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J Calafat

Publications and source records attributed to J Calafat.

At least 73 records · Page 4Linked to original sources

Monitoring human basophil activation via CD63 monoclonal antibody 435.

On activation of human basophilic granulocytes with anti-IgE or with the chemotactic peptide, formyl-methionyl-leucyl-phenylalanine, the expression of the CD63 antigen on the cell surface, detected by monoclonal antibody (MAb) 435, increased up to 100-fold. The kinetics of CD63 up regulation and histamine release were identical, and a strong correlation was found between percentage of MAb 435-binding basophils and extent of histamine release. Immunoelectronmicroscopy demonstrated that the epitope for MAb 435 in resting basophils is located on the basophilic granule membrane. After basophil activation, MAb 435 bound to the exterior of the plasma membrane. Experiments with various doses of anti-IgE demonstrated that the binding of MAb 435 to basophilic granulocytes follows an all-or-nothing-like response per cell. Basophils either do not bind the MAb at all, or they bind a maximal amount of the MAb. We also measured the up regulation of the CD11/CD18 leukocyte adhesion complex. Here, too, we noted an increase in cell-surface exposure of all subunits after activation. This increase was not as strong as increase found with MAb 435. Thus, MAb 435 is an interesting new tool for investigating the activation of human basophils, in addition to the measurement of mediator release. This MAb may be useful for the detection of basophil activation in vivo.

Antibodies, Monoclonal↗

Assembly and routing of von Willebrand factor variants: the requirements for disulfide-linked dimerization reside within the carboxy-terminal 151 amino acids.

The precursor protein of von Willebrand factor (pro-vWF) consists of four different repeated domains, denoted D1-D2-D'-D3-A1-A2-A3-D4-B1-B2-B3-C1-C2, followed by a carboxy-terminal region of 151 amino acids without obvious internal homology. Previously, we have shown the requirement of the domains D1, D2, D', and D3 of pro-vWF in the assembly of pro-vWF dimers into multimers. Here, we define the domains of vWF involved in dimerization, using deletion mutants of full-length vWF cDNA transiently expressed in monkey kidney COS-1 cells. It is shown that only the carboxy-terminal 151 amino acid residues of vWF are required for dimerization. In addition, by analyzing a construct, encoding only the carboxy-terminal 151 amino acids of vWF, we find that the formation of dimers is an event independent of other domains present on pro-vWF, such as the domains C1 and C2 previously suggested to be involved in dimerization. Furthermore, it is shown that a deletion mutant of vWF, lacking the carboxy-terminal 151 amino acid residues and thus unable to dimerize, is proteolytically degraded in the ER. In contrast, a mutant protein, composed only of the carboxy-terminal 151 amino acids of vWF, and able to dimerize, is transported from the ER in a similar fashion as wild-type vWF. The role of the ER in the assembly of vWF is discussed with regard to the data presented in this paper on the intracellular fate of several vWF mutant proteins.

Animals↗

Integrin alpha 6/beta 4 complex is located in hemidesmosomes, suggesting a major role in epidermal cell-basement membrane adhesion.

The alpha 6/beta 4 complex is a member of the integrin family of adhesion receptors. It is found on a variety of epithelial cell types, but is most strongly expressed on stratified squamous epithelia. Fluorescent antibody staining of human epidermis suggests that the beta 4 subunit is strongly localized to the basal region showing a similar distribution to that of the 230-kD bullous pemphigoid antigen. The alpha 6 subunit is also strongly localized to the basal region but in addition is present over the entire surfaces of basal cells and some cells in the immediate suprabasal region. By contrast staining for beta 1, alpha 2, and alpha 3 subunits was very weak basally, but strong on all other surfaces of basal epidermal cells. These results suggest that different integrin complexes play differing roles in cell-cell and cell-matrix adhesion in the epidermis. Immunoelectron microscopy showed that the alpha 6/beta 4 complex at the basal epidermal surface is strongly localized to hemidesmosomes. This result provides the first well-characterized monoclonal antibody markers for hemidesmosomes and suggests that the alpha 6/beta 4 complex plays a major role in epidermal cell-basement membrane adhesion. We suggest that the cytoplasmic domains of these transmembrane glycoproteins may contribute to the structure of hemidesmosomal plaques. Immunoultrastructural localization of the BP antigen suggests that it may be involved in bridging between hemidesmosomal plaques and keratin intermediate filaments of the cytoskeleton.

Animals↗

In situ localization by double-labeling immunoelectron microscopy of anti-neutrophil cytoplasmic autoantibodies in neutrophils and monocytes.

Anti-neutrophil cytoplasmic autoantibodies (ANCA) associated with active Wegener's granulomatosis are directed against a soluble 29-Kd protein present in human neutrophils and monocytes. Affinity labeling with tritiated diisopropylfluorophosphate (3H-DFP) suggested that ANCA-antigen is a serine protease. We used immunoelectron microscopy to study the in situ localization of the ANCA-antigen in normal human neutrophils and monocytes using immunoglobulin G (IgG) from ANCA-positive patients and a mouse monoclonal antibody against the ANCA-antigen. Label was observed on the large granules of the neutrophils and in granules of monocytes. Double-labeling, using anti-myeloperoxidase or the peroxidase reaction as markers for azurophil granules and anti-lactoferrin as marker for specific granules, showed that ANCA is colocalized with markers of azurophil granules but not with lactoferrin. Furthermore, elastase and cathepsin G were found in the azurophil granules of neutrophils and in the peroxidase-positive granules of monocytes, colocalized with ANCA-antigen. Cytochalasin-B-treated neutrophils stimulated with N-formyl-methionyl-leucyl-phenylalanine (fMLP) formed large intracellular vacuoles and were partially degranulated. Some vacuoles contained ANCA-antigen, as well as myeloperoxidase, elastase, and cathepsin G, demonstrating release of these enzymes from the azurophil granules into vacuoles. Our results demonstrate that ANCA-antigen is located in myeloperoxidase-containing granules of neutrophils and monocytes, and is packaged in the same granules as elastase and cathepsin G, the two previously identified serine proteases of myeloid leukocytes.

Autoantibodies↗

Fetal mouse alveolar type II cells in culture express several type II cell characteristics found in vivo, together with major histocompatibility antigens.

Alveolar type II cells were isolated from fetal mouse lung by differential adherence and obtained in monolayer culture. Cultures display a high degree of purity as shown by histochemical and immunocytochemical staining procedures. Seventy-five percent of cells stained positive with specific anti-lavage serum mouse (SALS-M), an antiserum specific for (pre)alveolar type II cells of the mouse, and osmiophilic bodies were present in 82% of cells. These and other characteristics of type II cells in culture correspond to those of alveolar type II cells in fetal mouse lung. The pattern of reactivity of these cells with various anti-cytokeratin antibodies is described, and we show that, in contrast to rat type II cells, they do not exhibit alkaline phosphatase activity. Identity of the type II cell cultures was shown by their specific phospholipid composition and surfactant protein A (SP-A) content. The fetal alveolar type II cells in culture were found to synthesize and express class I but not class II major histocompatibility complex (MHC) antigens. The possibility to culture fetal alveolar type II cells of the mouse and the availability of genetically well-defined inbred and transgenic mouse strains opens ways to study the genetics of type II cell differentiation and function. Also, the in vitro availability of alveolar type II cells, the progenitor cells of mouse lung tumors, will enable us to study in vitro several of the processes involved in lung tumorigenesis in the mouse.

Alkaline Phosphatase↗

Structural heterogeneity of a human melanoma-associated antigen.

The biosynthesis, structure, and topology of a melanoma-associated antigen, previously defined with the monoclonal antibody NKI/C-3 was studied. A polyclonal rabbit antiserum was raised against the antigen with a broader reactivity than the previously used monoclonal antibody NKI/C-3. The antigen was shown to consist of a single protein backbone to which two or three N-linked glycans were added cotranslationally. Extensive further heterogeneity was generated in the Golgi compartment and was shown to be dependent on the presence of complex type sugars. Although the antigen is associated with melanomas, it was not codistributed with the tyrosinase activity associated with melanogenesis. The antigen did show codistribution with cathepsin D, which is a marker for lysosomal functions.

Antibodies, Monoclonal↗

The H circles of Leishmania tarentolae are a unique amplifiable system of oligomeric DNAs associated with drug resistance.

We have induced drug resistance against methotrexate, an inhibitor of dihydrofolate reductase, and CB3717, an inhibitor of thymidylate synthetase in a strain of Leishmania tarentolae. The drug-resistant strains contain extrachromosomal DNA circles of 68 kilobases with a 30-kilobase inverted duplication flanked by 4- and 5 kilobase unique segments. We show that these circles are highly homologous to the drug-induced H circles of L. tropica (1). All three L. tarentolae strains analyzed contain a chromosomal copy of the H region without duplication, but two of the three strains contain extrachromosomal H circles as well, predominantly present as H circle dimers in one strain and as tetramers in the other. After induction of methotrexate resistance, monomeric circles, presumably derived from the oligomers, become the major type of circle. Our results indicate that the H region represents a genomic region that can be copied at very low frequency to yield circles by a precise, but unusual mechanism under natural conditions in wild-type cells. Although superficially analogous to the episomes of bacteria, the system is without precedent in nature.

Animals↗

Endocytosis and intracellular routing of an antibody-ricin A chain conjugate.

An immunotoxin (IT) was prepared from monoclonal antibody (MoAb) 115D8 and ricin A chain. MoAb 115D8 is directed against the carcinoma-associated sialomucin MAM-6. In a protein synthesis inhibition assay this IT was cytotoxic for the human breast cancer cell line T47D. Using postembedding immunoelectron microscopy the binding and intracellular routing of the IT in T47D cells were studied by simultaneous labeling of both IT moieties, MoAb and A chain, and compared with the fate of native ricin and MoAb 115D8. The IT was internalized into the cell by two different pathways: one via coated pits-coated vesicles followed by transport to the lysosomes and one via large enclosed invaginations of the plasma membrane which apparently fused with lysosomes. This internalization was similar to the endocytosis of MoAb 115D8. During transport via both pathways the IT remained intact until it reached the lysosomes as suggested by the observation that the labels for 115D8 and ricin A chain remained closely associated. Moreover, in areas with abundant endocytic vesicles the labels for both IT moieties were also found in the cytosol, suggesting that intact IT is translocated from the vesicles into the cytosol. In control experiments, native ricin, but not unconjugated MoAb 115D8, was found in the cytosol after internalization. Data presented here show for the first time the complete intracellular pathway of an antibody-ricin A chain conjugate, including the translocation of the A toxin subunit into the cytosol. This IT may be useful for therapy of those tumors which express a high level of MAM-6 on the cell surface.

Antibodies, Monoclonal↗

A monoclonal antibody specific for cells of the melanocyte lineage.

A monoclonal antibody, NKI/beteb, was prepared against membranes from a human melanoma metastasis, and in immunoprecipitates of melanoma cell lysates specific 100- and 7-kd glycoproteins were found. The large glycoproteins were also present in conditioned medium of melanoma cell lines. The antigen is located on the inner side of membranes of (pre)melanosomes and premelanosomelike vesicles. The antibody reacted in the immunoperoxidase test on frozen tissue sections with 27 of 28 nevocellular nevi (15/16 common, 12/12 dysplastic), 39/39 primary melanomas (3 intraepidermal, 24 cutaneous, 12 choroidal), 56/63 melanoma metastases, and 4/4 clear-cell sarcomas (melanoma of soft tissue). With sections of formalin-fixed paraffin-embedded tissues, the reaction was less sensitive. No reactivity was detected with frozen sections of 185 other tumors, except for 1 case of non-Hodgkin's lymphoma in which macrophages were positive. With the exception of melanocytes, all frozen sections of adult tissues that were tested were negative with NKI/beteb. On the basis of its tissue distribution so far, the antigen recognized by NKI/beteb seems to be a specific and sensitive diagnostic marker for cells of the melanocyte lineage.

Animals↗

A complex of platelet glycoproteins Ic and IIa identified by a rat monoclonal antibody.

A rat monoclonal antibody, GoH3, recognizes cell surface antigens on epithelial cells in a variety of tissues in both man and mouse. Furthermore, the antibody showed reactivity with endothelial cells and blood platelets. The molecule recognized by GoH3 on platelets was determined by immunoprecipitation, followed by analysis on one- and two-dimensional sodium dodecyl sulfate-polyacrylamide gels. GoH3 precipitated glycoproteins Ic and IIa from both human and mouse platelets. Glycoprotein Ic consists of disulfide-linked heavy and light chains which both appeared to be glycosylated. As determined by enzymatic digestion followed by gel analyses, both "complex" and "high mannose" type of N-linked oligosaccharides are present on the heavy and light chain of human glycoprotein Ic and on the heavy chain of mouse glycoprotein Ic. The light chain of mouse glycoprotein Ic only carries high mannose type of N-linked oligosaccharides. The N-linked glycans on human and mouse glycoprotein IIa are all of the complex type. The glycoproteins Ic and IIa co-sedimented in sucrose gradients and formed complexes upon treatment of intact platelets with the chemical cross-linking reagent dithiobis(succinimidyl propionate). Dissociation of the complex by chaotropic agents followed by immunoprecipitation establishes that the epitope recognized by GoH3 is located on the Ic molecule. These results provide evidence that the two glycoproteins, Ic and IIa, exist as a heterodimer complex in the platelet membrane.

Animals↗

Induction of demyelination by a temperature-sensitive mutant of the coronavirus MHV-A59 is associated with restriction of viral replication in the brain.

The neurovirulence of eight temperature-sensitive (ts) mutants of mouse hepatitis virus strain A59 in 4-week-old BALB/c mice was investigated. Whereas a dose of 100 p.f.u. of wild-type virus killed mice within a week, a 1000-fold higher dose of ts mutants did not. Three ts mutants induced demyelinating disease in the central nervous system (CNS). The pathology of the demyelinating disease caused by one mutant, designated ts-342, was studied in detail. Pathological changes, starting 3 days post-inoculation (p.i.), were characterized by inflammation and demyelination in the CNS. Antibody responses directed against all virus-specific structural proteins were present at 7 days p.i. No virus particles were observed by electron microscopy at 14 days p.i. However, macrophages and lymphocytes were abundant in the areas of demyelination. The growth kinetics in vivo of wild-type virus, ts-342 and a revertant of ts-342 were compared. Wild-type virus and the revertant replicated rapidly in the brain and spread to the liver causing a lethal hepatitis. Ts-342, however, replicated to a much lesser extent within the brain and could not be detected in the blood or liver. The ts lesion in the genome of ts-342 seems, therefore, to determine the outcome of the infection.

Animals↗

Rapid change of the repertoire of variant surface glycoprotein genes in trypanosomes by gene duplication and deletion.

To study the evolution of the variant surface glycoprotein (VSG) repertoire of trypanosomes we have analysed the DNA region surrounding the VSG 118 gene in different trypanosome strains. We find a remarkable degree of variation in this area. Downstream from the 118 gene a 5.7 X 10(3) base-pair DNA segment containing a potential VSG gene has been quadruplicated in strain 427 of Trypanosoma brucei, but not in most other strains analysed. The VSG 1.1000 gene, located immediately upstream from the 118 gene in one trypanosome strain, has been cleanly deleted in another. Our results are most easily explained by multiple unequal cross-overs between sister chromatids and are the first indication that sister chromatid exchange occurs in trypanosomes.

Animals↗

Mouse monoclonal antibodies direct phagocytosis of tumor cells by human monocytes.

Human peripheral blood monocytes were found to be capable of phagocytizing human B-non Hodgkin's lymphoma (NHL) cells coated with mouse monoclonal antibodies (MoAbs). The MoAbs used recognized idiotypic determinants on the surface immunoglobulin (Ig) of the tumor cells. MoAbs of IgG1 and IgG2a subclass were equally effective in inducing phagocytosis. Preincubation of the monocytes with heat aggregated Ig from human or mouse serum inhibited phagocytosis to the same degree, suggesting involvement of an Fc receptor on the monocytes that binds both human and mouse antibodies.

Animals↗

Restricted replication of mouse hepatitis virus A59 in primary mouse brain astrocytes correlates with reduced pathogenicity.

Temperature-sensitive (ts) mutants of mouse hepatitis virus A59 (MHV-A59) are drastically attenuated in their pathogenic properties. Intracerebral inoculation of mice with 10(5) PFU of mutant ts342 results in prolonged infection of the central nervous system, whereas 100 PFU of wild-type virus are lethal (M. J. M. Koolen, A. D. M. E. Osterhaus, G. van Steenis, M. C. Horzinek, and B. A. M. van der Zeijst, Virology 125:393-402, 1983). In the Sac(-) cell line ts342 grows as well at 37 degrees C (the body temperature of mice) as at 31 degrees C (the permissive temperature). There is, however, a difference in primary cultures of mouse brain astrocytes. After infection with ts342, astrocytes produced low levels of infectious virus (5.2 +/- 3.7%) compared with virus yields after infection with wild-type virus. The fraction of wild-type virus- and ts342-infected cells was similar. Electron microscopy showed in wild-type virus-infected cells abundant virions in smooth vesicles usually closely associated with a well-developed Golgi apparatus. In mutant-infected cells no mature ts342 virus particles were found. There was no difference between ts342 and wild-type virus regarding the intracellular virus-specific RNAs. In ts342-infected cells the viral glycoproteins E2 and E1 were not detectable or were barely detectable. Either the mRNAs for the glycoproteins are not translated or the proteins are rapidly broken down. Revertants of ts342 were isolated. They grew as well as wild-type virus in astrocytes, indicating that they apparently produced sufficient amounts of E2 and E1, the ts defect itself rather than a second site mutation is responsible for the defect in replication, and the ts defect acts in unison with host-cell factors. The revertants also regained the lethal properties of wild-type virus.

Animals↗

In vitro differentiation and progression of mouse mammary tumor cells.

We have isolated clonal cell lines from a transplanted adenocarcinoma induced by the RIII strain of mouse mammary tumor virus in a BALB/c mouse. Three major morphological cell types of these lines are developmentally linked; polygonal cells give rise to cuboidal and then to elongated cells. All cell lines expressed markers that are characteristic of mammary basal cells. In addition, the polygonal lines contained cells that have cell markers and ultrastructural features of epithelial cells; in these lines an occasional cell was found with myoepithelial features. The cuboidal and elongated lines lacked many epithelial differentiation characteristics and showed no myoepithelial differentiation. The cell lines contained variable numbers of acquired mouse mammary tumor virus and ecotropic murine leukemia virus proviruses. The various subclones derived from the original cell lines contained, in addition to the acquired proviruses of the parental line, one or more unique proviruses of either mouse mammary tumor virus or ecotropic murine leukemia virus origin. These unique insertions were used as genotypic markers to demonstrate the clonal relationship of the cell lines. Both polygonal and elongated cells are tumorigenic and give rise to adenocarcinomas and sarcoma-like tumors, respectively. In contrast, the cuboidal cells are poorly tumorigenic. Since cuboidal cells are derived from the polygonal cells, this suggests that tumor progression in this system proceeds via intermediates that are either poorly or nontumorigenic.

Adenocarcinoma↗

Biochemical characterization and cellular localization of a formalin-resistant melanoma-associated antigen reacting with monoclonal antibody NKI/C-3.

A monoclonal antibody (MAb NKI/C-3) produced against a purified membrane preparation of human melanoma cells reacts preferentially with sections of formaldehyde-fixed and paraffin-embedded tissues of melanoma, nevocellular nevi, carcinoids and medullary carcinomas of the thyroid. NKI/C-3 did not react with basal-cell carcinoma, brain tissue or brain tumors, and in only 14/196 other tumors was a clear cross-reactivity observed, e.g. with prostate carcinomas and a minority of primary breast, ovarian, lung and clear-cell carcinomas. This antibody was used in an immuno-electron microscopic study for the cellular localization of the antigen. The antigen was dispersed in the cytoplasm of melanoma cells, and more concentrated inside vacuoles and sometimes also on the melanosomes. Occasionally, the antigen was seen on the cell surface. The nature of the antigen was determined in an enzyme immunoassay (EIA). It was found that the antigen is a glycoprotein with a disulfide-dependent configuration that is essential for recognition by the MAb. The antigen was distributed heterogeneously during gel filtration as well as during SDS-polyacrylamide gel electrophoresis in the region of 25-110 kd proteins. A purified antigen preparation that was obtained after affinity chromatography on a column of MAb NKI/C-3 linked to Sepharose 4B contained a carbohydrate:protein ratio of 1:3.5.

Animals↗

Hepatocyte surface molecule involved in the adhesion of TA3 mammary carcinoma cells to rat hepatocyte cultures.

To identify adhesion molecules involved in the formation of liver metastases, we prepared monoclonal antibodies against rat liver plasma membranes, that inhibited the adhesion of mouse metastatic TA3 mammary carcinoma cells to rat hepatocytes in vitro. Two such antibodies (designated OPAR-1 and OPAR-2) were obtained, that inhibited by over 70%. As assessed with gel electrophoresis and immunoblotting, these antibodies bound predominantly to plasma membrane proteins with molecular weights of 125,000 and 100,000. Using immunoelectron microscopy, the OPAR antigen was found to be abundantly present on the sinusoidal surface of hepatocytes, and in addition on contiguous hepatocyte surfaces and Kupffer cells, but was absent from sinusoidal endothelial cells. The tissue distribution and molecular weight indicate that the OPAR antigen is different from other hepatic adhesion molecules. Adhesion of MB6A lymphosarcoma cells was not inhibited by OPAR antibodies, indicating that these cells adhere to hepatocytes via a different surface molecule.

Animals↗