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C R Maliszewski

Publications and source records attributed to C R Maliszewski.

65 records · Page 4Linked to original sources

Induction of B cell activities by interleukin 4 is inhibited by a receptor-specific monoclonal antibody in vitro.

The effects of interleukin (IL) 4 on B cell growth and differentiation are mediated through binding of IL 4 to a specific cell surface receptor. The murine T cell IL 4 receptor (IL 4R) has recently been cloned and monoclonal antibodies (mAb) which bind specifically to the IL 4R have been developed. The ability of two of these anti-IL 4R mAb (M1 and M2) to inhibit IL 4-induced B cell functions in vitro was examined. The M1 mAb inhibited the ability of IL 4 to induce B cell proliferation in a dose-related fashion. The inhibition was specific for proliferation induced by IL 4 in that the antibody did not affect induction of proliferation by IL 1. Similarly, M1 inhibited IL 4-dependent B cell differentiation as measured by induction of IgG1 and IgE secretion, decreased IgG3 secretion, increased Ia expression, and increased Fc epsilon R (CD23) expression. In contrast, the anti-IL 4R-specific mAb M2 had no effect upon any of these activities. The ability of M1 but not M2 to inhibit IL 4-induced B cell growth and differentiation correlated with the inhibition of binding of radiolabeled IL 4 by M1. These reagents should be valuable tools with which to analyze the involvement of IL 4 in immune responses.

Animals↗

Soluble receptors for IL-1 and IL-4: biological activity and therapeutic potential.

Cytokine research has yielded a range of products which have now reached the stage of clinical trials and a plethora of novel therapeutics may be expected. Recently, cytokine receptors have also become an area of intensive research. Preliminary results indicate that recombinant soluble receptors can interfere with the biological functions of cytokines and thus may be appropriate for the treatment of certain pathological conditions where cytokine activity needs to be modulated.

Animals↗

Bovine GM-CSF: molecular cloning and biological activity of the recombinant protein.

The lymphokine granulocyte-macrophage colony-stimulating factor (GM-CSF) mediates the growth and differentiation of granulocytes and macrophages from bone marrow progenitors, and regulates biological functions expressed by mature cells of these lineages. In order to isolate a bovine GM-CSF cDNA, a cDNA library, generated from the BT2 bovine T cell line, was screened with a human GM-CSF cDNA probe. A cDNA clone was isolated with an insert of 783 bp, that would encode a protein of 143 amino acids, with a predicted mol. wt of 16,160. Bovine GM-CSF exhibits a high degree of sequence homology with mouse and human GM-CSF at both the nucleotide and amino acid levels. Comparison of GM-CSF amino acid sequences from the three species indicates that the bovine GM-CSF precursor contains a putative 17 amino acid signal sequence, cleavage of which would yield a 14,250 mol. wt protein. The cDNA was inserted into a mammalian expression vector and transfected into COS-7 monkey kidney cells. Biologically active bovine GM-CSF was secreted as judged by a bovine bone marrow proliferation assay. Bovine GM-CSF was weakly active in both human and mouse bone marrow proliferation assays. In contrast, human GM-CSF was weakly active on bovine but not murine mouse bone marrow cells and mouse GM-CSF was only active on murine bone marrow cells.

Amino Acid Sequence↗

Cloning, sequence and expression of bovine interleukin 1 alpha and interleukin 1 beta complementary DNAs.

Interleukin 1 (IL-1) is a cytokine which mediates a variety of immunoregulatory and inflammatory activities. Using human IL-1 alpha and IL-1 beta probes, cDNAs for the corresponding bovine genes were isolated from an alveolar macrophage library. The open reading frames of the bovine IL-1 alpha and IL-1 beta cDNAs encode proteins of 268 and 266 amino acids, respectively, each with a predicted mol. wt of approx. 31,000. Both forms of bovine IL-1 exhibit a high degree of sequence homology with IL-1 gene products from other mammalian species. Based upon comparisons with human IL-1 amino acid sequences, the post-translationally processed, mature forms of bovine IL-1 would occur as 17-18,000 mol. wt proteins. Sequences encoding mature bovine IL-1 alpha and IL-1 beta were inserted into E. coli expression plasmids and biologically active proteins were synthesized as judged by the ability of the recombinant proteins to induce proliferation of bovine thymocytes. Both IL-1 alpha and IL-1 beta exist as single genomic copies. In addition, bovine IL-1 beta mRNA is approx. 10-fold more abundant than IL-1 alpha mRNA in stimulated alveolar macrophages.

Amino Acid Sequence↗

Monoclonal antibodies that bind to the My23 human myeloid cell surface molecule: epitope analysis and antigen modulation studies.

It has previously been shown that the AML-2-23 monoclonal antibody (MoAb) reacts with a glycoprotein on differentiated myeloid cells. The antigen, My23, is released from these cells in culture and is also detectable in normal human plasma. We have now raised a panel of MoAbs against the soluble form of the antigen which reacts with monocytes and calcitriol-treated U937 and HL-60 myeloid cell lines, but not with lymphocytes or undifferentiated U937 and HL-60 cells. As with the AML-2-23 MoAb, the anti-My23 MoAbs immunoprecipitated a 50,000-55,000 protein from calcitriol treated HL-60 cells. Besides binding to cell surface My23, all eight MoAbs as well as the 63D3 MoAb reacted with crude and purified forms of soluble My23. A novel ELISA epitope analysis assay was developed to identify four distinct antigenic determinants on My23. Thus, the soluble and cell surface forms of My23 share several antigenic determinants and are biochemically very similar. Pooled anti-My23 caused selective patching, capping and clearing of My23 from the cell surface. My23 was not associated with cell surface, HLA-DR, HLA-A,B,C, beta 2-microglobulin or the Fc receptors for IgG or IgA. These anti-My23 MoAbs should be of importance in antigen functional studies and in clinical treatment protocols for patients with acute myelogenous leukemia. Furthermore, we have shown that a soluble myeloid differentiation antigen can serve as an effective immunogen for the preparation of MoAbs against important cell surface molecules thus obviating many problems inherent in the use of whole cells or detergent lysate-derived immunoprecipitates as immunogens.

Animals↗

Regulation of the expression of multiple class II genes in murine B cells by B cell stimulatory factor-1 (BSF-1).

We have studied the mechanisms governing the induction of class II major histocompatibility complex (MHC) antigens on murine B lymphocytes by B cell stimulatory factor-1 (BSF-1). BSF-1 induced a dramatic (10- to 15-fold) and selective increase in class II MHC antigen expression, as judged by flow cytometry. Analysis of radiolabeled membrane proteins on BSF-1-induced B cells also showed that the expression of class II MHC antigens was increased 10- to 15-fold. Biosynthetic labeling studies established that a selective increase in the translation of class II MHC molecules could be detected at 5 to 6 hr post-addition of BSF-1 to culture. After 16 hr of culture, when cell surface expression was induced 12- to 15-fold, biosynthesis rates of class II MHC antigens was induced fivefold to sixfold. The biosynthesis of the I region-associated invariant chain (Ii) was also enhanced. Actinomycin D abrogated the increased biosynthetic labeling of class II products, suggesting transcriptional regulation of expression. At 6 hr after addition of BSF-1, there was a twofold increase in the steady-stage level of class II mRNA, which was slightly increased at 16 hr. The BSF-1-induced increase in surface Ia antigen is dependent on new transcription and translation. However, posttranslational events that lead to a decrease in membrane antigen turnover rate or to an increase in protein stability probably also play a significant role in the hyperexpression of class II antigens on BSF-1-treated B lymphocytes.

Animals↗

IgA-mediated effector function of HL-60 cells following treatment with calcitriol.

When cells of the HL-60 promyelocytic leukemia line are cultured with 1,25-dihydroxyvitamin D3 (calcitriol) they acquire a more highly differentiated, myelomonocytic phenotype. It was observed that the ability to ingest IgA-coated erythrocytes and to bind soluble dimeric IgA accompanied this maturation. Phagocytosis of IgA-coated erythrocytes was greater than 50% inhibited by 0.8 mg/ml free IgA, and not by IgG or IgM. Similarly, binding of dimeric IgA was not blocked by a 100-fold excess of IgG, IgM or IgE. Both IgA-mediated phagocytosis and IgA binding became apparent after two days of culture with calcitriol and increased with time in culture. The induction of functional IgA receptors was evident with 10(-11) M calcitriol and maximal levels of IgA binding and of numbers of cells capable of IgA mediated phagocytosis were induced by 10(-8)-10(-9) M calcitriol. 25-Hydroxyvitamin D3, which binds 100-1000-fold less avidly to the cytoplasmic D3 receptor than calcitriol, did not induce functional IgA receptors unless concns of 10(-7) M were used. Other compounds which induce differentiation of HL-60 cells, including retinoic acid and DMSO, produced similar results to calcitriol, whereas cells treated with gamma interferon expressed lower levels of IgA binding and did not ingest IgA-coated targets, suggesting that a critical density of IgA receptors must be reached to enable phagocytosis and/or that other cell activational events are required for IgA receptors to mediate killing. This model may provide useful insight into the function and regulation of IgA receptors on cells of the myeloid series.

Antigens, CD↗

The expression of receptors for IgA on human monocytes and calcitriol-treated HL-60 cells.

In this study, we investigated the expression of IgA Fc receptors (FcR alpha) by human myeloid cells. By using a sensitive cytofluorometric IgA binding assay, we found that approximately 85% of peripheral blood monocytes bound IgA in an isotype-specific fashion. The HL-60 human promyelocytic leukemia cell line failed to express FcR alpha; however, treatment of HL-60 cells with the differentiating agent calcitriol induced the expression of FcR alpha on greater than 90% of these cells. Monocytes and calcitriol-treated HL-60 cells were capable of ingesting IgA-coated erythrocyte targets, suggesting that phagocytosis could be mediated through FcR alpha. The induced HL-60 cell system represents a useful model for further studies on FcR alpha expression and function.

Antigens, CD↗

Isolation and characterization of My23, a myeloid cell-derived antigen reactive with the monoclonal antibody AML-2-23.

In this study, we describe the isolation and characterization of My23, a human myeloid antigen defined by the monoclonal antibody (MoAb) AML-2-23. Cells of the HL-60 human promyelocytic cell line, when cultured in the presence of 1,25-dihydroxyvitamin D3 (calcitriol), express a surface protein of approximately 50 to 55 kilodaltons (Kd) which was immunoprecipitated with the AML-2-23 MoAb. Furthermore, after 2 days of exposure to calcitriol, HL-60 cells began to release My23 into culture medium, as determined by the ability of culture supernatant from these cells to block the binding of AML-2-23 to myeloid cells. My23 release was almost totally inhibited by incubation of cells at 4 degrees C, and was partially blocked by treatment of cells with cycloheximide or tunicamycin. The culture supernatant blocking factor, soluble My23, was identified as a 45 to 50 Kd protein by Western blot/immune overlay, using AML-2-23 and an 125I-labeled second antibody. My23, which was affinity-purified from culture supernatant, retained the ability to block AML-2-23 binding to myeloid cells. The affinity-purified antigen migrated on SDS-PAGE as a diffuse band in the m.w. range of 44 to 52 Kd. On treatment with endoglycosidase, the apparent m.w. of My23 decreased to approximately 40,000, indicating the presence of carbohydrate residues on My23. Serum from mice immunized with the purified antigen reacted with the same spectrum of myeloid cells as AML-2-23 MoAb, reacted with the My23 soluble protein in immunoblots, and competed with AML-2-23 for binding to myeloid cells. Binding of this antiserum to myeloid cells was blocked by cell supernatant from both monocytes and calcitriol-treated HL-60 cells, suggesting, along with results from m.w. determinations of the two preparations, that the soluble and cell surface forms of My23 are similar. Moreover, based on our finding that human plasma specifically inhibits the binding of AML-2-23 to myeloid cells, My23 may also be released in vivo. The enhanced expression of My23 on activated and more mature myeloid cells and its shedding or secretion by these cells is consistent with a functional role for My23.

Antibodies, Monoclonal↗

Gamma interferon induces monocytoid differentiation in the HL-60 cell line.

We investigated the ability of purified, recombinant DNA-derived interferons (IFN) to induce phenotypic changes in cells of the HL-60 promyelocytic leukemia cell line. Changes in cell surface markers detected by monoclonal antibodies as well as morphologic, histochemical, and functional changes were monitored. We found that gamma-IFN, but not alpha- or beta-IFN, induced the expression of antigens characteristic of monocytes and granulocytes (AML-2-23, 63D3, and 61D3), as well as changes in morphology consistent with monocytoid differentiation. These included induction of alpha-naphthyl acetate esterase, increased cell size, and a decrease in azurophilic granules. The gamma-IFN dose dependency and time course of the effect on antigen expression suggest that de novo protein synthesis was induced by gamma-IFN. The activity of gamma-IFN and of mixed-lymphocyte culture supernatant was blocked by a monoclonal antibody to gamma-IFN. Significant augmentation in the ability of the HL-60 cells to mediate antibody-dependent cellular cytotoxicity was induced by gamma-IFN. These findings suggest that gamma-IFN plays a role in the regulation of hematopoiesis.

Antibodies, Monoclonal↗

A type-specific antigen of Eikenella corrodens is the major outer membrane protein.

Eikenella corrodens released antigenic material in the form of outer membrane fragments during growth. A culture filtrate antigen (AgA) from three strains reacted with antisera to whole bacteria with serotype specificity. A monoclonal antibody to the AgA of strain 1073 reacted with only 2 of 12 strains tested by enzyme-linked immunosorbent assay, immunofluorescence assay, and immunoelectrophoresis assay. The antigenic reactivity was resistant to boiling and to pronase and trypsin treatments. AgA was isolated from an outer membrane preparation after boiling in sodium dodecyl sulfate, radioiodinating the proteins, and precipitating AgA specifically with monoclonal antibody. A single protein band corresponding to the major outer membrane protein of E. corrodens was observed by autoradiography of sodium dodecyl sulfate-polyacrylamide gel electrophoresis of the immunoprecipitate. AgA had a molecular weight of 42,000, and its amino acid content resembled those reported for major outer membrane proteins with similar molecular weights from two other gram-negative organisms.

Amino Acids↗