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C M Bunce

Publications and source records attributed to C M Bunce.

At least 55 records · Page 3Linked to original sources

Evidence that precursor cells of monocytes and B-lymphocytes are closely related.

Various data in the literature suggest that progenitor cells of monocytes and B cells are closely related. In this study we have investigated this notion by using two-dimensional gel electrophoresis patterns of total cellular phosphoproteins to assess the similarity and thus the close relationships between erythroid, granulocyte, monocyte, and B-lymphocyte cell lines that typify immature cells of these lineages. In previous studies, six proteins had been identified whose constitutive phosphorylation correlated with the capacity of HL60 variant cell lines to differentiate towards either neutrophils (four proteins) or monocytes (two proteins). The presence or absence of five of these phosphoproteins in autoradiographs obtained for the pre-B-cell lines Nalm6 and SMSB showed that the pre-B-cell lines most closely resembled lines able to differentiate towards monocytes (HL6015-12, HL60M2, U937, and ML-1) as opposed to lines restricted to neutrophil (HL60Ast3) or erythroid differentiation (K562). The K562 phosphoprotein pattern resembled that obtained for HL60Ast3. Progressive changes in the constitutive phosphorylation of the five proteins were observed suggesting that cells that have acquired the potential for either neutrophil, monocyte, or B-cell differentiation have initially diversified in a linear progressive manner. This observation supports a model for hemopoiesis that suggests that, during progenitor cell development, differentiation potentials are expressed individually in the above order. Two additional phosphoprotein spots were found to be restricted to the pre-B-cell lines. These phosphoproteins, together with those that change their intensity in autoradiographs of erythroid, myeloid, and B-cell lines, suggest that protein phosphorylation plays an important role during cell diversification.

B-Lymphocytes↗

A rapid procedure for isolating hemopoietic cell nuclei.

A new method for isolating cell nuclei is described which involves freezing and thawing cells in 2% Tween 40, then gentle homogenization to release nuclei, followed by immediate microcentrifugation through 50% sucrose. Purified nuclei were obtained in 3 min and yields of 78-95% were obtained from a variety of human hemopoietic cells. Electron microscope analysis of nuclei obtained from HL60 cells showed that 89% of the nuclei were intact and have an appropriate morphology. A low level of contamination with other organelles was revealed by electron microscopy and by using specific assays for plasma membrane, mitochondria, lysosomes, Golgi membrane, and endoplasmic reticulum (0.5-5.5%). The value of the technique is that nuclear proteins and small metabolites which might be lost by rapid leakage from isolated nuclei and the possibility of biochemical modification of cellular constituents are minimized by using a rapid isolation procedure.

Cell Fractionation↗

Near neighbour analysis of variant cell lines derived from the promyeloid cell line HL60.

The human promyeloid cell line H60 can be induced to differentiate towards either neutrophils or monocytes. Variant cell lines, derived from HL60, which show reduced capacities for neutrophil and monocyte differentiation can be arranged in a developmental sequence which suggests that the potentials for neutrophil and monocyte differentiation are expressed sequentially by HL60 cells in this order. Analysis of the patterns of total cellular phosphoproteins within HL60 and 5 variant cell lines, by two-dimensional gel electrophoresis, has identified 6 distinct phosphoproteins which show progressive differences in the intensity of spots between the variant lines. The changes in these phosphoproteins relate to the position of the lines within the proposed development sequence. Similarly, lines placed close together in the sequence are more similar, as regards phosphoprotein profiles, than lines placed far apart. These studies provide direct evidence in favour of the hypothesis that the potentials for neutrophil and monocyte differentiation are expressed sequentially during myelopoiesis. Furthermore, two phosphoprotein spots were found to be restricted to lines able to differentiate towards monocytes. These proteins may play important roles during commitment to monocyte differentiation.

Bone Marrow Cells↗

The development of cell lineages: a sequential model.

The concept of cell lineage and the empirical characterization of specific lineages provide valuable insight into the problems of developmental biology. Of central interest is the decision-making process that results in the diversification of cell lines. Studies of the haemopoietic system, in which stem cells can be committed to one of at least six pathways of differentiation, have suggested that the restriction of differentiation potentials is a progressive and stochastic process. We have recently proposed an alternative model which hypothesizes that lineage potentials during haemopoiesis are expressed individually and in a predetermined sequence as progenitor cells mature. The model first arises from experimental studies which show that both normal myeloid progenitor cells and a human promyeloid cell line, which are able to differentiate towards either neutrophils or monocytes, express these potentials sequentially in culture. The close linear relationship between other haemopoietic progenitor cells is inferred from collective data from studies of bipotent progenitor cells and of haemopoietic proliferative disorders. If the development of haemopoietic cell lineages shows a tendency to follow a particular program, such a mechanism is likely to operate throughout development. In this paper we consider the evidence in favour of programmed events within progenitor cells implementing diversification, and the implications of predetermined and restricted pathways of embryonic development.

Animals↗

Characterization of a novel nuclear envelope protein restricted to certain cell types.

The monoclonal antibody AGF2.3 identifies a nuclear envelope protein that is restricted to certain cell types. In particular, this antigen shows a reduced level of expression during haemopoietic cell maturation. In this study, we have examined the relationship of this protein to known nuclear envelope proteins that have a similar molecular mass. Antigen extraction and immunoelectron microscope studies revealed that the AGF2.3 protein is an integral membrane protein present at both the inner and outer aspects of the nuclear envelope. The protein is not associated with nuclear pores and therefore is distinct from pore complex proteins. The AGF2.3 protein does not have ATPase activity. Therefore, this protein is also distinct from a myosin heavy chain-like ATPase that is associated with the nuclear envelope. The AGF2.3 antibody identifies a novel nuclear envelope protein. Further studies of the biochemical nature of the AGF2.3 protein should provide insight into novel cellular processes at the nuclear envelope relating to the lineage or maturation status of cells.

Antibodies, Monoclonal↗

Changes in insulin receptor expression in HL60 cells induced to differentiate towards neutrophils or monocytes.

HL60 is a human promyeloid cell line capable of differentiating towards monocytes or granulocytes when treated with appropriate agents. Changes in insulin receptor number, affinity and mRNA levels were observed when HL60 cells were induced to differentiate with 12-O-tetradecanoyl-phorbol-13-acetate (TPA) or dimethylsulphoxide (DMSO). Total and high-affinity insulin receptor numbers decreased following treatment of HL60 cells with DMSO, whereas total insulin receptor number increased and high-affinity receptor number decreased in cells treated with TPA. Three distinct insulin receptor mRNA species of 9.1, 6.3 and 2.8 kb were identified in HL60 cells. The larger 9.1 and 6.3 kb species were increased in both TPA- and DMSO-treated HL60 cells, and the 2.8 kb mRNA was reduced in differentiated cells. Thus HL60 cells differentiated towards monocytes or granulocytes showed similar changes in the levels of individual insulin receptor mRNAs, but displayed contrasting alterations in low-affinity insulin binding. Three HL60 variant lines, which have different capacities to respond to inducers of monocyte and neutrophil differentiation, showed similar levels of total insulin receptors, but differed in their expression of high-affinity receptors. The data provide evidence for the existence of two distinct insulin receptors.

Blotting, Northern↗

Cathepsin B synthesis by the HL60 promyelocytic cell line: effects of stimulating agents and anti-inflammatory compounds.

Cathepsin B synthesis by the human HL60 promyelocyte cell line was investigated by immunohistochemistry and by the assay of the enzyme in cell lysates using a fluorimetric substrate. HL60 cells were shown to produce cathepsin B in response to treatment with 12-O-tetradecanoylphorbol 13-acetate (TPA). Intracellular levels of cathepsin B and immunohistochemical staining of the enzyme were related to time in culture with increasing concentrations of TPA from 1 nmol/1 to 8.0 nmol/1. Synthesis of cathepsin B was associated with TPA-induced phagocytic activity of cells in culture, expression of alpha-naphthyl acetate esterase and reduced cell division. Cathepsin B production was, therefore, related to differentiation of the HL60 promyelocytes into mature macrophage-like cells. Cathepsin B activity in HL60 cell lysates was significantly increased by incubation of the cells with 10 micrograms/ml endotoxin (lipopolysaccharide) from Escherichia coli, but not carrageenan. The production of cathepsin B by TPA-induced HL60 cells was significantly reduced by 0.25 mumol/1 dexamethasone and the non-steroidal anti-inflammatory compound 4-(6-methoxy-2-naphthyl)-butan-2-one but not by indomethacin. The HL60 promyelocytic cell line is a useful model for the study of factors affecting proteinase synthesis by human mononuclear phagocytes.

Anti-Inflammatory Agents↗

Expression of a 215,000-dalton nuclear envelope protein decreases during cell maturation.

The monoclonal antibody AGF2.3 identifies a nuclear envelope protein expressed at high levels in most transformed cell lines and weakly expressed in or absent from normal tissues and primary cell cultures. Here we report that expression of AGF2.3 antigen relates to the maturation status of cells. When HL60 cells were induced to mature loss of AGF2.3 antigen correlated with the appearance of neutrophils in culture. Acute myeloid leukaemia cells were intensely labelled by AGF2.3 antibody whereas chronic myeloid leukaemia cells were weakly reactive. Staining of tonsil epithelium showed a progressive loss of antigen during epithelial cell maturation. High levels of AGF2.3 antigen in most permanent cell lines suggest that such lines represent transformation of immature cells.

Antibodies, Monoclonal↗

A combination of calcium ionophore and 12-O-tetradecanoyl-phorbol-13-acetate (TPA) stimulates the growth of purified resting B cells.

In this study we investigated whether the calcium ionophores A23187 and ionomycin can act synergistically with the phorbol ester 12-O-tetradecanoyl-phorbol-13-acetate (TPA) to stimulate the growth of resting B lymphocytes purified from human tonsil cells. Ionomycin, A23187, and TPA added separately to cultures at doses of 0.4-1.6 micrograms/ml, 0.2-0.8 micrograms/ml, and 0.05-0.25 ng/ml respectively, did not induce DNA synthesis in resting B lymphocytes. In contrast, calcium ionophores at concentrations of 0.4-1.6 micrograms/ml ionomycin and 0.2-0.8 micrograms/ml A23187, in the presence of 0.05-4 ng/ml TPA, induced marked DNA synthesis and B-cell proliferation, as shown by analyses of incorporation of [3H]thymidine, growth kinetics, and the percentage of cells in the S and G2 + M phases of the cell cycle. These results show that the synergistic effects of calcium ionophores and TPA can bypass the requirement for antigen and exogenous growth factors in B-cell activation. These observations are similar to those obtained from studies of T lymphocytes by other workers.

B-Lymphocytes↗

Isolation and characterisation of dimethylsulphoxide resistant variants from the human promyeloid cell line HL60.

The HL60 line can be induced to differentiate into neutrophils by 1.25% dimethylsulphoxide (DMSO) or monocytes by 12-O-tetradecanoylphorbol-13-acetate (TPA). Seven variants of this line have been isolated which do not respond to 1.25% DMSO. Five of these lines can be induced to mature into neutrophils using DMSO concentrations of 1.75% (HL60 m2, m4, Sp1 and Ast3) and 2.0% (HL60 Ast25). Two lines, HL60 Ast1 and 4, showed minimal differentiation even at a concentration of 2.0% DMSO, and 2.25% DMSO was toxic to these cells. Of the seven variant lines, HL60 Ast3, Ast4 and Sp1 failed to differentiate into monocytes in response to TPA. Sublines from HL60 that either require higher concentrations of DMSO to induce maturation or fail to differentiate into neutrophils, such as those described above, can be used to investigate how genetically determined properties within HL60 cells affect the ability to mature into neutrophils.

Antigens, Surface↗