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Characterization of mouse mammary tumor viruses from primary tumor cell cultures. II. Biochemical and biophysical studies.

Primary mammary tumor cultures of RIII, GR, DD, BALB/c, and BALB/cfC3H mice were examined for mouse mammary tumor virus (MuMTV) production. Levels of production of 12-32 mug virus protein/day/75-cm2 culture flask could be maintained for 30-50 days with daily virus harvests. The viruses from tumor cell cultures of these mouse strains contained DNA polymerase with a strong preference for Mg++ over Mn++ as the divalent cation, a characteristic of DNA polymerase of MuMTV from mouse milk. These viruses from tumor cell cultures were excellent sources of MuMTV 3H-complementary DNA (complexed to 60-70S RNA) and radioactive 60-70S RNA, sufficiently free of contaminating murine leukemia virus nucleic acids, that can be used in molecular hybridization experiments. The effects of several culture parameters on MuMTV production were also studied.

Cells, Cultured

Mixed lymphocyte--tumor cell culture reaction in cancer patients.

To measure immunological reactivity or recognition of tumor antigens, mixed lymphocyte--tumor cell culture reaction (MLTR) was studied using a micromethod. The peripheral lymphocytes of cancer patients were mixed in vitro with autochthonous tumor cells that had been irradiated with 60Co at a dose of 6,000 rad just before use. The lymphocyte blastogenic response was estimated by the incorporation of 3H-thymidine in the acid-insoluble fraction and expressed as counts per minute. The stimulation index equal to or greater than 2.0 was arbitrarily expressed as positive blastogenic response in the present experiment. Positive blastogenic responses to autochthonous tumor cells were observed in 10 of 34 patients with various solid tumors. The intensity of blastogenic response to tumor cells was correlated with that of the non-specific responses to PHA (r=0.4732, P less than 0.01). These results indicated that non-self tumor-associated antigens, which could induce in vitro blastogenic response of autologous lymphocytes, were present in some part of human tumors.

Adult

Glycoproteins from human colonic adenocarcinoma. Isolation and characterization of cell surface carcinoembryonic antigen from a cultured tumor cell line.

Alterations in cell surface glycoproteins have been implicated in malignancy. We examined surface membrane proteins of a cultured cell line, SKCO-1, which had been derived from a human colonic adenocarcinoma. Cell surface labeling of SKCO-1 cells with galactose oxidase, followed by reduction with sodium borotritide, revealed five major labeled glycoproteins upon sodium dodecyl sulfate (SDS)-polyacrylamide gel electrophoresis. At least three additional labeled glycoproteins could be detected if galactose oxidase treatment was preceded by neuraminidase treatment. Some, but not all, of the glycoproteins could be iodinated by lactoperoxidase. The predominantly labeled glycoprotein (GPI) had a molecular weight of 200,000 and co-migrated in SDS gel with carcinoembryonic antigen (CEA). GPI was not removed from the cell surface by EDTA, hypertonic saline, or sonication but was released from the membrane by detergents. This glycoprotein was subsequently purified using lectin-agarose columns and gel filtration. GPI was judged homogenous by protein- and carbohydrate-stained SDS-polyacrylamide gels and had an amino acid composition similar to that of CEA. The carbohydrate composition of GPI was qualitatively similar to CEA but quantitatively distinct. GPI had a greater proportion of sialic acid and galactosamine and less fucose and glucosamine than CEA. Immunological studies, however, demonstrated identity between GPI and CEA. A study of the turnover rate of GPI showed it to have a half-life of 5 days.

Adenocarcinoma

Affinity isolation of cultured tumor cells by means of drugs and hormones covalently bound to glass and Sepharose beads.

Isoproterenol, corticotropin (ACTH), and triodothyronine immobilized on glass and Sepharose beads by diazotization procedures have been shown to interact with cultured tumor cells of "target tissue" origin. Cells used were rat glioma cells (C6), rat adrenal tumor cells (Y-1), and rat pituitary tumor cells (GH3). The rat glioma cells bound principally to immobilized isoproterenol, whereas the rat adrenal tumor cells bound to immobilized corticotropin, and rat pituitary tumor cells bound to immobilized triiodothyronine. Binding was inhibited by preincubation of the cells in soluble drug or hormone. With C6 cells there was a positive correlation between adenylate cyclase [ATP pyrophosphate-lyase (cyclizing, EC 4.6.1.1] stimulation and the degree of binding to the immobilized isoproterenol. Norepinephrine, bound through the ethanolamine side chain via an amide linkage, did not bind cells, demonstrating specific structural requirements for drug-cell interactions. HeLa cells were shown to bind tightly to diphtheria toxin coupled to Sepharose beads via an amide bond. This binding was inhibited by prior incubation of the Sepharose toxin with purified antitoxin. Toxin bound to Sepharose via an azo bond did not bind cells. These data suggest that the cell affinities are due to cell surface receptors interacting with the immobilized drugs and hormones, and that the observed affinities possibly reflect the relative receptor complement of these cells.

Adrenal Gland Neoplasms

Unexpectedly low incorporation of isotopic acetate into lipids of Ehrlich ascites tumor cells cultured in lipid-poor medium.

The present communication reports data on the lipid biosynthesis of Ehrlich ascites tumor cells grown in culture media supplemented with modified sera. Whereas the metabolisms of [14C]pyruvate and [14C]mevalonate are identical in all media tested, the incorporation of [14C] acetate is higher in medium with dialyzed serum than in medium with delipidized serum; it is suppressed in the absence of all lipids in culture medium. Cellular integrity is not impaired in modified media. The results indicate that acetyl-CoA synthetase of Ehrlich ascites tumor cells is not regulated by exogenous lipids as is known to be the case in nonmalignant cells.

Acetate-CoA Ligase

Steroidogenesis and extracellular cAMP accumulation in adrenal tumor cell cultures.

ACTH stimulated steroidogenesis and cAMP (adenosine 3',5'-monophosphate) accumulation in an adrenocortical mouse tumor cell line (clone Y1) with Kd values which differed by more than one order of magnitude (5.2 X 10(-11) M and 7 X 10(-10) M, respectively). All of the cAMP formed in response to added ACTH appeared extracellularly in 5- or 30-min incubations. ACTH, at 5 and 10 muU/ml, stimulated steroidogenesis to 25% and 40% of maximum activity; and increased the extracellular accumulation of cAMP 1.4-fold and 2.3-fold, respectively. The effects of ACTH appeared to be via an action on intracellular ATP, specific for cAMP and dependent on an ACTH-sensitive adenylate cyclase system. These observations indicate that ACTH increases cAMP accumulation in Y1 cells at virtually all steroidogenic concentrations and suggest that cAMP is an essential component of ACTH-stimulated steroidogenesis.

Adenosine Diphosphate

Anomalous reactions of mouse alloantisera with cultured tumor cells. I. Demonstration of widespread occurrence using reference typing sera.

M0use alloantisera produced against different specificities of the K, I, and D regions of the H-2 gene complex reacted as immunogenetically anticipated with normal lymphoid target cells of different haplotypes in cytotoxicity and indirect immunofluorescence tests. These same alloantisera, however, produced anomalous positive reactions when tested on cultured MCA-induced sarcoma cells from B10 background H-2 congenic mice. Absorption experiments demonstrated that the anomalous activity in these sera was directed against a tumor membrane antigen(s) which was distinct from H-2 region specificities against which the reference alloantisera were produced, and which was shared in common by multiple cultured sarcoma lines. Similar anti-tumor antibody activity could be demonstrated in the serum of older (greater than 12 weeks) but not younger normal unimmunized mice of the strains used as recipients for alloantiserum production. It is suggested that the observed anamalous anti-tumor activity in these alloantisera may be due to the presence of antibodies reactive with envelope antigens of murine leukemia virus which are expressed on sarcoma cells maintained in culture.

Animals

Anomalous reactions of mouse alloantisera with cultured tumor cells. II. Cytotoxicity is caused by antibodies to leukemia viruses.

Certain alloantisera prepared in mice against H-2 region membrane antigens were found to be unexpectedly cytotoxic for murine sarcoma and leukemia cells in culture. This anomalous cytotoxicity was shown to be the result of antibody in these alloantisera directed against the p15 and gp70 envelope proteins of Mu LV which were present on the surface of the tumor target cells. Sera from aged unimmunized mice of strains used for the preparation of alloantisera also contained antibodies against MuLV protein p15 and gp70 that were cytotoxic for sarcoma and leukemia cells, which indicates that these antibodies occurred naturally in mice. These results independently confirm earlier findings of the widespread occurrence in mouse serum of antibodies reactive with MuLV. The presence of antibody against MuLV in mouse serum which can cause cytotoxic reactions with tumor cells points to the fact that particular caution should be used during the typing of murine sarcomas or leukemias for cell surface antigens, since mouse antisera may yield cytotoxicity (or other serologic reactions) based on anti-MuLV specificities, rather than on anticipated antigens.

Animals

Potentiation of the cytotoxic action of melphalan and "activated" cyclophosphamide against cultured tumor cells by centrophenoxine.

Centrophenoxine, without antitumor activity itself, enhanced the cytotoxic action of melphalan and "activated" cyclophosphamide against mouse P388 lymphoma and rat W256 carcinosarcoma cells growing in static suspension culture. The concentration of alkylating agent required for 99% cell-kill was approximately halved when centrophenoxine was also present during exposure to the antitumor drug. Maximum potentiation by centrophenoxine of the cytotoxic action of melphalan occurred when cells were exposed to the two agents simultaneously; little or no potentiation was observed when cells were exposed to centrophenoxine before or after exposure to the alkylating agent.

Animals

Acanthamoeba royreba sp. n. from a human tumor cell culture.

A new species of Acanthamoeba was isolated from a culture of an established line of human choriocarcinoma cells. The identification of this strain, originally called the Oak Ridge strain, and the establishment of a new species for it were based on morphologic, serologic, and immunochemical studies. In general, the structure of the trophozoite did not differ significantly from that of other species of Acanthamoeba, except that a body which more closely resembled a centriole than material described previously as centriolar satellites was observed in trophozoites examined with the electron microscope. The dimensions of the trophozoite were the smallest among the species of Acanthamoeba. The cyst was typical of the genus, but differed from those of other species by its smaller size and the presence of numerous ostioles. Studies of the Oak Ridge strain by immunofluorescence using antisera developed against the isolate and Acanthamoeba culbertsoni, A. castellanii, A. polyphaga, A. rhysodes, A. astronyxis, and A. palestinensis revealed the antigenic uniqueness of the Oak Ridge strain. It was demonstrated by immunoelectrophoretic analyses of the soluble proteins of the Oak Ridge strain that shared approximately 1/2 of its antigenic structure with A. castellanii and A. culbertsoni. The antigenic differences of the isolate from other species of Acanthamoeba were deduced from comparison of the antigenic constitution of these species and the Oak Ridge strain with A. culbertsoni and A. castellanii. Although the strain was initially recognized by its cytopathogenicity for cultures, it did not produce acute infections in mice after intranasal inoculation of 1 X 10(4) ameba/mouse. The foregoing results constituted the basis for the establishment of the Oak Ridge strain as a new species, A. royreba sp. n., in the genus Acanthamoeba.

Amoeba

[Effect of ftorafur and 5-fluorouracil on the chromosomes of human tumor cell cultures].

The effect of two antitumour drugs, ftorafur (Ft) and 5-fluorouracil (5-FU) on chromosomes of human tumour cells (strain CA-1) was studied in vitro. Since no data on the karyotype of this tumour strain had been published, the chromosome set of the model was investigated at first. Significant quantitative and structural divergence from the normal human male karyotype were observed. Steam line cells contained 47-49 chromosomes, including 9 permanent markers. No Y-chromosome was revealed. Ft and 5-FU hardly injured the chromosomes of CA-1 cells; the level of aberrant metaphases reached 94%. Chromatid deletions and gaps formed the major part of drug-induced cytogenetic abnormalities.

Cells, Cultured

Immunosuppression induced by "toxohormone" from mouse tumor cells in culture.

Tumor culture toxohormone (TCT) obtained from cultures of MBQA mouse tumor cells, a line derived from a methylcholanthrene-induced fibrosarcoma (CBA/J origin), suppressed the mitogenic responsiveness of mouse spleen cells (PHA, LPS) as well as the antibody formation to SRBC in vitro. The immunosuppressive activity of toxohormone was readily inactivated by heating at 100 degrees C or treatment with trypsin, but not by DNase and RNase treatment.

Animals

Hormone sensitivity of gynecological tumor cells in tissue culture.

Proliferating tumor cells obtained from ovarian, mammary, and endometrial tumors in tissue culture were tested for the influence of proteohormones and steroid hormones on cellular DNA synthesis and cell growth. The gonadotropic hormones stimulated DNA synthesis of ovarian tumor cells by single administration, or in combination with cortisol, up to the 11-fold of the comparable controls. The hormone sensitivity of the cell lines was variable, resulting in individual reaction patterns. There was no correlation to the histological diagnosis of the primary tumors with respect to the grade of differentiation. The results suggest that ovarian tumor cells in tissue culture can maintain sensitivity to organotropic hormones. Compared to the ovarian carcinoma lines, mammary or endometrial tumor cells did not respond to a similar extent. Progesterone decreased DNA synthesis of endometrial carcinoma cells.

Breast Neoplasms

Comparison of histocompatibility antigens on cultured human tumor cells and fibroblasts by quantitative antibody absorption and sensitivity to cell-mediated cytotoxicity.

Human tumor and febroblast tissue culture cells were compared to determine the suitability of fibroblasts as control cells in experiments on human tumor serology and cellular immunology. Fibroblasts expressed the same HL-A antigen profile as did melanoma cells. Furthermore, the quantitative expression of the determinants was similar on both cell types. In four of five pairs tested, the fibroblasts displayed similar sensitivity to effector cells generated by mixed lymphocyte culture as did the tumor cells from the same donor, but there were some differences in the effects of specific alloimmune effector cells at high and low effector-to-target ratios on the two types of target cells. Results indicated that fibroblasts are legitimate control target cells for studies in human tumor immunology, if screening assays are done to verify their antigenicity and sensitivity to cell-mediated cytolysis.

Antigen-Antibody Reactions