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K Poláková

Publications and source records attributed to K Poláková.

At least 19 recordsLinked to original sources

Effect of proteasome inhibitors on expression of HLA-G isoforms.

HLA-G primary transcript is alternatively spliced into a number of mRNAs. In addition to full length HLA-G1 protein isoform these mRNAs might also encode truncated HLA-G protein isoforms lacking one or two extracellular domains. Whereas HLA-G1 protein isoform is regularly identified, truncated HLAG protein isoforms are not detected even if all alternative spliced mRNAs are present in cells. The absence of entire domain(s) renders the truncated HLA-G protein isoforms incapable of binding peptide and beta2-microglobulin. These features of truncated HLA-G protein isoforms may result in their rapid degradation by proteasomes. Here we show that despite the presence of all alternatively spliced HLA-G transcripts in JEG-3 cells pretreated with proteasome inhibitors only a full length HLA-G1 protein isoform was regularly detected. Interestingly, immunoblot analysis showed slight increase of HLA-G1 protein in cells pretreated with proteasome inhibitors, although the expression of HLA-G1 transcript was basically not affected. Expression of HLA-G3 transcript increased in JEG-3 cells pre-incubated with LLL, however, neither HLA-G3 nor other HLA-G short protein isoform was regularly detected. In K562 transfectants proteasome inhibitor LLL greatly enhanced expression of the HLA-G1 and -G2 transcripts as well as corresponding protein isoforms. Flow cytometry analysis showed that in cells pre-treated with proteasome inhibitors cell surface expression of HLA-G1 protein decreased but the quantity of intracellularly localized HLA-G antigens increased. Altogether our results suggest that truncated HLA-G proteins isoforms are not detected in JEG-3 cells as a result of their instability and the low translation efficiency of truncated HLA-G transcripts.

Choriocarcinoma↗

Binding analysis of HLA-G specific antibodies to hematopoietic cells isolated from leukemia patients.

Expression of HLA-G on the surface of malignant hematopoietic cells isolated from leukemia patients was analyzed by flow cytometry using monoclonal antibodies (mAbs) recognizing both, intact HLA-G complex (87G, 01G and MEM-G9) as well as HLA-G free heavy chain (4H84, MEM-G/1 and MEM-G/2). Prerequisite of HLA-G detection by mAbs specific to free heavy chain was mild acid treatment, which dissociates intact HLA-G complex. All mAbs, with the exception of 4H84 mAb, did not indicate the presence of HLA-G antigen in leukemia cells. Positive staining with 4H84 mAb was detected in acid-treated cells isolated from 16 out of 30 patients. Intensity of staining increased after IFN-g pre-incubation in most cases. Immunoblot analyses and RT-PCR, however, failed to detect HLA-G antigen or HLA-G transcripts in cells that bind 4H84 mAb after acid-treatment. The binding of 4H84 mAb can be explained by the acid-induced cross-reactivity of this HLA-G specific mAb with classical HLA class I molecules [15]. The results described here further demonstrate that the HLA-G molecule is not expressed in freshly isolated human leukemia cells.

Adolescent↗

Analysis of the extracellular processing of HIV-1 gp160-derived peptides using monoclonal antibodies specific to H-2Dd molecule complexed with p18-I10 peptide.

The immunodominant peptide of human immunodeficiency virus 1 gp 160 for murine cytotoxic T cells of H-2d haplotype, has been originally identified as a 15 amino acid residue peptide P18IIIB (RIQRGPGRAFVTIGK) (Takahashi et al., 1988). Further studies have indicated that a more active form of the peptide is generated by removal of the C-terminal dipeptide by angiotensin-I-converting enzyme (ACE), and additional detailed studies have shown that the actual immunodominant peptide is a decamer P18-I10 (RGPGRAFVTI) (Kozlowski et al., 1993). The effect of proteolytic processing on the antigenicity of P18IIIB peptide and its analogs was investigated by functional T cell assays based on the ability of T cell receptor (TCR) to recognize a specific major histocompatibility complex class I (MHC-I)/peptide complex. Recently we described a new monoclonal antibody (MAb) KP15 directed against the MHC-I molecule H-2Dd complexed with the 10-mer peptide P18-I10. Using this MAb, the cell surface H-2Dd/P18-I10 complex can be easily detected by flow cytometry (Polakova et al., 2000). Here we examined whether peptides longer than P18-I10 decamer form H-2Dd complexes recognized by KP15 MAb. Further we also analyzed how the ACE processing of P18IIIB-related peptides of different length affects their ability to form complexes with H-2Dd recognized by MAb KP15. These experiments confirmed that the ACE digestion of 15-mer peptide P18IIIB is the most effective in the production of a peptide capable of forming complex with H-2Dd recognized by KP15 MAb. The ACE digestion of longer peptides (16-mer to 19-mer) did not produce a significant quantity of peptides, capable of forming H-2Dd complexes recognizable with by MAb KP15. Peptides shorter than P18IIIB (13-mer to 10-mer), notably the optimally sized P18-I10 peptide lost most of their capacity to form H-2Dd complexes recognized by KP15 MAb. Our results show that the extracellular processing of MHC-I-restricted peptides, which cannot be overlooked in designing peptide-based vaccines, can be also studied by as simple and rapid assay as flow cytometry, provided MAbs specific to a particular MHC-I/peptide complex are available.

Animals↗

Expression of the non-classical HLA-G antigen in tumor cell lines is extremely restricted.

It has been proposed that tumor cells frequently associated with partial or total loss of HLA class Ia expression may abnormally express HLA-G class Ib antigen. Such peculiar HLA class I expression would allow tumor cells to escape not only from CD8+T but also from NK-cell cytotoxicity. We studied the cell surface expression of HLA-G using flow cytometry with two HLA-G specific monoclonal antibodies (87G, 01G). The JEG-3 choriocarcinoma cell line, which constitutively expresses HLA-G antigens was used as a positive control. We did not detect the cell-surface HLA-G antigens in the following 75 tumor cell lines: melanoma (22), neuroblastoma (7), retinoblastoma (1), glioma (2), breast carcinoma (3), ovarian carcinoma (3), cervical carcinoma (1), colon carcinoma (3), bladder carcinoma (2), hepatocarcinoma (1), sarcoma (2) and leukemia cell lines: T-lymphocytes (6), B-lymphocytes (13) and myelo-monocytes (9). We found that some myelomonocytic cell lines express on their surface high affinity FcgammaRI (CD64) that may result in the binding of HLA-G specific mabs to their cell surface even in the absence of HLA-G molecules. Our panel of HLA-G negative tumor cell lines accommodated 62 cell lines for which similar analysis have not been reported and also contained 13 cell lines with total or partial loss of HLA class Ia molecules. Our observation imply that under normal culture conditions the cell surface HLA-G reactive with 87G and 01G mabs is absent in most tumor cell lines of different origin.

Antibodies, Monoclonal↗

[Atypically localized scrofuloderma].

Tuberculosis of the skin and peripheral subcutaneous lymphnodes represents the most frequent forms of extrapulmonary tuberculosis. The group of patients subjected to our observation had the highest incidence of tuberculous lymphadenitis. The second most frequent disease observed was scrofuloderma. Its profound colliquative form, the so-called tuberculosis subcutanea fistulosa profunda is extremely scarce. Our work describes one case of such a disease. The pathological process in our patient was localized in the perianal and perigenital region. Especially this localization is typical for other non-specific dermal diseases. The work stresses the tuberculous ethiology of the pathological process in this region from the differential diagnostic point of view. The fact that this disease has not been appropriately treated due to the lack of precedent cases during the past years, has caused long lasting physical and psychical suffering of the patient. (Tab. 1, Fig. 1, Ref. 5.)

Anal Canal↗

[Tuberculous lymphadenitis--the most frequent symptom of extra-pulmonary tuberculosis].

The work reports about the recently detected forms of tbc of skin and peripheral lymphnodes, which were confirmed in patients of the Dermatology Department of UTaRCH, Bratislava, Podunajské Biskupice in the period 1981-1989. From the total of 221 newly detected diseases the lymphadenitis or tbc cutis colliquativa occurred in 171 patients (77.4%). The lymphadenitis was confirmed in 140 patients (63.4%). Lymphadenitis, or scrofuloderma (tbc cutis colliquativa) most frequently inflicted the cervical subcutaneous lymphnodes--in 140 patients (81.9%). Unilateral infliction of lymphnodes prevailed. Incidence of these diseases was significantly higher in women (76%) than in men (24%). Within the process of differential diagnostics, in cases with inflicted peripheral subcutaneous lymphnodes it is necessary to take into consideration the possibility of their tuberculous etiology. (Fig. 1, Tab. 3, Ref. 7.).

Aged↗

New monoclonal antibodies specific to HLA class I and their application in the study of acid treatment effect on cell surface antigens.

New monoclonal antibodies (mAbs) against HLA class I antigens were prepared and characterized. Three mAbs (CLI-1, CLI-2, CLI-3) were directed to the heavy chain of HLA class I molecules and one mAb (B2M-1) is specific to beta 2-microglobulin. Using these mAbs, it was confirmed that acid treatment selectively eliminated cell surface HLA class I antigenicity. The treatment with citric acid solution resulted in preparation of cells with lower residual HLA class I surface molecules than was seen after the treatment with glycine buffer.

Animals↗

Type-common and type-specific monoclonal antibodies to herpes simplex virus types 1 and 2.

Seventeen monoclonal antibodies (Mabs) reacting specifically with the cells infected with herpes simplex viruses type 1 (HSV-1) and type 2 (HSV-2) were characterized by a variety of immunological tests such as radioimmunoprecipitation, immunoblotting and virus-neutralization. The majority of Mabs was directed against glycoprotein B (anti-gB), six reacted with glycoprotein C (anti-gC) and one with glycoprotein G (anti-gG). Six anti-gB Mabs reacted with both types of HSV (anti-gB-1,2), two anti-gB and all the six anti-gC Mabs have been specific for HSV-1 (anti-gB-1 and anti-gC-1). The remaining two anti-gB Mabs and the anti-gG have been specific to HSV-2 (anti-gB-2 and anti-gG). Only three out of the seventeen examined Mabs neutralized the virus.

Animals↗

Characterization of a new monoclonal antibody (TR-19) against human transferrin receptor and its application in topographic study.

A new monoclonal antibody TR-19 (IgG2a) directed to the human transferrin receptor (CD71) was prepared after immunization of BALB/c mice with human non-T, non-B ALL cell line REH-6. This monoclonal antibody (mAb) reacted in immunofluorescence with all human cell lines tested. The reactivity with human peripheral blood leukocytes was observed only after stimulation with phytohemagglutinin (PHA). The protein precipitated by mAb TR-19 has an apparent molecular weight of 180 kDa under nonreducing and 90 kDa under reducing conditions. Sequential immunoprecipitation showed that mAb TR-19 recognizes the same antigen as the reference anti-transferrin receptor mAb OKT9. The mAb TR-19 coprecipitates the radioiodinated transferrin as a complex with its receptor. The mAb TR-19 with other three mAbs (OKT9, 5E9 and MEM-75) was used in the topographic study of the transferrin receptor. By competitive binding radioimmunoassay it was found that these mAbs recognize two distinct antigenic sites: One is specified by mAbs TR-19 and OKT9 and the second by mAbs 5E9 and MEM-75.

Animals↗

Study of monomorphic determinants on DR molecules of HLA class II antigens.

The properties of monomorphic antigenic determinants on DR molecules of HLA class II antigens were analyzed with a panel of mouse monoclonal antibodies (mabs). Competition assays and immunoblottings showed that these mabs recognize three distinct antigenic sites. The cluster of antigenic determinants specified by mabs Bra30, Bra38, HL-39, MEM-12 and L243 belongs to the first antigenic site. The second antigenic site was demonstrated only with mab Bra20. The first two antigenic sites were detected only on DR molecules and they both depended on conformation and/or association of heavy and light chains of HLA class II molecules. Finally, the third cluster of antigenic determinants recognized by mabs Bra13, Bra22, Bra70, HL-38, and HL-40 is localized on light chains of both, DR and DP, molecules of HLA class II antigens. On the contrary to the mabs against the first two antigenic sites, reactivity of mabs with the third antigenic site was not affected by denaturation of HLA class II molecule.

Antibodies, Monoclonal↗

Rimantadine effects on the elasticity of bilayer lipid membranes and on ion transport through gramicidin D channels.

The effect of the antiviral preparation rimantadine on lipid bilayer membranes (BLM) was studied by measuring the modulus of elasticity in the direction normal to the surface (E perpendicular) and by estimating the conductance lambda, the lifetime tau of single gramicidin D channels (GRD), and the coefficient of nonlinearity beta of current voltage characteristics (IVC) of GRD-modified BLM. Rimantadine induced a nonmonotonic change in E perpendicular of BLM prepared from a mixture of egg lecithin with cholesterol: at relatively low rimantadine concentrations (0-40 micrograms/ml) E perpendicular first increased, reached a maximum and started to decrease. The effectivity of rimantadine was dependent on the cholesterol concentration in the BLM. Changes in E perpendicular suggest an increased ordering of the lipid bilayer at low rimantadine concentrations and formation of clusters of the preparation at concentrations exceeding those necessary to obtain maximal values of E perpendicular for the given BLM lipid composition. Rimantadine concentrations lifetime by approximately 20 percent, affected the degree of IVC nonlinearity and superlinearity of GRD-modified membranes, which suggests some effect on the height of the barrier at the ionic channel mouth and in its centre.

Cholesterol↗

Isoforms of leukocyte common antigen (CD45) on human neoplastic hematopoietic cell lines.

Leukocyte common antigen (LCA) isoform expression patterns were examined on different human hematopoietic cells and cell lines with the aid of the immunoblotting technique utilizing two anti-LCA monoclonal antibodies elicited by an ALL cell line and able to detect four isoforms (180, 195, 205 and 220 kDa) of LCA on peripheral blood lymphocytes from healthy donors and some neoplastic hematopoietic cell lines. Fourteen leukemia/lymphoma cell lines of different origin and immunophenotype, as well as three nonhematopoietic human tumor cell lines were examined by this technique. Human hematopoietic cell lines expressed two to four different polypeptide chains (180, 195, 205 and 220 kDa). Non-T, non-B cell lines, some B-cell lines and monocyte lymphoma cell line U 937 predominantly expressed higher molecular weight isoforms. In myeloid leukemia cell lines examined the expression of lower molecular weight isoform(s) predominated. Individual variability in LCA isoform patterns on cell lines precluded the strict correlation between these patterns and immunophenotype of the examined cell lines.

Antibodies, Monoclonal↗

Monoclonal antibody directed to MHC class I antigen (Bra23/9): characterization and utilization for study of antigen expression in differentiation of U 937 cell line.

The monoclonal antibody Bra23/9 (IgG2a) elicited by a non-T, non-B ALL cell line (REH), reacted in microscopic immunofluorescence, enzyme-linked immunoassay (ELISA), complement-dependent cytotoxicity tests and immunocytofluorometric measurements with hemopoietic cell lines and peripheral blood lymphocytes, monocytes and granulocytes from healthy donors in a pattern characteristic for MHC class I antigens. Immunoprecipitation of lactoperoxidase radioiodinated cell surface proteins and surface sialoglycoproteins radiolabeled by sodium metaperiodate/tritiated sodium borohydride technique confirmed the structure gp44,p12 (consisting of a 44 kDa glycopeptide linked with a nonglycosylated 12 kDa peptide) typical for MHC class I antigen(s) as a structure recognized by the Bra23/9 monoclonal antibody. The increase of MHC class I antigen density (immunofluorescence intensity) induced by a phorbol ester (TPA) in monoblast U 937 lymphoma cell line was observed by immunocytofluorometry as a predominant tendency in several TPA-induction experiments, where a certain variability among individual experiments in TPA-induced MHC class I antigen alterations was observed.

Antibodies, Monoclonal↗

Monoclonal antibodies to glycopolypeptides HA1 and HA2 of influenza virus haemagglutinin.

Anti-haemagglutinin monoclonal antibodies were prepared and their HA1 or HA2 specificity was determined by solid phase radioimmunoassay (RIA) using purified viral haemagglutinin (HA) and haemagglutinin glycopolypeptides HA1 and HA2, by radioimmunoprecipitation followed with SDS-PAGE, by immunoblotting and by inhibition of virus-induced haemagglutination. The capacity of these methods to estimate HA1 or HA2 specificity of anti-HA monoclonal antibodies (MoAb) was compared. HA1 specificity was demonstrated for all hybridomas originating from lymphocytes of mice immunized with complete influenza virus, except IIF4 hybridoma which was HA2-specific. All hybridomas obtained with lymphocytes from mice immunized with HA glycopolypeptide HA2 were HA2-specific. Anti-HA2 MoAb neither inhibit haemagglutination induced by the virus or by HA subunits nor neutralized viral infectivity, either alone or in mixture. As expected, all anti-HA1 MoAb were H3 subtype-specific, showing usually good reactivity only with viruses close to the virus strain used for immunization. Two anti-HA1 MoAb (IVA1 and IVG6) showed unusual cross-reactivity within the H3 subtype. All anti-HA2 MoAb were broadly cross-reactive within the H3 subtype. Moreover, a half of them showed high cross-reactivity with influenza viruses of the H7 HA subtype. But the same antibodies did not react with HA of H1, H2 and H8 subtypes.

Animals↗

Human neoplastic cell line distribution, immunoprecipitation and immunohistopathological study of a gp200 cell surface glycoprotein (LCA) detected by a monoclonal antibody elicited with an ALL cell line.

The antigen recognized by a newly produced monoclonal antibody (bra55; IgG1) elicited by the non-T, non-B acute lymphoblastic leukemia cell line REH 6, was expressed on all examined hemopoietic neoplastic cell lines (including non-T, non-B, T, B and myeloid leukemia cell lines), but not on examined nonhemopoietic human tumor cell lines (such as carcinoma, sarcoma, melanoma and neuroblastoma cell lines), as demonstrated by indirect immunofluorescence and enzyme-linked immunoassay. Specific immunoprecipitation of 125I-lacto-peroxidase radioiodinated cell surface proteins and sodium metaperiodate/tritiated sodium borohydride 3H-radiolabeled cell surface sialoglycoproteins followed by electrophoretic analysis (SDS-PAGE) demonstrated that the immunoprecipitated antigen is a cell surface 200 kDa sialoglycoprotein (on the non-T, non-B ALL cell line REH 6), with variation in its electrophoretic mobility (in the Mr range of 170,000-210,000) on different examined cell lines. These properties are characteristic for the leukocyte common antigen (LCA, T200). Immunoperoxidase staining of several normal and malignant tissues, as well as some nonhemopoietic tumor tissues confirmed the type of antigen tissue distribution pattern characteristic for LCA.

Antibodies, Monoclonal↗

Indication and study of antigenic properties of influenza virus internal proteins by means of monoclonal antibodies.

Influenza A and B viruses isolated from animals and man were studied by solid phase radioimmunoassay (SP RIA) using monoclonal antibodies to the A/Dunedin/4/73 strain nucleoprotein (NP). Only influenza A viruses isolated before 1980 interacted with the monoclonal antibody set used, while strains isolated between 1980 and 1983 failed to do so. It was shown that RIA employing monoclonal antibodies was useful for rapid identification of influenza virus NP in the allantoic fluid containing fresh influenza A virus isolates.

Animals↗

Monoclonal antibodies against MHC class II antigens elicited with a human non-T, non-B acute lymphoblastic leukemia cell line.

A series of seven monoclonal antibodies recognizing cell surface antigens of similar distribution on a panel of leukemia/lymphoma and lymphoblastoid human cell lines was prepared by hybridoma technique after immunization with non-T, non-B acute lymphoblastic leukemia cell line REH. Immune reactivity of these monoclonal antibodies with B-lymphoblastoid and lymphoma cell lines, as well as with non-T, non-B leukemia cell lines but not with T-leukemic and myeloid leukemic cell lines (with the exception of myeloid leukemia cell line KG 1) was demonstrated by indirect immunofluorescence. No reactivity was observed with the examined human non-hemopoietic tumor cell lines, except melanoma cell lines HMB-2 and SK 1477. These antibodies immunoprecipitated a similar cell surface bimolecular glycoprotein complex consisting of two glycosylated chains (gp30, 35), as demonstrated by immunoprecipitation of cell surface 125I-lactoperoxidase radioiodinated, periodate/tritiated borohydride radiolabeled and 35S-methionine metabolically radiolabeled proteins of REH cells. These properties, typical of MHC class II antigens correspond also to immunoperoxidase staining of lymph nodes with some selected antibodies.

Antibodies, Monoclonal↗

Hemopoietic cell line distribution and immunoprecipitation of cell surface proteins recognized by two newly prepared monoclonal antibodies elicited by a human non-T, non-B leukemia cell line.

Two newly prepared monoclonal antibodies elicited by a human non-T, non-B acute lymphoblastic leukemia cell line REH recognized distinct antigenic specificities characterized by the pattern of their immunofluorescence reactivities with a panel of hemopoietic cell lines and by immunoprecipitation of 125I-lactoperoxidase radioiodinated cell surface proteins, as well as periodate/tritiated borohydride radiolabeled cell surface sialoglycoproteins. Monoclonal antibody anti-p30 (BraFB6; IgG2b) recognized an antigen similar in its distribution to MHC class II antigens and immunoprecipitated a p30 cell surface protein, radiolabeled by lactoperoxidase catalyzed radioiodination. Monoclonal antibody anti-gp95 (BraEA10; IgG3) reacted in immunofluorescence intensively with non-T, non-B, T-leukemia and myeloid leukemia cell lines, less intensively with lymphoblastoid and lymphoma cell lines of B-phenotype and no reactivity was observed with examined non-hemopoietic human tumor cell lines. This antibody immunoprecipitated a lactoperoxidase radioiodinated and periodate/NaB3H4 tritium-radiolabeled cell surface sialoglycoprotein of approximately 95k (gp95) with variability in its apparent molecular weight, related to the origin of cells utilized for radiolabeling and immunoprecipitation.

Antibodies, Monoclonal↗