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Assignment of the human gene for galactose-1-phosphate uridyltransferase to chromosome 9: studies with Chinese hamster-human somatic cell hybrids.

Chinese hamster-human somatic cell hybrids were analyzed for the expression of human galactose-1-phosphate uridyltransferase (GALT; UDPglucose:alpha-D-galactose-1-phosphate uridyltransferase, EC 2.7.7.12) by electrophoresis and for the presence of human chromosomes cytogenetically with the aid of Q-banding. Three of the 10 randomly chosen independently derived primary hybrid lines showed the presence of human GALT. Human chromosome 9 was consistently present in the hybrid lines expressing human GALT and consistently absent in the lines not expressing it. Biochemical analysis alone of 11 independently derived hybrid lines showed human GALT to be syntenic with known chromosome 9 markers (soluble aconitase, adenylate kinase 1, and adenylate kinase 3). Previous studies on chromosome assignment of this locus, utilizing somatic cell hybrids, have yielded inconsistent results; one group assigned GALT to chromosome 2, and another assigned it to chromosome 3. However, we believe that, based on our results and other published evidence, the correct assignment of the human GALT locus is to chromosome 9.

Alleles

Transfer of human chromosomes via human minisegregant cells into mouse cells and the quantitation of the expression of hypoxanthine phosphoribosyltransferase in the hybrids.

The behaviour of human cells arrested in mitosis can be severely perturbed so as to generate numerous small minisegregants containing very few chromosomes. These cells can be separated according to size and DNA content and fused with intact cells. In this paper we describe the production and some properties of proliferating cell hybrids generated by fusion of human minisegregant cells derived from a HeLa strain with mouse A9 cells deficient in hypoxanthine phosphoribosyltransferase (HPRT, EC 2.4.2.8). The hybrids were shown to contain up to 10 human chromosomes including a single X. Independently derived hybrid clones were quantitatively characterized and compared with the parental phenotypes with respect to HPRT. Human isozymes of each of the 3 enzymes HPRT, glucose-6-phosphate dehydrogenase (EC 1.1.1.49) and phosphoglycerate kinase (EC 2,7.2.3) were found. Tests to evaluate both structure and function of HPRT were utilized. The specific activity of HPRT of more than 10 hybrids tested was approximately 10% that of the HeLa parent. Structural characterization of HPRT from hybrid cells as evidenced by heat inactivation and electrophoretic mobility results in a 'human-like' phenotype. Functional characterization of parental HPRT results in kinetic constants for cofactor and substrate which do not permit distinction of human and of human and mouse enzymes; HPRT from the minisegregant hybrids had normal kinetic constants. The reduced specific activity of HPRT in the hybrids is discussed in terms of the inability of the mouse environment to regulate the full expression of the human structural gene.

Animals

Transfer of the human genes coding for thymidine kinase and galactokinase to Chinese hamster cells and human-Chinese hamster cell hybrids.

Cotransfer of two linked human genes, coding for the enzymes thymidine kinase (TK) and galactokinase (Gak) was demonstrated following incubation of Chinese hamster TK-deficient cells with isolated human chromosomes. The 5 colonies which were isolated all expressed a stable TK-positive phenotype. Cotransfer of the human genes coding for TK and Gak has also been observed in experiments in which isolated human chromosomes were incubated with TK-deficient human-Chinese hamster cell hybrids. These receipient hybrids had lost all human chromosomes at the time of incubation. From these experiments, four colonies were isolated, all expressing an unstable TK-positive phenotype. Using chromosome staining techniques, the presence of human chromosomes could not be demonstrated in either of the transformed clonal lines obtained with the Chinese hamster and the hybrid recipient cells. This indicates that incorporation of only the fragment of the human chromosome 17, bearing the genes for TK and Gak, has occurred in the recipient cells.

Galactose

Control of proliferation of human vascular endothelial cells. Characterization of the response of human umbilical vein endothelial cells to fibroblast growth factor, epidermal growth factor, and thrombin.

Because the response of human endothelial cells to growth factors and conditioning agents has broad implications for our understanding of wound healing angiogenesis, and human atherogenesis, we have investigated the responses of these cells to the fibroblast (FGF) and epidermal growth factors (EGF), as well as to the protease thrombin, which has been previously shown to potentiate the growth response of other cell types of FGF and EGF. Because the vascular endothelial cells that form the inner lining of blood vessels may be expected to be exposed to high thrombin concentrations after trauma or in pathological states associated with thrombosis, they are of particular interest with respect to the physiological role of this protease in potentiating cell proliferation. Our results indicate that human vascular endothelial cells respond poorly to either FGF or thrombin alone. In contrast, when cells are maintained in the presence of thrombin, their proliferative response to FGF is greatly increased even in cultures seeded at a density as low as 3 cells/mm2. Human vascular endothelial cells also respond to EGF and thrombin, although their rate of proliferation is much slower than when maintained with FGF and thrombin. In contrast, bovine vascular endothelial cells derived from vascular territories as diverse as the bovine heart, aortic arch, and umbilical vein respond maximally to FGF alone and neither respond to nor bind EGF. Furthermore, the response of bovine vascular endothelial cells to FGF was not potentiated by thrombin, indicating that the set of factors controlling the proliferation of vascular endothelial cells could be species-dependent. The requirement of cultured human vascular endothelial cells for thrombin could explain why the human cells, in contrast to bovine endothelial cells, are so difficult to maintain in tissue culture. Our results demonstrate that by using FGF and thrombin one can develop cultures of human vascular endothelial cells capable of being passage repeatedly while maintaining a high mitotic index. The stock cultures used for these studies have been passed weekly with a split ratio of 1 to 10 and are currently in their 30th passage. These cultures are indistinguishable from earlier passages when examined for the presence of Weibel-Palade bodies or Factor VIII antigen. We conclude that the use of FGF and thrombin can prevent the precocious senescence observed in most human endothelial cells cultures previously described.

Animals

Fate of human lactoferrin and myeloperoxidase in phagocytizing human neutrophils: effects of immunoglobulin G subclasses and immune complexes coated on latex beads.

Human neutrophils (PMN) degranulated in response to soluble human immune complexes and to myeloma proteins, including subclasses of immunoglobulin G (IgG)1, IgG2, IgG3, and IgG4 coated on 1.09-mum latex beads. Immunochemical measurement of lactoferrin (LF) from specific granules and myeloperoxidas (MPO) from azurophil granules showed that both classes of granule degranulated. Beads with soluble complexes of human anti-pigeon IgG-normal pigeon IgG, prepared from serum of a patient with pigeon breeders disease, induced significantly greater degranulation than did pigeon IgG-coated beads. Up to 40% of LF in the PMN degranulated during phagocytic challenge and 86% of that entered the extracellular fluid. Twenty to 30% of the MPO degranulated, but less than 50% of that entered the extracellular fluid. The degranulated LF and MPO which remained in the PMN were recovered from phagocytic vacuoles. Beads coated with purified human myeloma proteins (12 different ones, three of each subclass) induced degranulation in the order IgG3 greater than IgG1 greater than IgG2 greater than IgG4; however, these differences were found to be a function of the amount of latex ingested. Thus, the amount of degranulation was dependent more on the opsonizing capacity of the immunoglobulins rather than on their intrinsic capacities for inducing degranulation. Degranulation of both LF and MPO in response to IgG subclasses followed patterns similar to those caused by soluble immune complexes, and IgG3 coated on beads caused degranulation equal to that caused by human complex-coated beads. Degranulation to IgG3 and IgG4 was uninfluenced by fresh compared with heat-inactivated human AB serum. This was true although IgG3 beads fixed greater than sixfold more complement than did IgG4 beads. Evidently human IgG subclasses enhance phagocytosis and degranulation of human PMN. The overwhelmingly extracellular degranulation of LF in response to various bead coating suggest that it subserves a major protion of it role outside PMN.

Animals

Contribution of human somatomedin activity to the serum growth requirement of human skin fibroblasts and chick embryo fibroblasts in culture.

Although purified human somatomedins and related peptides have been shown to stimulate growth-related processes in cultured human skin fibroblasts, it is unknown whether the serum macromolecules required for the routine growth of human fibroblasts in culture include the somatomedins. To evaluate this question we have obtained sera from five GH-deficient patients before and after GH treatment and have compared these pre- and post-GH sera for their ability to stimulate [3H]thymidine incorporation into DNA and cell multiplication in the patients' own fibroblasts in culture. Subconfluent human fibroblasts demonstrated a dose-dependent increase in thymidine incorporation and cell number when exposed to human sera. Pre- and post-GH sera were equipotent. Partial purification of somatomedin activity by boiling sera at pH 5.5 diminished the level of thymidine incorporation to 10-20% of the level achieved with unboiled sera but did not unmask a difference between pre- and post-GH sera. In contrast to the results in human fibroblasts, boiled post-GH sera were 2- to 5-fold more potent than pre-GH sera in stimulating thymidine incorporation in chick embryo fibroblasts. Mixing experiments failed to demonstrate inhibition of thymidine incorporation by boiled pre-GH sera. Boiled post-GH sera also were twice as active as boiled pre-GH sera in stimulating multiplication of chick embryo fibroblasts and confirmed that thymidine incorporation reflected DNA synthesis. GH added directly to chick embryo fibroblasts did not stimulate thymidine incorporation. We conclude that despite the presence of specific receptors for somatomedin-like peptides on human skin fibroblasts, somatomedins are not a major component of the serum macromolecules required for the routine growth of human fibroblasts in culture. In contrast, in chick embryo fibroblasts, somatomedins do appear to constitute an important part of the serum macromolecules supporting cell growth.

Animals

Similarity between a kininogenase (kallikrein) from human large intestine and human urinary kallikrein.

A human colon kininogenase (kallikrein) was isolated by gel filtration on Sephacryl S-200 and affinity chromatography on Trasylolbound Sepharose, yielding a material with a specific activity of 1.3 U/mg (substrate: AcPheArgOEt). The molecular weight of the enzyme as estimated by gel filtration is approximately 70 000. After reduction with mercaptoethanol two bands were obtained in dodecyl sulfate eletrophoresis with molecular weights of 27 000 and 70 000. The bimolecular velocity constant for the inhibition by diisopropyl fluorophosphate was determined as 4 l x mol-1 x min-1. The preparation was characterized by immunological and enzymatic methods. Using the radioimmumoassay for human urinary kallikrein cross-reactivity and parallel binding curves were obtained. Kinin liberation from human high Mr-kininogen was totally inhibited by antibodies directed against human urinary kallikrein. Trasylol and diisopropyl fluorophosphate, but not by antibodies directed against human trypsin and plasma kallikrein. The effect on dog blood pressure was comparable to that obtained with human urinary kallikrein. The amino acid composition of human large intestine kallikrein is very similar to that of human urinary kallikrein.

Animals

Antigenic determinants common to established human B-cell lines, but not shared by human T-cell lines (molt and sommer).

Rabbits were immunized with two kinds of human B-cell lines (SOMMER-B, and RPMI number 1788 cells) to get anti-B-cell sera. Sera were absorbed with human red blood cells, human liver, human brain and human T cells (MOLT-4 and SOMMER-T cells). Cytotoxicity of absorbed sera was not only tested against B cells which were used for immunization but also tested against unrelated B cells, including B35M cells derived from Burkitt lymphoma specimens. Results indicated that established human B cells had antigenic determinants which were shared with allogeneic human B cells, but not shared with non-lymphoid cells or tissues, nor with extablished human T cells.

Absorption

A gene (Bevi) on human chromosome 6 is an integration site for baboon type C DNA provirus in human cells.

Human VA-2 cells infected with baboon type C virus were cloned and fused to Syrian hamster cells, and 33 primary hybrid colonies were obtained. These cells segregated human chromosomes and retained the complete hamster genome. Assays for type C viral p30 antigen and reverse transcriptase were performed in conjunction with analyses of 30 gene-enzyme systems representing 22 different human chromosomes. The results comfirmed that a gene, Bevi, previously assigned to human chromosome 6, dominantly controls baboon type C virus expression in hybrid cells. Representative hybrid colones were studied by nucleic acid hybridization techniques for the presence of integrated proviral DNA using complementary 3H-DNA transcripts of the baboon viral RNA genome. For each of 12 clones examined, there was a concordance between the presence of human chromosome 6, the presence of baboon type C proviral DNA sequences and virus expression. Clones which segregated chromosome 6 as judged by isozyme and karyological analyses lost detectable proviral DNA sequences and failed to produce virus. No syntenic association between the replication of baboon virus and the presence of 21 other human chromosomes was deteced. We conclude that Bevi is a preferred integration site for the baboon type C provirus in the human genome.

Animals

Presence in normal human testes of a chorionic-gonadotropin-like substance distinct from human luteinizing hormone.

The high rate of human chorionic gonadotropin production by testicular tumors caused us to investigate the possibility that normal human testes contain small amounts of that substance. Extracts of human testes obtained at autopsy demonstrated parallel inhibition curves to the human chorionic gonadotropin standard in a radioimmunoassay specific for the hormone. The immunoreactive material was adsorbed onto concanavalin A, a reaction characteristic of glycoproteins, and was eluted within the chorionic gonadotropin range on Sephadex G-100 column chromatography. Solubilized receptor proteins for the hormone could not be identified in the extracts. The demonstration that the normal human testes contain a glycoprotein similar or identical to human chorionic gonadotropin suggests that the fetal genome responsible for production of the hormone during pregnancy is not completely suppressed in the adult. Excessive productton of this glycoprotein may account for the high levels of human chorionic gonadotropin reported in the serum of patients with germ-cell tumors of the testes.

Adult

Comparison of the stimulatory effects of ovine, porcine and human follicle-stimulating hormone and of ovine and human luteinizing hormone on the accumulation of cyclic AMP by porcine granulosa cells.

The effects of ovine, porcine and human FSH, and ovine and human LH on the accumulation of cyclic AMP by porcine granulosa cells obtained from follicles at various stages of maturation were investigated. During incubation periods of 15 min, 10 micrograms ovine FSH pretreated with antiserum to LH or 10 micrograms human FSH resulted in an 11- to 18-fold, five- to ninefold, and less than a twofold increase in intracellular accumulation of cyclic AMP by granulosa cells from small (1--2 mm), medium (3--5 mm) and large (6--12 mm) follicles respectively. Similar patterns of response occurred with addition of porcine FSH. After incubation for 30 and 60 min with ovine, porcine or human FSH, significant accumulation of cyclic AMP in the incubation medium occurred with cells obtained from small and medium-sized follicles. After 60 min of incubation with FSH the accumulation of cyclic AMP in the incubation medium exceeded the intracellular cyclic AMP levels in granulosa cells from small and medium-sized follicles. During incubation periods of 15 min, 1.0 micrograms ovine LH resulted in less than a twofold, a fourfold and greater than a tenfold increase in intracellular accumulation of cyclic AMP by granulosa cells from small, medium and large follicles respectively. Addition of human LH brought about a similar response. Incubation periods of 30 and 60 min with 1.0 micrograms ovine or human LH resulted in significant accumulation of cyclic AMP in the incubation medium by granulosa cells from large follicles; cyclic AMP content in the incubation medium was greater after 60 min compared with 30 min of incubation. It was concluded that ovine FSH pretreated with an antiserum to LH had similar effects on cyclic AMP levels as did purified human and porcine FSH, and that the stimulatory effects of the less pure ovine FSH were probably not due to an impurity in the FSH preparation. Porcine granulosa cells obtained from small follicles should be suitable as an in-vitro FSH bioassay while granulosa cells obtained from large follicles should be suitable as an in-vitro LH bioassay.

Animals

Appearance of IgG (Fc) receptor(s) on cultured human fibroblasts infected with human cytomegalovirus.

Cultured human diploid fibroblasts (WI-38) after infection with human cytomegalovirus (CMV) but not when uninfected, could hemadsorb sheep red blood cells (SRBC) coated with rabbit anti-SRBC IgG. The adsorption of IgG-coated SRBC to virus-infected cells was completely abolished if the tests were carried out in the simultaneous presence of rabbit antiserum elicited against CMV. Normal sera of rabbit or human origin as well as purified human IgG but not Fab fragment of human IgG could also abolish the binding of sensitized SRBC to CMV-infected fibroblasts. Active metabolism on the part of CMV-infected fibroblasts proved to be an important requisite for demonstrating binding of sensitized SRBC to their surfaces. By using an indicator Staphylococcus aureus to which rabbit antiserum against normal human IgG, IgM, or IgA was bound via Fc fragments, evidence has been obtained which suggests the existence of receptor(s) on CMV-infected WI-38 cells that react specifically with Fc region of human IgG.

Animals

Establishment and characterization of a human cancer cell line that produces human colony-stimulating factor.

A human colony-stimulating factor (CSF) producing cell line, T3M-1, has been established from explant cultures of a human squamous cell carcinoma of the oral cavity that secretes human CSF. It has been continously propagated during the past 15 months. The cells grew in a monolayered sheet with about 17 hr of population-doubling time and showed a colony-forming capacity with about 5% plating efficiency. The cells exhibited an epithelioid morphology resembling the structure of the original tumor, and they showed "tumor takes" when inoculated into nude mice. Karyotypic analysis revealed the cell line to be a human aneuploid one with a hypotriploid mode, including the Y-chromosome(s) and at least 10 common markers. T3M-1 cells possess the characteristic function of human CSF production in vitro, and a marked neutrophilia was observed in nude mice bearing the tumors produced by inoculation with the T3M-1 represents a new human cell line that secretes human CSF.

Animals

Reactivity of anti-human brain serum with human lymphocytes.

Specific anti-human T-cell serum was prepared in rabbits by multiple subcutaneous injections of human brain homogenates in incomplete Freund's adjuvant. The serum was exhaustively absorbed with human RBCs, lyophilized human liver, lyophilized normal human serum, and peripheral blood lymphocytes from patients with chronic lymphocytic leukemia (CLL). Specificity of the antiserum for human T lymphocytes was tested by indirect immunofluorescence. It stained 70 to 80% of lymphocytes in circulation, 95% of thymus, 27 to 35% of spleen, 5 to 10% of tonsil lymphocytes, and over 90% of phytohemagglutinin-stimulated lymphocytes in vitro. Only T-dependent areas of cryostat-sectioned human lymph nodes stained with the antiserum. It did not stain circulating lymphocytes which formed HEAC rosettes, plasma cells in marrows of multiple myeloma patients or macrophages. After removal of HEAC rosettes by centrifugation in Ficoll-Hypaque, 75% of interface cells formed E rosettes and 65 to 75% stained with the antiserum. The antiserum was used in studies of lymphocytes in chronic and acute lymphocytic leukemias, lymphomas, and other lymphoproliferative diseases. Numbers and distribution in the circulation, spleen and nodes of lymphocytes bearing the T marker were significantly altered in patients with these disorders.

Antilymphocyte Serum