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Biomedical subjects

H Koprowski

Publications and source records attributed to H Koprowski.

At least 109 records · Page 6Linked to original sources

In vitro properties of human melanoma cells metastatic in nude mice.

We have developed a human melanoma metastasis model in nude mice. In this model, a human variant cell line (451-LU) was obtained that spontaneously metastasized in nude mice. This variant cell line was selected from the lung of a nude mouse after several in vivo passages of human melanoma WM164 cells previously isolated from a melanoma metastasis of a patient. The WM164 cells were not competent for metastasis in nude mice prior to this selection. We compared the phenotypes of the parental nonmetastatic cell line and the metastatic variant with respect to growth at clonal seeding densities in protein-free medium (growth factor independence), in vitro invasion through reconstructed basement membranes, secretion of proteolytic enzymes, expression of tumor-associated antigens, and chromosomal abnormalities. Metastatic 451-LU cells showed significantly increased growth factor independence when grown at clonal seeding densities as compared to the parental cells. In in vitro chemoinvasion assays, metastatic 451-LU cells were significantly more invasive than the parental cells. The metastatic variant secreted collagenase and tissue type plasminogen activator at levels 10- and 3-fold higher than the parental WM164 cells, respectively. Polyclonal antibodies to tissue type plasminogen activator significantly inhibited invasion through reconstructed basement membranes. In metastatic 451-LU cells, expression of nerve growth factor receptor was elevated, both at the protein and transcriptional level. Metastatic cells were aneuploid with a mode of 97 chromosomes, whereas the parental nonmetastatic cells had a mode of 52 chromosomes. Our studies suggest that metastatic melanoma cell variants selected in vivo show increased independence of exogenous growth factors when grown at clonal cell densities, enhanced invasiveness in vitro, greater secretion of proteolytic enzymes, and increased chromosome mode as compared to the nonmetastatic parental cells. The data further suggest that melanoma cells isolated from metastatic lesions and maintained in vitro have an unstable invasive phenotype but that metastatic variant cells can readily be selected.

Animals↗

Identical D region sequences expressed by murine monoclonal antibodies specific for a human tumor-associated antigen.

Sequence analysis has revealed significant structural similarities among murine mAb specific for the human tumor-associated Ag GA733. Antibodies generated in independent immunizations, either with Ag-positive tumor cells or with anti-idiotypic antibodies produced by immunization of goats with a GA733-specific antibody, all use members of the same gene families; remarkably, they also express identical amino acid sequences in their H chain CDR3. Inasmuch as this region normally exhibits considerable sequence variability, the identity displayed by the antibodies indicates a requirement for this particular sequence in the generation of their specificity for the GA733 antigen. Moreover, this homology suggests that the antibodies recognize a common determinant on the Ag, and that the polyclonal anti-idiotypic antibodies can functionally mimic the Ag at the level of the structure of the Ag-specific antibody that is induced.

Amino Acid Sequence↗

Conformational analysis of the tumor-associated carbohydrate antigen 19-9 and its Lea blood group antigen component as related to the specificity of monoclonal antibody CO19-9.

A structural comparison between the synthetic, tumor-associated 19-9 tetrasaccharide, NeuAc alpha 2----3Gal beta 1----3GlcNAc(4----1 alpha Fuc)-O(CH2)8CO2CH3 and its Lea blood group antigen component, Gal beta 1----3GlcNAc(4----1 alpha Fuc)-O(CH2)8CO2CH3 was carried out by two-dimensional 1H NMR spectroscopy and hard-sphere energy calculations. Significant chemical shift differences between the two molecules were detected only for protons at or near the linkage site of NeuAc to the Lea trisaccharide core. Coupling constants for the ring protons of both molecules did not suggest major deviation from the 4C1 chair conformation for Gal and GlcNAc, the 1C4 conformation for Fuc, or the 2C5 conformation for NeuAc. Two-dimensional nuclear Overhauser enhancement experiments revealed through-space, inter-proton interactions that corresponded to some extent with those predicted by diffraction data and hard-sphere energy minimization programs for both saccharides. However, a significant number of interactions did not obey the distance dependence predicted from a rigid structure model. These data suggest that, while the average conformation of the 19-9 antigen's Lea core may be invariant to NeuAc alpha 2----3Gal linkage, the dynamics of the Lea trisaccharide are altered upon sialylation. Data also indicate that the terminal NeuAc linkage is more flexible than the inter-residue bonds of the core trisacharide. This analysis, in combination with the fact that the monoclonal anti-19-9 antibody CO 19-9 does not cross-react with the Lea antigen, provides evidence in favor of NeuAc as an epitope-creating unit involved directly at the antibody binding site. However, given the possible role of variable dynamics in epitope formation, these results do not preclude crucial roles in antibody recognition for regions on the 19-9 antigen that are distanced from NeuAc.

Antibodies, Monoclonal↗

Immunoglobulin class and immunoglobulin G subclass analysis of human anti-mouse antibody response during monoclonal antibody treatment of cancer patients.

The immune response against murine IgG2a immunoglobulin was studied in 42 gastrointestinal cancer patients treated with mouse monoclonal antibodies. IgM, IgA, and all 4 IgG subclasses directed against mouse immunoglobulin were studied. Thirty of 42 patients developed an anti-mouse response of IgG isotype, often associated with IgM and IgA specific for mouse monoclonal antibodies circulating in serum. Patients first developed an IgM response, followed by IgA and IgG. IgG1 was found to be the most frequently expressed isotype, followed by IgG2 and IgG3. IgG4 was detected in only 6 patients.

Animals↗

Clonal analysis of a human antibody response. Quantitation of precursors of antibody-producing cells and generation and characterization of monoclonal IgM, IgG, and IgA to rabies virus.

We quantitated and characterized the changes in the human B cell repertoire, at the clonal level, before and after immunization with rabies virus. Moreover, we generated 10 monoclonal cell lines producing IgM, IgG, and IgA antibodies to the virus. We found that in healthy subjects, not previously exposed to the virus, nearly 2% of the circulating B lymphocytes were committed to the production of antibodies that bound the virus. These B cells expressed the surface CD5 molecule. The antibodies they produced were polyreactive IgM that displayed a relatively low affinity for the virus components (Kd, 1.0-2.4 x 10(-6) g/microliters). After immunization, different anti-virus (IgG and IgA) antibody-producing cells consistently appeared in the circulation and increased from less than 0.005% to greater than 10% of the total B cells committed to the production of IgG and IgA, respectively. Most of such B cells do not express CD5 and produce monoreactive antibodies of high affinity for rabies virus (Kd, 6.5 x 10(-9) to 1.2 x 10(-10) g/microliters). One of these IgG mAbs efficiently neutralized rabies virus in vitro and in vivo, as detailed elsewhere (Dietzschold, B., P. Casali, Y. Ueki, M. Gore, C. E. Rupprecht, A. L. Notkins, and H. Koprowski, manuscript submitted for publication). Hybridization experiments using probes specific for the different human V gene segment families revealed that cell precursors producing low affinity IgM binding to rabies virus utilized a restricted number of VH gene segments (i.e., only members of the VHIIIb subfamily), whereas cell precursors producing high affinity IgG and IgA to rabies virus utilized an assortment of different VH gene segments (i.e., members of the VHI, VHIII, VHIV, and VHVI families and VHIIIb subfamily). In conclusion, our studies show that EBV transformation in conjunction with limiting dilution technology and somatic cell hybridization techniques are useful methods for quantitating, at the B cell clonal level, the human antibody response to foreign Ags and for generating human mAbs of predetermined specificity and high affinity.

Antibodies, Monoclonal↗

Plasma membrane-mediated nuclear uptake and chromatin binding of insulin in tumor cell lines.

Analysis of different cellular fractions after incubation of SW 948 and SW 707 colorectal carcinoma cells or WM 266-4 melanoma cells with 125I-insulin revealed the nondegraded hormone in the chromatin of these cells. Nuclear 125I-insulin was bound to specific fragments of EcoRI-, HaeIII-, and HincII-digested chromatin. A 45-kDa chromatin protein species that binds 125I-insulin was identified. Actinomycin D and cycloheximide inhibited the insulin-stimulated expression of chromatin receptors. Uptake of 125I-insulin by isolated nuclei occurred only in the presence of plasma membranes. Thus, at least some effects of insulin on target cells can be explained by direct gene regulation instead of "second messenger" action.

Cell Membrane↗

Humoral and cellular responses of colorectal cancer patients treated with monoclonal antibodies and interferon gamma.

Fifteen patients with metastatic gastrointestinal adenocarcinomas were treated with low doses of recombinant human interferon gamma (rh-IFN gamma) and a mixture of monoclonal antibodies (mAb) that bind to tumor cells. All antibodies were of the IgG2a isotype and interact with human effector cells to mediate antibody-dependent cell-mediated cytotoxicity (ADCC). Natural killer lysis against K562 cells by peripheral blood mononuclear cells purified from patients' blood was enhanced in all patients at day 3 during IFN gamma treatment. Monocytes from two patients had increased ADCC levels. Increase in the percentage of monocytes able to bind mouse IgG2a was detected by Fc receptor flow cytometry analysis 24 h after the first IFN gamma infusion. However, 3 days later, the percentage of fluorescent cells had fallen below baseline levels. The analysis of patients' sera showed that at day 2 after mAb infusion, only 50% of the circulating mouse IgG was immunoreactive, and after 1 week, only traces of immunoreactive mouse IgG were detected. All patients developed a human anti-(mouse Ig) response of IgG, IgM and IgA isotypes, although only low levels of anti-idiotypic antibodies were detected at the time of testing (up to 9 weeks) after mAb infusion. No difference in the IgG subclasses of anti-(mouse Ig) antibody was observed between patients treated with mAb and IFN gamma and patients treated with mAb alone.

Adenocarcinoma↗

Influenza virus hemagglutinin-specific antibodies isolated from a combinatorial expression library are closely related to the immune response of the donor.

Antibodies specific for the influenza virus hemagglutinin have been isolated from a combinatorial expression library generated using mRNA obtained from an immunized donor mouse. Sequence analysis indicates that the antibody heavy chain variable regions were derived from members of an expanded hemagglutinin-specific B-cell clone, in conjunction with one of two light chain variable regions. Moreover, the most frequently identified heavy chain variable/light chain variable combination is extremely similar to a heavy chain variable/light chain variable combination that has previously been identified among hemagglutinin-specific hybridoma antibodies. The results, therefore, demonstrate that these antibodies bear a close relationship to the immune status of the donor mouse and suggest that simple adaptations of this procedure might allow evaluation of the immune responses of species, such as man, in which conventional hybridoma techniques have to date proven ineffective.

Amino Acid Sequence↗

Molecular cloning of cDNA for the human tumor-associated antigen CO-029 and identification of related transmembrane antigens.

The human tumor-associated antigen CO-029 is a monoclonal antibody-defined cell surface glycoprotein of 27-34 kDa. By using the high-efficiency COS cell expression system, a full-length cDNA clone for CO-029 was isolated. When transiently expressed in COS cells, the cDNA clone directed the synthesis of an antigen reactive to monoclonal antibody CO-029 in mixed hemadsorption and immunoblot assays. Sequence analysis revealed that CO-029 belongs to a family of cell surface antigens that includes the melanoma-associated antigen ME491, the leukocyte cell surface antigen CD37, and the Sm23 antigen of the parasitic helminth Schistosoma mansoni. CO-029 and ME491 antigen expression and the effect of their corresponding monoclonal antibodies on cell growth were compared in human tumor cell lines of various histologic origins.

Amino Acid Sequence↗

Molecular cloning of cDNA for the carcinoma-associated antigen GA733-2.

Defined by monoclonal antibody GA733, the GA733-2 antigen is a cell surface 40-kDa glycoprotein associated with human carcinomas of various origins. Molecular clones for the GA733-2 antigen were isolated from a colorectal carcinoma cell line cDNA library using the high-efficiency COS cell expression system. A 1.4-kilobase cDNA species was enriched by immunoselection with monoclonal antibody. The authenticity of individual clones was established by immunologic and sequence criteria. At the amino acid sequence level, GA733-2 was found to be greater than 99% identical to the previously described KSA antigen defined by monoclonal antibody KS1/4. The amino acid sequence derived from the previously described GA733-related gene, GA733-1, was found to be 49% identical to GA733-2. The positions of 12 cysteine residues in the extracellular domains of the two GA733 antigens are conserved, as is the overall distribution of hydrophobic and hydrophilic residues. A 1.45-kilobase transcript of the GA733-2/KSA gene was found to be expressed in cell lines derived from colorectal and pancreatic carcinoma.

Amino Acid Sequence↗

Oligosaccharide Y specific monoclonal antibody and its isotype switch variants.

Isotype switch variants of the IgG3 secreting hybridoma BR55-2 were developed with gamma 1, gamma 2b and gamma 2a heavy chains. The variants have the same affinity for antigen and expected affinities for the Fc receptor. The Y antigen defined by MAb BR55-2 has a restricted distribution to breast, colorectal, pancreatic, gastric and small cell lung carcinomas. The MAb BR55-2 also bound to prostatic and laryngeal carcinomas. The BR55-2 defined epitope is expressed by gastrointestinal cancer cell lines as a glycolipid, while the breast carcinoma cells express the same epitope on glycoproteins. These differences may influence tumor cell susceptibility to lysis by MAb BR55-2 and its isotype switch variants.

Animals↗

Monoclonal antibody-dependent, cell-mediated cytotoxicity against human malignant gliomas.

Two monoclonal antibodies (MAbs), IgG2a MAb ASHG4 and IgG2b MAb ASHE2, were produced in mice immunized with cultured human malignant glioma cells. Both MAbs bound strongly to the surfaces of long-term cultured glioma cells, and MAb ASHE2 also bound strongly to short-term cultured glioma cells. Sections of frozen glioma tissues bound both MAbs strongly, whereas normal brain tissues showed weaker reactivities, and tissues derived from carcinomas of various histological types were completely unreactive. Furthermore, the MAbs did not bind to peripheral blood cells or bone marrow cells. Although both MAbs bound to the same Mr 27,000-29,000 protein, they may detect different or overlapping epitopes on this antigen. Because MAbs ASHE2 and ASHG4 lysed cultured glioma cells with human peripheral blood lymphocytes as effector cells, they are promising reagents for approaches to immunotherapy of human malignant gliomas.

Antibodies, Monoclonal↗

Biological characterization of human monoclonal antibodies to rabies virus.

Rabies virus antigen-specific human monoclonal antibodies (MAbs) that recognized either viral glycoprotein, ribonucleoprotein, or matrix proteins were generated. Only glycoprotein-specific MAb neutralized a variety of rabies viruses and protected laboratory rodents against lethal rabies virus infection. The determinant recognized by this MAb does not appear to reside in previously defined antigenic sites of the viral glycoprotein.

Animals↗

Structural and immunological characterization of a linear virus-neutralizing epitope of the rabies virus glycoprotein and its possible use in a synthetic vaccine.

We have mapped a linear epitope recognized by the virus-neutralizing monoclonal antibody 6-15C4 within the primary sequence of the G protein from the Evelyn-Rokitnicki-Abelseth strain of rabies virus. This was accomplished by using fragments of the rabies virus G protein and deduced amino acid sequences of neutralization-resistant variant rabies viruses. The monoclonal antibody 6-15C4 specifically recognized a synthetic peptide (peptide G5-24) which resembles the 6-15C4 epitope in structure. In addition, a tandem peptide constructed from the G5-24 peptide and a dominant TH cell epitope of the rabies virus N protein induced protective immunity against lethal rabies virus challenge infection in mice.

Amino Acid Sequence↗