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Propagation of globin DNAase I-hypersensitive sites in absence of factors required for induction: a possible mechanism for determination.

We tested whether DNAase I-hypersensitive sites, once induced, can be propagated to daughter cells in the absence of the original inducer. Chicken embryo fibroblasts infected with a temperature-sensitive Rous sarcoma virus at 41 degrees C and then shifted to 36 degrees C become transformed and begin to transcribe globin RNA. DNAase I-hypersensitive sites appear in the alpha- and beta-globin chromatin domains. Neither transcription nor hypersensitive sites are detected in cells infected and maintained at 41 degrees C. Activation of the globin hypersensitive sites occurs within 30 min of a temperature shift to 36 degrees C and does not require new protein synthesis. To test for the self-propagation of these hypersensitive structures, we inactivated the v-src gene product by a shift back up to 41 degrees C, and allowed the cells to divide 20 times at 41 degrees C. Although transcription of the globin genes was minimal after this treatment, the DNAase I-hypersensitive sites remained. The same sites can be induced by NaCl shock of cells. After the cells are returned to normal medium and allowed to grow for 20 doublings, the hypersensitive sites remain. This suggests that once formed, DNAase I-hypersensitive sites have the capacity to template their own structure independent of the initial "inductive" event. The single-stranded character of these DNAase I-hypersensitive sites could explain these results.

Animals↗

Antibody-mediated polysome precipitation as a method for the size determination of viral mRNA species: viral envelope glycoprotein mRNA of avian sarcoma viruses.

A method was developed that allows the in situ isolation of viral mRNA, i.e. from polysomes of infected cells. This was achieved by precipitating intact polysomes via their nascent virus polypeptides using virus-specific antibodies. As a model, antibodies to the major envelope glycoprotein (gp85) of avian sarcoma viruses were employed to precipitate those polysomes from infected cells which synthesized the corresponding p70 virus glycoprotein precursor. Normal immunoglobulin and polysomes from uninfected chicken embryo fibroblasts served as controls. The radioactivity labelled mRNA from antibody-precipitated polysomes could subsequently be extracted and characterized for size. It was found that avian sarcoma virus gp85 envelope glycoprotein is predominantly synthesized by a 22--28 s viral mRNA. In addition, minor amounts of gp85-specific mRNAs of 16--21 s and 28--35 s could be demonstrated. The data indicate the presence in polysomes of viral mRNA species coding for i) gp85 only (16--21 s RNA), ii) gp85 and pp60src protein from the adjacent src-gene (22--28 s RNA), and iii) a large viral precursor protein (28--35 s RNA).

Animals↗

Growth inhibitory factor diffusing from chick embryo fibroblasts.

Density-dependent inhibition (DDI) of growth is assumed to be the result of diffusion in the medium of growth inhibitory molecules. In this work, we demonstrate the presence of inhibitory molecules (IDFc: chicken inhibitory diffusible factor) in the medium of chick embryo fibroblasts (CEF) cultures. IDFc partially purified by Bio-Gel P150 chromatography followed by reverse phase FPLC. The dose-response curve showed that 250 ng/ml IDFc inhibited 50% DNA synthesis. IDFc was also able to inhibit the growth of sparse cultures of CEF; this inhibition was reversible. IDFc was unable to prevent the DNA synthesis in cells transformed by v-src gene expression. These results suggest that IDFc is involved in the DDI of CEF growth.

Animals↗

Curcumin regulates signal transducer and activator of transcription (STAT) expression in K562 cells.

Signal transducers and activators of transcription (STATs) play important roles in numerous cellular events as for example differentiation, inflammation or immune response. Furthermore, constitutive STAT activation can be observed in a high number of tumors. In our hands, curcumin treatment induced a decrease of nuclear STAT3, -5a and -5b, without affecting neither STAT1, nor the phosphorylation state of STAT1, -3 or -5 in the K562 cell line. Most interestingly, the decrease of nuclear STAT5a and -5b after curcumin treatment was accompanied by an increase of truncated STAT5 isoforms, indicating that curcumin is able to induce the cleavage of STAT5 into its dominant negative variants lacking the STAT5 C-terminal region. Interferon (IFN)-beta and -gamma treatment induced IFN-stimulated responsive element (ISRE) transcriptional activity, which was efficiently inhibited by curcumin pre-treatment. In parallel, IFN-gamma treatment induced an increase of the amount of nuclear STAT1 and -3, as well as their phosphorylated isoforms. Again, curcumin pre-treatment inhibited these increases. Finally, curcumin treatment inhibited Jak2 mRNA expression as well as cyclin D1 and v-src gene expression in K562 chronic leukaemia cells.

Antineoplastic Agents↗

Specific increase in thymidine transport at a permissive temperature in the rat kidney cells infected with srcts-Rous sarcoma virus.

Thymidine transport was found to be increased two-fold at a permissive temperature in the cells of a normal rat kidney (NRK) line which was infected with a temperature-sensitive Rous sarcoma virus. This increase in thymidine transport was independent of cell density and coincided with the changes in cellular morphology that result from this temperature shift. A double reciprocal plot of the data demonstrated two saturable components (Km values of 60 microM and 250 microM at 39 degrees, non-permissive temperature) of the uptake of thymidine, and the drop of temperature (at 33 degrees, the permissive temperature for transformation) decreased Km to one half, but did not change Vmax. These results indicate that a qualitative alteration of thymidine transport took place in the presence of the active src gene product.

Animals↗

Chemotactic factor induced tyrosine phosphorylation of membrane associated proteins in rabbit peritoneal neutrophils.

Protein tyrosine phosphorylation in rabbit peritoneal neutrophils was examined by immunoblotting with antibodies specific for phosphotyrosine. Two tyrosine phosphorylated proteins were found with apparent molecular weights of 62,000 (p62) and 125,000. Both were enriched in the membrane fraction. Stimulation of the neutrophils with chemotactic factor fMet-Leu-Phe (10(-8)M, 20 sec) but not phorbol 12-myristate-13-acetate (0.1 microgram/ml, 10 min) caused rapid increase in tyrosine phosphorylation. The effect of fMet-Leu-Phe was inhibited by the pretreatment of neutrophils with pertussis toxin. The p62 protein was also recognized by antibody raised against a synthetic fragment commonly found in the tyrosine kinases of the src gene family. The results indicate that stimulation of the tyrosine phosphorylation of membrane associated proteins is one of the early events occurring in activated neutrophil and this stimulation of tyrosine phosphorylation may be regulated by a GTP-binding protein.

Animals↗

Primer tRNA(Trp) of RSV-transformed or RAV-1-infected cells up-regulates the antiribosomal activity of gelonin.

Some ribosome-inactivating proteins (RIPs) with RNA-N-glycosidase activity on 28S rRNA require, for maximal inactivation of ribosomes, the presence of tRNA. tRNA(Trp) specifically up-regulates gelonin, the RIP from Gelonium multiflorum. The same tRNA is the primer of the reverse transcriptase of Rous sarcoma virus (RSV) and of its mutant (RAV-1) which lacks the src gene. Here we demonstrate that gelonin is more active in inhibiting endogenous protein synthesis by lysates of RSV-transformed or RAV-1-infected cells and that such increase in activity correlates with the increased amount of primer tRNA(Trp) in the cells.

Animals↗

The U3 region of the long terminal repeat of a subgroup A transformation-defective rous sarcoma virus (tdPH2010) converts a noncytopathic virus to a cytopathic virus.

The molecular basis of the cytopathic effects (CPE) of the transformation-defective avian retrovirus mutant, tdPH2010, was studied. tdPH2010 is a subgroup A virus isolated from the Schmidt-Ruppin (NY) subgroup A strain (SRA(NY)). Subgroup A avian retroviruses are generally considered noncytopathic. Integrated tdPH2010 was molecularly cloned from infected quail cells. A noncytopathic, transformation-defective control strain, BSU, was created by deleting the src gene from the molecularly cloned wild type SRA(NY) virus. Chimeras between tdPH2010 and BSU were constructed and viruses were recovered from transfected chick embryo fibroblasts. Growth curves of cells infected with chimeric viruses indicated that the long terminal repeat (LTR) of tdPH2010 converts BSU to a cytopathic virus. Nucleotide sequencing revealed two point mutations unique to tdPH2010 in the U3 region of LTR at positions -126 and -23 from the transcription start site. Both mutations were located inside or near the promoter/enhancer elements of U3. The mutation at -126 (G to T) converted one of the very well-conserved pentanucleotide repeat (PRE) motifs from GGTGG to GGTGT. The other at -23 (G to A) is located next to the TATA box. The G at this position is conserved in all other known avian retrovirus promoters.

Animals↗

Protein kinase C phosphorylation of the EGF receptor at a threonine residue close to the cytoplasmic face of the plasma membrane.

The receptor for epidermal growth factor (EGF) is a 170,000-180,000 molecular weight single-chain glycoprotein of 1,186 amino acids. Its sequence suggests that it has an external EGF-binding domain, formed by the NH2-terminal 621 amino acids, linked to a cytoplasmic region by a single membrane-spanning segment. In the cytoplasmic portion, starting 50 residues from the membrane, there is a 250-residue stretch similar to the catalytic domain of the src gene family of retroviral tyrosine protein kinases, and, indeed, a tyrosine-specific protein kinase activity intrinsic to the receptor is stimulated when EGF is bound. Increased tyrosine phosphorylation of cellular proteins, detected in A431 cells following EGF binding, may be important in the mitogenic signal pathway. Tumour promoters such as 12-O-tetradecanoyl-phorbol-13-acetate (TPA), counteract this increase, as well as causing loss of a high affinity class of EGF binding sites. The major receptor for TPA has been identified as the serine/threonine-specific Ca2+/phospholipid-dependent diacylglycerol-activated protein kinase, protein kinase C. By substituting for diacylglycerol, TPA stimulates protein kinase C. Protein kinase C phosphorylates purified EGF receptor at specific sites, and this reduces EGF-stimulated tyrosine protein kinase activity. TPA treatment of A431 cells increases serine and threonine phosphorylation of the EGF receptor at the same sites, which suggests that the reduction of EGF receptor kinase activity in TPA-treated cells is a consequence of the receptor's phosphorylation by the kinase. We have attempted to identify these phosphorylation sites and show here that protein kinase C phosphorylates threonine 654 in the human EGF receptor. This threonine is in a very basic sequence nine residues from the cytoplasmic face of the plasma membrane in the region before the protein kinase domain; it is thus in a position to modulate signalling between this internal domain and the external EGF-binding domain.

Amino Acid Sequence↗

Translational activation of the lck proto-oncogene.

The lck proto-oncogene, a member of the src gene family, encodes a lymphocyte-specific protein tyrosine kinase (p56lck) that is implicated in the pathogenesis of lymphoid neoplasia. We report here that 5' lck sequence elements, containing AUG codons, significantly reduce the in vivo efficiency of p56lck translation from the normal messenger RNA. This result provides a quantitative explanation for the overexpression of p56lck in two retrovirally-induced murine lymphomas that express abnormal lck transcripts from which the physiological 5' translational control region has been deleted and non AUG-containing viral sequences substituted. In contrast to other mammalian genes, most proto-oncogenes contain AUG codons 5' to the authentic initiation codon, suggesting that cells can regulate translational start sites in these mRNAs. Abrogation of translational control may be a general mechanism of proto-oncogene activation in malignancy.

Animals↗

Differential sensitivity of RSVts (temperature-sensitive Rous-sarcoma virus)-infected rat kidney cells to nucleoside antibiotics at permissive and non-permissive temperatures.

Among a variety of anti-tumour agents tested, oxanosine and 5-azacytidine were found to be significantly more effective in inhibiting growth of rat kidney cells infected with a temperature-sensitive mutant of Rous sarcoma virus at a permissive temperature (33 degrees C) than at a non-permissive temperature (39 degrees C). These two nucleoside antibiotics were antagonistic to each other in cytotoxicity. They seem to share the same carrier-mediated membrane-transport system, because dipyridamole, a potent inhibitor of nucleoside transport, protected cells from the cytotoxicity of both drugs. Thymidine transport, which is twice as fast in cells at 33 degrees C as at 39 degrees C, was competitively inhibited by both drugs. Thus the differential toxicity of oxanosine and 5-azacytidine at the two temperatures is thought to be due to their increased transport via the thymidine-transport system, which is somehow under the influence of the active src-gene product.

Animals↗

Cell-free synthesis of two proteins unique to RNA of transforming virions of Rous sarcoma virus.

We have utilized a reticulocyte lysate system to translate the 35S RNA of Rous sarcoma virus. Autoradiograms of the protein products separated on sodium dodecyl sulfate/polyacrylamide gels reveal a heterogeneous mixture of proteins of sizes ranging from 13,000 to 180,000 daltons. In comparing the translational products from 35S RNA of Prague B Rous sarcoma virus with those formed from the RNA of a transformation-defective deletion mutant derived from Prague B, we have found that two proteins, 25,000 and 18,000 daltons, are missing from the latter. Neither of these proteins is immunoprecipitated by monospecific antisera against the structural proteins of avian RNA tumor viruses. The combined atomic mass of 43,000 daltons corresponds to the amount of genetic coding capacity (40,000-50,000 daltons in terms of protein products) deleted from the RNA of the transformation-defective viruses. We propose that these proteins are coded for by the putative oncogene (onc) or sarc (src) gene and that one or both of them may be responsible for the oncogenic transformation caused by these viruses in infected cells.

Antigens, Viral↗

Reversion of transformed glycolysis to normal by inhibition of protein synthesis in rat kidney cells infected with temperature-sensitive mutant of Rous sarcoma virus.

Normal rat kidney cells infected with a temperature-sensitive mutant (LA23) of Rous sarcoma virus exhibit the transformed phenotype when grown at 33 degrees and the normal phenotype at 39 degrees. We have previously shown [Ash, J.F., Vogt, P.K. & Singer, S.J. (1976) Proc. Natl. Acad. Sci. USA 73, 3603-3607] that the addition of protein synthesis inhibitors to LA23-infected cells grown at 33 degrees causes them to revert, over a period of 12 hr, to the normal phenotype with respect to morphological and cytoskeletal characteristics. We now show that reversion of the metabolic characteristics of the transformed phenotype to those of the normal also occurs under these conditions. LA23-infected cells show an increased rate of aerobic glycolysis at 33 degrees compared to that at 39 degrees. They also show a different sensitivity of that rate to dinitrophenol and oligomycin at 33 degrees compared to 39 degrees. Such cells grown at 33 degrees in the presence of cycloheximide or abrin rapidly recover the aerobic glycolysis characteristics of the normal phenotype. These results support the thesis that transformation by the src gene of the Rous sarcoma virus is a pleiotypic and reversible process, such as is involved in a pleiotypic enzymic modification reaction and its reversal.

Aerobiosis↗

In vitro isolation of stable rat sarcoma viruses.

A Sprague-Dawley (SD-1) rat embryo culture, at low passage level, released an endogenous ecotropic type C virus (SD-RaLV) and after about 20 further passages it underwent spontaneous transformation. The SD-RaLV, released from the transformed cells, did not cause rapid transformation of other rat embryo cells. However, when the transformed cells were repeatedly cocultivated with three different chemically transformed and serially transplanted rat tumor cell lines (sarcoma, carcinoma, and hepatoma), rapidly fibroblast-transforming "sarcoma" viruses (RaSV) were recovered after each attempt. RaSV was not recovered from one of these tumor cell lines before transplantation, nor could focus-forming virus be rescued from these same tumor cells by cocultivation with other cells releasing heterologous type C viruses. Foci were induced on normal rat kidney and several other rat embryo cell strains within 7-15 days and both productive and nonproductive NRK clones were derived. The productive clones were positive for rat specific p30 antigen and the RaSVs released were serially transmitted to other rat embryo cells. RaSV genome was rescued from the nonproductive clones by superinfection with SD-RaLV, wild rat type C virus, and several heterologous type C viruses. These observations appear to represent naturally occurring transformation-specific (src) genes being recovered in vitro in the form of stable "sarcoma" viruses. These viruses differ from the Kirsten and Harvey strains of murine sarcoma virus in that they apparently contain no MuLV sequences and are of purely rat origin.

Animals↗

Homology exists among the transforming sequences of avian and feline sarcoma viruses.

Fujinami sarcoma virus (FSV) of chickens does not contain nucleotide sequences related to the src gene of Rous sarcoma virus, but it carries unique sequences of at least 3000 bases, which are likely to code for the transforming protein of this virus. Using radioactive DNA complementary to FSV-unique sequences, we investigated the relatedness of FSV to other sarcoma-leukemia retroviruses in vertebrates. Under conditions of moderate stringency, no cross-hybridization was detected between FSV cDNA and RNAs of Rous sarcoma virus, Y73 avian sarcoma virus, several representative avian acute leukemia viruses, or Abelson murine leukemia virus. This cDNA, however, did hybridize with RNA of PRCII sarcoma virus of chickens to the extent of 56%. In addition, FSV cDNA was found to hybridize with RNAs of Gardner-Arnstein and Snyder-Theilen strains of feline sarcoma virus to the extent of 27% and 19%, respectively, but not with RNA of McDonough feline sarcoma virus. Studies on thermal denaturation of hybrids showed that the melting temperatures of the heteroduplexes of the FSV cDNA with RNAs of PRCII and Gardner-Arnstein feline sarcoma virus were 7 degrees C and 12 degrees C lower, respectively, compared with the melting temperature of the homologous hybrid of FSV, and suggested less than 10% mismatching in both heteroduplexes. These results indicate that nucleotide sequences closely related to at least a part of FSV-unique sequences are present in the genomes of other sarcoma viruses obtained in chickens and in cats.

Alpharetrovirus↗

Differential effects of transforming avian RNA tumor viruses on avian macrophages.

Functionally differentiated chicken macrophages were derived by in vitro differentiation of embryonic yolk sac cells and were characterized by several macrophage-specific cell markers. Uniform, infected, virus-producing cultures were obtained after exposure of these macrophages to avian myoblastosis virus (AMV), avian myelocytomatosis virus (MC29), myeloblastosis-associated virus (MAV-2), and Prague strain of Rous sarcoma virus (PR-B RSV). Both AMV and MC29 induced morphological transformation typical of the in vivo leukemias induced by these virus strains. Analysis of the expression of macrophage-specific markers in these two transformed cell types demonstrated that different markers of the mature macrophage were suppressed by each virus, even though the parental cell immediately preceding the transformation event was a mature macrophage in both cases. Cells infected with PR-B RSV and MAV-2 showed no observable difference from uninfected macrophages in terms of morphological characteristics, growth rate, or expression of the differentiated functions of macrophages. Ths system provides demonstrations of a cell type that produces infectious, transforming RSV but fails to respond by functional alterations induced by the transforming gene, src.

Acid Phosphatase↗

Platelet-derived growth factor stimulates tyrosine-specific protein kinase activity in Swiss mouse 3T3 cell membranes.

Platelet-derived growth factor (PDGF) stimulates the incorporation of 32P from [gamma-32P]ATP into a Mr approximately 170,000 protein by an endogenous tyrosine-specific protein kinase in membrane preparations of Swiss mouse 3T3 cells. Epidermal growth factor (EGF), but not fibroblast growth factor (FGF) or insulin, stimulates limited incorporation of 32P into a protein of similar molecular weight. The ligand concentration required for half-maximal activity (S0.5) for PDGF stimulation of phosphorylation is 50 ng/ml; saturation is achieved at 300 ng/ml. The S0.5 for ATP is 15 microM. Mg2+ or Mn2+ is required for protein kinase activity. Stimulation of PDGF results in the preferential phosphorylation of tyrosine residues in this Mr approximately 170,000 membrane protein. The Mr approximately 170,000 protein can be resolved into Mr approximately 180,000 and 160,000 components in 4% NaDodSO4 gels. PDGF stimulates 32P incorporation preferentially into the Mr approximately 180,000 and less extensively into the Mr approximately 160,000 protein. EGF stimulates 32P incorporation predominantly into a protein of Mr approximately 160,000. The similarity of PDGF and EGF in stimulating phosphotyrosine-specific protein kinase activity and the stimulation of a similar activity by viral transformation (src) genes suggest that a common mechanism may exist for the phenotypic expression of increased DNA synthesis and cell growth stimulated by these separate factors.

Animals↗

src- and fps-containing avian sarcoma viruses transform chicken erythroid cells.

We report here that several oncogene-transducing avian sarcoma virus strains, namely Rous sarcoma virus (src), Fujinami sarcoma virus (fps), and PRCII (fps), transform avian erythroid cells in vitro and in vivo. The src- and fps-transformed erythroblasts grow in vitro for 20-30 generations, require special growth conditions, and tend to differentiate spontaneously. In these properties, they resemble erythroid cells transformed with the erbB-containing H strain of avian erythroblastosis virus (AEV-H) but differ from those transformed with AEV-ES4 (erbA, erbB), which grow under standard culture conditions and rarely differentiate spontaneously. Erythroblasts transformed with viruses carrying temperature-sensitive mutations in the src or fps oncogene and then shifted to the nonpermissive temperature in the presence of anemic serum (as a source of an erythropoietin-like factor) differentiate terminally into erythrocytes. These results demonstrate that several members of the src gene family other than erbB have the capacity to transform erythroid cells.

Animals↗