering the phosphorylation state of Tyr-527.

Animals↗

The SH2- and SH3-containing Nck protein transforms mammalian fibroblasts in the absence of elevated phosphotyrosine levels.

We have established the human nck sequence as a new oncogene. Nck encodes one SH2 and three SH3 domains, the Src homology motifs found in nonreceptor tyrosine kinases, Ras GTPase-activating protein, phosphatidylinositol 3-kinase, and phospholipase C-gamma. Overexpression of human nck in 3Y1 rat fibroblasts results in transformation as judged by alteration of cell morphology, colony formation in soft agar, and tumor formation in nude BALB/c mice. However, overexpression of nck does not induce detectable elevation of the phosphotyrosine content of specific proteins, as is observed for v-crk, another SH2/SH3-containing oncogene. Despite this fact, we demonstrate that Nck retains the ability to bind tyrosine phosphorylated proteins in vitro, using a fusion protein of Nck with glutathione-S-transferase (GST). Moreover, when incubated with lysates prepared from v-src-transformed 3Y1 cells or the nck-overexpressing cell lines, GST-Nck binds to both p60v-src and serine/threonine kinases, respectively. Although phosphotyrosine levels are not elevated in the nck-expressing fibroblasts, vanadate treatment of these cells results in a phosphotyrosine pattern that is altered from the parental 3Y1 pattern, suggestive of a perturbation of indigenous tyrosine kinase pathways. These results suggest the possibility that human nck induces transformation in 3Y1 fibroblasts by virtue of its altered affinity or specificity for the normal substrates of its rat homolog and that Nck may play a role in linking tyrosine and serine/threonine kinase pathways within the cell.

Adaptor Proteins, Signal Transducing↗

The product of the cellular crk gene consists primarily of SH2 and SH3 regions.

We have cloned and sequenced a complementary DNA encoding the cellular homologue of the transforming oncogene v-crk of avian sarcoma virus CT10. This complementary DNA contains an open reading frame of 915 base pairs that encodes a polypeptide of 305 amino acids. The first 205 amino acids of this c-Crk protein were identical to those of the CT10 encoded v-Crk protein, with the exception of 5 amino acids. Like v-Crk, this portion of c-Crk contained one each of the Src homology domains SH2, SH2', and SH3. The 100 carboxy-terminal amino acids of c-Crk protein, which are not coded for in the CT10 viral genome, contain another SH3 region. We found limited sequence homology between c-crk and the avian retrovirus genome, which explains recombination events in the transduction of this protooncogene. Using a polyclonal antiserum made against bacterially expressed v-crk, we identified a 35-kilodalton protein in normal chicken embryo fibroblasts and in all embryonic chicken tissues examined. This 35-kilodalton protein was indistinguishable from a polypeptide made by in vitro translation of c-crk complementary DNA.

Amino Acid Sequence↗

The v-src inducible gene 9E3/pCEF4 is regulated by both its promoter upstream sequence and its 3' untranslated region.

The 9E3/pCEF4 mRNA is strongly induced in Rous sarcoma virus-transformed chicken embryo fibroblasts when compared to untransformed cells. To identify cis-acting transcriptional elements that confer inducibility by v-src, we isolated the 9E3 promoter upstream region. We found that 1.53 kilobases upstream of the transcriptional start site, when placed in front of a reporter gene, conferred a small degree of inducibility by v-src, in both transient and stable transfections. Two potential AP-1 sites were identified in the 9E3 promoter. AP-1 elements have been implicated previously in mediating a transcriptional response to v-src in fibroblast cell lines. These elements alone do not confer a significant inducibility by v-src in primary chicken embryo fibroblasts. Since the 9E3 mRNA is stabilized in transformed cells, we replaced the 3' untranslated region of the reporter gene with the 9E3 3' untranslated region and found this construct to be strongly responsive to stimulation by v-src. In addition, the 9E3 3' untranslated region increased the response to serum and the tumor promoter phorbol 12-myristate 13-acetate. This suggests that a posttranscriptional mechanism plays a major role in the induction of 9E3 expression.

Animals↗

Event-related potentials in senile dementia of Alzheimer's type, multiinfarct dementia and Parkinson's disease.

We investigated event-related potentials (P300) in three types of demented patients. Fourteen patients with senile dementia of Alzheimer's type (SDAT), 15 with multiinfarct dementia (MID), 8 with Parkinson's disease with dementia and 29 normal controls participated in this study. We measured the latencies of N100 and P300 at Pz after odd-ball paradigm stimulation. N100 peaks were within the normal range in all patients. However, P300 peaks were significantly delayed in all demented patients. There were no statistical differences in the mean latencies of P300 in each demented group. P300 latencies were found to be negatively correlated with Hasegawa's dementia scale. These results suggest that regardless of its cause dementia has similar influences on the P300 latency and P300 may be a useful means to assess the degree of dementia.

Aged↗

Deletions in the SH2 domain of p60v-src prevent association with the detergent-insoluble cellular matrix.

p60v-src has been shown to associate with a detergent-insoluble cellular matrix containing cytoskeletal proteins, but p60c-src does not bind to this matrix. We analyzed the association of mutant src proteins with the matrix and found that mutants which lack an amino-terminal portion (residues 149 to 169) of the SH2 domain cannot bind to the matrix. Neither the SH3 region nor other portions of the SH2 region were required for association. We also tested protein kinase-defective mutants and chimeras of p60v-src and p60c-src. We found a strong correlation between the kinase activity of p60src and its association with the detergent-insoluble matrix. Double infection of kinase-defective and kinase-active mutants did not result in matrix binding of the kinase-defective src proteins. We also found that Tyr-416, the major site of autophosphorylation in p60v-src, was not required for matrix association.

Amino Acid Sequence↗

Identification of domains of the v-crk oncogene product sufficient for association with phosphotyrosine-containing proteins.

The oncogene product of the avian sarcoma virus CT10, P47gag-crk, contains the SH2, SH2', and SH3 domains and binds proteins in a phosphotyrosine (ptyr)-dependent manner. In this study, we have determined the region of P47gag-crk essential for binding to ptyr-containing proteins. Mutant P47gag-crk proteins expressed in Escherichia coli that have the intact SH2 and SH2' regions retained the capacity to bind ptyr-containing proteins obtained from cells transformed by crk and src. The deletion of SH2 resulted in the loss of binding activity. Other mutants that have altered SH2 or SH2' bound few, if any, of the ptyr-containing proteins. Those mutants that bound ptyr-containing proteins associated with tyrosine kinase activity. We also found that polypeptides containing SH2, SH2', and SH3 of p60v-src and p60c-src associated with ptyr-containing proteins from crk-transformed cells. Thus, the SH2 and SH2' domains of P47gag-crk are responsible for their binding to ptyr-containing proteins.

Animals↗

Requirement of phosphatidylinositol-3 kinase modification for its association with p60src.

When purified p60v-src was mixed with lysates of chicken embryo fibroblasts and immunoprecipitated with anti-Src antibody, phosphatidylinositol (PI)-3 kinase activity was found to be present in the Src protein immunoprecipitates. The level of bound PI-3 kinase activity was 5 to 10 times higher in lysates obtained from cells transformed by the src, fps, or yes oncogene than in lysates of uninfected cells. This increase in associated PI-3 kinase activity appears to be due to increased binding of this enzyme to p60v-src. This change most likely resulted from tyrosine phosphorylation of PI-3 kinase or an associated protein, since the PI-3 kinase activity that can bind to p60v-src was depleted by antiphosphotyrosine antibody. Binding of PI-3 kinase did not require either p60src protein kinase activity or autophosphorylation of p60v-src tyrosine residues. Furthermore, binding was markedly decreased by deletions in the N-terminal SH2 region but unchanged by deletion of the C-terminal half of p60v-src containing the catalytic domain. Taking these data together, it appears that PI-3 kinase or its associated protein is phosphorylated on tyrosine and that the phosphorylated form can bind to the N-terminal half of p60v-src, which contains the SH2 domain.

1-Phosphatidylinositol 4-Kinase↗

Phosphatidylinositol-3 kinase is activated in v-src, v-yes, and v-fps transformed chicken embryo fibroblasts.

PI-3 kinase activity has been shown to associate with p60v-src. We found that immunoprecipitates of p60v-src exhibit an activity that catalyzes the formation of PI-3-P, PI-3,4-P2 and PIP3 from PI, PI-4-P, and PI-4,5-P2, respectively. Transformation of chicken embryo fibroblasts (CEF) by p60v-src of Rous sarcoma virus (RSV) caused elevation of PI-3-P, PI-3,4-P2, and PIP3, suggesting that the PI-3 kinase may be activated in these cells. Similar elevations were seen in cells transformed with the v-yes or v-fps oncogenes, but not with v-ros or v-ras. We have established also a system that allows the binding of PI-3 kinase to purified p60v-src in vitro, reproducing the binding seen in vivo. This assay indicated that more PI-3 kinase activity binds to purified p60v-src in cell lysates from CEF transformed with v-yes or v-fps, suggesting that some modification or over-expression of PI-3 kinase takes place in these cells.

1-Phosphatidylinositol 4-Kinase↗

c-yes protein kinase is associated with a 38 kD protein in cerebellum.

p62c-yes, the protein product of the yes proto-oncogene, was found in association with a cellular protein of 38 kD in chicken cerebella. The complex was detected by immunoprecipitation of cerebellar membranes with affinity purified anti-yes IgG followed by in vitro phosphorylation of the immunocomplex. Both proteins were found to be phosphorylated exclusively on tyrosine. The sedimentation profile of the yes kinase indicated that a fraction of p62c-yes was complexed with the 38 kD protein and comigrated in the gradient with a molecular mass of approximately 150 kD. We have previously described the association of p60c-src with a 38 kD protein, referred to as p38 [Grandori, C. and Hanafusa, H., J. Cell Biol. (1988), 107: 2125-2135]. Comparison of the src-associated p38 with the yes-associated 38 kD protein indicates that they are indistinguishable by one-dimensional peptide mapping. Association of p38 with more than one member of the src-family of tyrosine kinases makes this protein an attractive probe to study the structural and functional aspects of these enzymes.

Animals↗

Purification and characterization of P47gag-crk expressed in insect cells.

The crk oncogene product, P47gag-crk, was expressed and purified using a baculovirus expression system. Approximately 2-10 mg of P47gag-crk was produced in 10(9) insect cells infected with a recombinant baculovirus. Partially purified P47gag-crk was obtained by precipitation in a low salt buffer and gel filtration. A better purification of P47gag-crk was achieved by immunoaffinity chromatography, resulting in a single band by Coomassie Blue staining. The insect cells expressing P47gag-crk showed an increase in protein-phosphotyrosine content, which is a characteristic feature of crk-transformed cells. Moreover, like P47gag-crk produced in chicken or rat cells, P47gag-crk produced in insect cells associated in vitro with a tyrosine kinase and its substrates from Crk-3Y1 cells. Peptide mapping of P47gag-crk expressed in insect, rat, and chicken cells showed that similar sites were phosphorylated in these proteins. These data suggest that P47gag-crk expressed in insect cells is functional and will be useful for the further analysis of this protein.

Animals↗

Binding of transforming protein, P47gag-crk, to a broad range of phosphotyrosine-containing proteins.

Although the oncogene product of CT10 virus, P47gag-crk, does not itself phosphorylate proteins at tyrosine residues, it elevates phosphotyrosine in transformed cells. The P47gag-crk oncoprotein contains SH2 and SH3 domains, which are conserved in several proteins involved in signal transduction, including nonreceptor tyrosine kinases. P47gag-crk bound in vitro to phosphotyrosine-containing proteins from crk-transformed cells and from cells transformed by oncogenic tyrosine kinases. The association between P47gag-crk and p60v-src, a phosphotyrosine-containing protein, was abolished by dephosphorylation of p60v-src. This suggests that the SH2 and SH3 regions function to regulate protein interactions in a phosphotyrosine-dependent manner.

Animals↗

Serum independence of transcription from the promoter of an avian retrovirus in v-src-transformed cells is a primary, intracellular effect of increased tyrosine phosphorylation.

We found that transcription from the promoter in the long terminal repeat of Rous sarcoma virus in rat 3Y1 cells is dependent on the presence of serum in the culture. However, this serum dependence of transcription was relieved when 3Y1 cells were transformed by the oncogene v-src. Crossfeeding experiments showed no evidence for the production of a serum-substituting extracellular growth factor by the transformed cells. Using 3Y1 cells transformed with temperature-sensitive Rous sarcoma virus, we showed that the tyrosine kinase activity of pp60v-src was responsible for the serum-sparing effect on the level of RNA expressed from the viral promoter. Sodium orthovanadate, an inhibitor of phosphotyrosine phosphatases that nonspecifically elevates the level of phosphotyrosine-containing proteins in cells, stimulated transcription from the viral promoter. The effects of both pp60v-src and orthovanadate were resistant to cycloheximide. These results suggest that the serum independence of transcription from the viral promoter in v-src-transformed cells was probably due to the constitutive activation of intracellular growth-factor pathways by the tyrosine kinase activity of pp60v-src.

Animals↗

Association of the v-crk oncogene product with phosphotyrosine-containing proteins and protein kinase activity.

An antiserum specific for P47gag-crk, the oncogene product of avian sarcoma virus CT10, was used to investigate possible crk-binding proteins. In in vitro kinase assays, four proteins were phosphorylated in anti-crk immunoprecipitates. Tyrosine, serine, and threonine residues were phosphorylated. A number of tyrosine-phosphorylated proteins were identified in anti-crk immunoprecipitates of 32P-labeled cells, including the three major phosphotyrosine-containing proteins of CT10-infected cells. These three proteins also bound to bacterially synthesized crk protein. These results suggest that the crk transforming protein can stably associate with both endogenous kinases and cellular kinase substrates.

Animals↗

Serum and v-src increase the level of a CCAAT-binding factor required for transcription from a retroviral long terminal repeat.

Transcription from the long terminal repeat (LTR) of Rous sarcoma virus (RSV) in rat 3Y1 fibroblasts was dependent on the presence of serum. Within 1 hr after addition of serum to a serum-deprived culture, there was a fivefold increase in the level of transcripts initiated at the LTR. This stimulation did not require synthesis of new proteins. The induction of transcription by serum was mostly dependent on two CCAAT boxes in the LTR. Within 1 hr after addition of serum, there was also an increase in the level of a nuclear protein that bound to the two CCAAT boxes, even in the presence of cycloheximide. This serum-induced CCAAT factor also bound CCAAT sequences from other promoters, for example, those of human heat shock protein 70, human c-Ha-ras, and human histone 1, but not to the adenovirus origin of replication or the SV40 enhancer core sequence, suggesting that it was related to CP1 or CP2. Expression from the RSV LTR was not dependent on serum in v-src-transformed cells. Using temperature-sensitive v-src, it was shown that the tyrosine kinase activity of the oncogene increased the amount of CCAAT factor that was present in the nucleus. These findings demonstrate that a basal transcription factor, the CCAAT-binding factor, could be a second messenger for transducing a primary signal from serum to the cellular transcriptional apparatus. This also suggests a pathway by which a tyrosine kinase oncogene could influence the transcription of several genes in the nucleus.

Animals↗

Association of p62c-yes with polyomavirus middle T-antigen mutants correlates with transforming ability.

A number of mutants of polyomavirus middle T antigen (MTag) were constructed into replication-competent avian retroviruses. To assess the ability of these MTag variants to transform and to associate with the avian p60c-src and p62c-yes proto-oncogene products, we used these viruses to infect chicken embryo fibroblasts. We found that the ability of individual mutant MTags to associate with p62c-yes correlated well with the ability of these mutants to transform, as has been previously shown for the association of MTag with p60c-src. All transformation-competent mutant MTags retained the ability to complex with p62c-yes. Two transformation-defective mutants, RX67 and RX68, which could weakly associate with p60c-src, were unable to associate with p62c-yes.dl1015, a transformation-defective mutant which could associate with p60c-src and with a phosphatidylinositol kinase activity, was also able to associate with p62c-yes. Therefore, some as yet unmeasured biochemical property is defective in this mutant.

Animals↗

Mutagenic analysis of the v-crk oncogene: requirement for SH2 and SH3 domains and correlation between increased cellular phosphotyrosine and transformation.

We have constructed a series of mutants with deletion, linker insertion, and point mutations in the v-crk oncogene of avian sarcoma virus CT10. The v-crk gene contains no apparent catalytic domain, but does contain two blocks of homology to putative regulatory domains, termed SH2 and SH3, found in a variety of proteins implicated in signal transduction. Infection with CT10 causes a dramatic increase in the level of tyrosine phosphorylation of several cellular proteins. We found that mutation of either the SH2 or SH3 domain of v-crk reduced or eliminated transforming activity, whereas mutation of regions outside the conserved domains had no effect. Deletion of amino-terminal gag sequences caused a partial loss of transforming activity and a change in subcellular distribution of the crk protein. In all cases, there was an absolute correlation between increased cellular phosphotyrosine and transformation.

Animals↗