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Biomedical subjects

G Klein

Publications and source records attributed to G Klein.

At least 613 records · Page 34Linked to original sources

Epstein-Barr virus (EBV) antigen-specific leukocyte migration inhibition (LMI) in infectious mononucleosis (IM). I. Kinetics and response to a membrane protein on EBV-transformed cells.

Cell-mediated immune response of mononucleosis (IM) patients to Epstein-Barr virus (EBV)-determined antigens was measured by the leukocyte migration inhibition (LMI) assay. Patients in the acute phase of the disease failed to respond to partially purified nuclear antigen, EBNA, or to cell extracts that contained EBNA as the predominant EBV antigen. They showed a strong specific response to cell extracts enriched in early antigen (EA) and virus capsid antigen (VCA). The LMI response to EBNA appeared in convalescence in parallel with EBNA-specific antibodies, slightly later in children than in adults. Membrane fractions of EBV-carrying, virus nonproducer Raji cells induced an EBV-specific LMI at approximately the same time. A bacterial fusion protein containing the hydrophilic part of the virus-coded membrane antigen of latently EBV-infected cells also induced an EBV-specific response that parallelled the LMI reaction elicited by the Raji membrane fraction. This is in line with our previous finding (D. Sulitzeanu et al., J. Virol. 58, 230, 1986) that this fusion protein shares an epitope with Raji cell membranes.

Adolescent↗

Human T-cell leukemia virus-associated nuclear antigen (HTLV-NA).

Replication-competent retroviruses are not known to encode or induce nuclear antigens that are immunogenic in their natural hosts. We describe here the detection of a human T-lymphotropic virus (type I and type II) associated nuclear antigen (HTLV-NA) by an anticomplement immunofluorescence assay. Antibody to HTLV-NA is detected in 18 of 68 (26%) HTLV-I seropositives.

Antigens, Viral↗

Investigations of the influence of nonsteroidal antirheumatic drugs on the rates of sister-chromatid exchange.

For detection of possible damage to genetic material due to nonsteroidal antirheumatic drugs, a technique was used to determine sister-chromatid exchange rates. The SCE rates before and after therapeutic application of several nonsteroidal antirheumatic drugs (diclofenac, flurbiprofen, ibuprofen, indomethacin, isoxicam, ketoprofen, piroxicam, pirprofen, tiaprofenic acid) were determined in human lymphocytes in vivo. The cytogenetic investigations of these nonsteroidal antirheumatic agents did not reveal any genetic effects during a treatment period of two weeks.

Anti-Inflammatory Agents↗

Immunoprecipitation of Epstein-Barr virus EBNA1 protein using human polyclonal serum.

We have developed a method that permits the use of human polyclonal serum to immunoprecipitate BamH1-K EBNA(EBNA1) from EBV transformed cell lines and from cells transfected with an expression vector containing the Bam K region of EBV. Serum from healthy seropositive donors is preabsorbed once with lysate of EBV-negative Burkitt lymphoma cells, then fractionated by gel filtration. The main IgG fraction is then used for the immunoprecipitations. Immunoprecipitated material is visualized by immunoblotting using the same serum. Two proteins with apparent molecular weights of 74 and 62 kD are specifically precipitated from extracts of B95-8 cells. Several proteins are immunoprecipitated from cells transfected with the Bam K containing vector, the apparent molecular weights of the 4 major bands are 74, 68, 62 and 57 kD. Labelling of transfected cells with [3H]glycine and [32P]orthophosphate shows that the 74 and 62 kD proteins can be labelled with both isotopes.

Antigens, Viral↗

High-level expression of the Epstein-Barr virus EBNA1 protein in CV1 cells and human lymphoid cells using a SV40 late replacement vector.

To construct a recombinant plasmid designed to yield large amounts of the Epstein-Barr virus (EBV) nuclear antigen, EBNA1, the EBV BamHI-K fragment (B95-8 strain) was inserted into an expression vector composed of SV40 and pBR322 DNA. The vector replicates in both Escherichia coli and eukaryotic cells. Introduction of such a BamHI-K-containing vector into CV1 monkey cells (using DEAE-dextran, glycerol and chloroquine diphosphate) gave high yields of the correct size EBNA1 protein in 40-50% of the transfected cells. Maximal amounts of EBNA1 could be extracted from the cells at 65-72 h post transfection. Using a quantitative ELISA assay, it was estimated that transfected cells express 500-1000 times more EBNA1 than lymphoid cells, latently infected with EBV. A monoclonal antibody directed against EBNA1 immunoprecipitated two proteins of 74 and 62 kDa from transfected cells. These same two proteins were detected in immunoprecipitation and immunoblot experiments using human EBV-positive polyclonal serum, although this serum also detected several other protein products in transfected cells. In vivo labelling of transfected cells with [32P]orthophosphate showed that the 74- and 62-kDa proteins are modified by phosphorylation. The same vector construction was also used to transfect an EBV-negative human lymphoblastoid cell line (Ramos). Expression of the EBNA1 protein was obtained in up to 20% of the cells.

Animals↗

Intracellular pH control in Dictyostelium discoideum: a 31P-NMR analysis.

Phosphorus metabolites and intracellular pH have been examined in the slime mold Dictyostelium discoideum by non-destructive 31P-NMR measurements. In a spectrum from a suspension of aerobic amoebae, the major peaks are inorganic phosphate, nucleotide di- and triphosphates. In the corresponding perchloric acid extract, resonances originating from purine and pyrimidine nucleotides are resolved. Adenine nucleotides are the most abundant components, but the other nucleotides are present in significant amounts. In a spectrum from intact spores in a dormant state, only inorganic phosphate and polyphosphates are detected and nucleotides are no longer present in large amounts. Of particular importance is the ability to observe separately in aerobic amoebae the resonance of inorganic phosphate localized in two different cell compartments: the cytosol and the mitochondria. The cytosolic pH and mitochondrial pH have been measured as 6.7 and 7.7, respectively, on the basis of intracellular inorganic phosphate chemical shifts. They are essentially unaffected over a large range of external pH and they are not modified transiently or permanently during the initiation of the developmental program of the organism. A weak acid, such as propionate, which modifies the progression of differentiation by favoring prestalk cells, perturbs intracellular pH gradients by selectively decreasing mitochondrial pH without any effect on cytosolic pH.

Carbonyl Cyanide m-Chlorophenyl Hydrazone↗

Differentiation-dependent sensitivity of human B-cell-derived lines to major histocompatibility complex-restricted T-cell cytotoxicity.

Sets of Burkitt lymphoma lines and Epstein-Barr virus (EBV)-transformed lymphoblastoid cell lines (LCLs) derived from the same individuals were compared for sensitivity to cytotoxic T-lymphocyte (CTL) clones. Major histocompatibility complex class I antigen-restricted CTL clones were generated by stimulating the lymphocytes of an EBV-seropositive individual with the autologous LCL. One clone (BK-20) lysed the autologous and allogeneic HLA-A11-expressing LCLs but not mitogen-induced B lymphoblasts. Thus the clone was selectively cytotoxic for LCLs. Allospecific CTL clones directed against the HLA-A11 antigen were generated from an EBV-seronegative individual. One clone (WP-36) was selectively cytotoxic for the appropriate allospecific LCL, whereas another clone (WP-21) lysed also T and B lymphoblasts. None of the four Burkitt lymphoma lines established in parallel with the CTL-sensitive LCLs were lysed. Two of the Burkitt lymphoma lines were EBV-negative, and EBV-positive sublines were derived from these by in vitro infection. One but not the other of the two convertants became sensitive to all three types of CTL clones. The CTL-sensitive converted line had also acquired some LCL characteristics: increased cell size, aggregation, and a shift in several of the B-cell-specific surface markers. The CTL-resistant convertant expressed EBV antigens but showed no phenotypic change. These findings suggest that the cellular phenotype plays a decisive role in the sensitivity of B-cell-derived lines to the lytic effect of LCL-selective autologous and allogeneic CTLs.

Antigens, Surface↗

An Epstein-Barr virus (EBV)-determined nuclear antigen (EBNA5) partly encoded by the transformation-associated Bam WYH region of EBV DNA: preferential expression in lymphoblastoid cell lines.

Four peptides were synthesized on the basis of amino acid sequences deduced from a highly spliced transcript encoded by the Bam W, Y, and H fragments of the Epstein-Barr virus (EBV) genome [Bodescot, M., Chambraud, J. B., Farrell, P. J. & Perricaudet, M. (1984) EMBO J. 3, 1913-1917]. Rabbit antisera against three of the four peptides identified a nuclear polypeptide that varied between 22 and 70 kDa in molecular size. Four of 20 EBV-positive human sera contained antibodies against this polypeptide. Since this is the fifth EBV-determined nuclear antigen (EBNA) discovered in growth-transformed cells, it is designated EBNA5. The antigen was detected in virus nonproducer lines (less than 0.01% EBV early antigen expression) and is thus not dependent on the viral cycle. It was differentially expressed depending on the origin of the lines. All 10 lymphoblastoid cell lines tested expressed EBNA5, but it could not be detected in 10 of 11 EBV-carrying Burkitt lymphoma lines. Infection of tonsillar lymphocytes with the B95-8 strain of EBV induced six EBNA5-specific polypeptides that varied between 41 and 70 kDa in molecular size with regular increments of 6 kDa. This may be due to the fact that the EBNA5 coding sequence includes the Bam W internal repeat. Parallel infection of the EBV-negative Burkitt lymphoma line Ramos with the same viral substrain did not induce detectable levels of EBNA5, nor was this antigen present in permanently EBV-converted Ramos sublines. These findings imply that the expression of the viral genome varies among B cells having different phenotypes.

Antibodies, Viral↗

Multiple chromosomal rearrangements in a spontaneously arising t(6;7) rat immunocytoma juxtapose c-myc and immunoglobulin heavy chain sequences.

Spontaneously arising immunocytomas in Lou/Wsl rats contain a consistent translocation between chromosomes 6 and 7. The c-myc gene has been localized to chromosome 7 and has been shown to be rearranged in the majority of the rat immunocytomas. We now report the cloning of the rearranged 11-kilobase EcoRI c-myc fragment from the IgE-secreting IR75 tumor. Sequence analysis revealed that the cytogenetically visible t(6;7) translocation must have involved several events in this tumor. One event has led to the juxtaposition of c-myc and the switch mu region, in a head-to-head orientation. The breakpoint is approximately 850 base pairs upstream from the proximal c-myc promoter on chromosome 7. This area is distinct from the more common mouse plasmacytoma- and Burkitt lymphoma-associated translocation breakpoints and also differs from the known murine retroviral insertion sites. A second rearrangement has led to the transposition of sequences upstream from the switch gamma 1 region to the c-myc-distant end of the switch mu region, tail-to-tail. This requires at least two events, including one inversion. In addition to showing that identical loci (c-myc, immunoglobulin) are juxtaposed via chromosomal translocations in three different tumors (Burkitt lymphoma, mouse plasmacytoma, and rat immunocytoma) in different species (human, mouse, and rat), the multiple rearrangements in IR75 and some other tumors emphasize the selective value of c-myc activation by an immunoglobulin locus in the tumorigenic process.

Animals↗

Four virally determined nuclear antigens are expressed in Epstein-Barr virus-transformed cells.

The expression of Epstein-Barr virus (EBV)-determined antigens associated with growth-transformation of B cells was studied by immunoblotting with human sera from healthy donors. Four antigens were detected in EBV-carrying cell lines and in B lymphocytes early after infection with the transforming B95-8 substrain of virus. They were not found in uninfected cells, nor could they be demonstrated with sera lacking antibodies to EBV antigens. All four antigens were nuclear. Each of them varied in size in the different cell lines. The two antigens with the lowest molecular weight were identified as EBV-determined nuclear antigens (EBNAs) 1 and 2. The two high molecular weight antigens (140-160 kDa and 150-180 kDa, respectively) were detected with 6 of 16 EBV antibody-positive sera. These proteins appeared to be antigenically unrelated to each other and to EBNAs 1 and 2 and were designated EBNAs 3 and 4. Like EBNAs 1 and 2, they bound to double- and single-stranded DNA in vitro.

Antigens, Viral↗

Leukocyte migration inhibition demonstrates a human T-cell response to a membrane protein expressed in latent Epstein-Barr virus infection.

Leukocyte migration inhibition tests show that lymphocytes of Epstein-Barr virus-seropositive individuals recognize a Raji cell membrane antigen and a membrane protein encoded by Epstein-Barr virus in latently infected cells. Antiserum against the latter blocks the leukocyte migration inhibition triggered by both preparations, suggesting that the two antigens are associated with the same protein complex.

Antigens, Surface↗

Leukocyte migration inhibition detects cross-reacting antigens between cells transformed by Epstein-Barr virus (EBV) and EBV-like simian viruses.

The leukocyte migration inhibition (LMI) technique was used to measure the T cell-mediated immune response of Epstein-Barr-virus (EBV)-seropositive human donors to antigens associated with B cell lines of simian origin, transformed by simian EBV-like viruses, Herpesvirus papio (HVP), H. pan, H. gorilla and H. pongo. Extracts of cell lines carrying three of the four simian viruses (from gorilla, chimpanzee and orangutan) induced a positive LMI response, whereas lines carrying baboon-derived HVP were ineffective. None of the simian virus-transformed lines elicited an LMI reaction in human EBV-seronegative individuals. Leukocytes from patients with acute infectious mononucleosis (IM) failed to respond to any of the lines transformed by EBV or the simian EBV-like viruses. Such lines express the virally encoded nuclear antigen, but have only a low level of viral cycle-associated antigens. Extracts of the EBV-carrying human cell line P3HR-1 induced with 12-O-tetradecanoylphorbol-13-acetate to express high levels of early and virus capsid antigens (EA, VCA, respectively) however, elicited a strong response with leukocytes from patients with acute IM. During convalescence, IM patients became responsive to EBV, H. gorilla-, H. pan- and H. pongo-transformed lines, indicating that the LMI reaction induced by these simian virus-transformed lines was directed against the antigens expressed in immortalized cells rather than against antigens of the lytic cycle. It is highly probable that this reaction reflects a cross-recognition of the nuclear antigens associated with these four transforming viruses (excluding H. papio) at the level of human T cells.

Antibodies, Viral↗

An EBV genome carrying pre-B cell leukemia in a homosexual man with characteristic karyotype and impaired EBV-specific immunity.

A Burkitt-like lymphoma/leukemia confined to bone marrow was detected in a human T cell leukemia virus (HTLV)-III/LAV- and Epstein-Barr virus (EBV)-seropositive homosexual man. The tumor cells were EBNA-positive and contained at least 22 EBV genomes per cell. They were totally immunoglobin negative, but showed other markers for B cells detected with monoclonal antibodies. The patient had an impaired cellular immunity to EBV antigens and EBV-infected cells at diagnosis, but these reactions normalized during treatment. Cell clones derived from the bone marrow tumor in vitro also carried EBV and had six different marker chromosomes, including the typical 14q+ chromosome and a t(8 - ;8), which resulted in trisomy for the largest part of 8q. Partial trisomy for 12q was also observed. The patient completed six courses of combination chemotherapy and remains in excellent health after 34 months of follow-up.

Adult↗

[New statistical criteria for validation of the antiarrhythmic effects by acute oral testing].

There are no reliable criteria for the evaluation of acute effects after oral application of a high single dose of an antiarrhythmic agent from the analysis of data of 46 patients with frequent complex VPBs suffering from severe organic heart disease (19 CHD, 27 COCM), we developed a new statistical model. Our calculations were based on nine 10 h Holter ECGs (2 controls, 1 placebo test, 6 class 1 antiarrhythmic agent tests) and two 24 h Holter ECGs (1 control, 1 while on chronic treatment) recorded in each patient. Usually reductions in VPB frequency caused by the medication occurred within 1 hour after application and lasted greater than or equal to 4 hours. The VPB reduction in the course of time was assessed by the parameters r and R (r = VPB reduction of the 4 h interval in comparison to the last hour before application, R = VPB reduction of the 4 h interval in comparison with an analogous interval of a control day). Values of r and R greater than or equal to -50% were never observed simultaneously. In contrast, the majority of all patients developed r and R values greater than or equal to -50% after application of an antiarrhythmic agent, and were classified as responders. As shown at a Holter control after 1 week of chronic treatment, the predictive value of a positive test result was good.

Administration, Oral↗

Conditioned tumorigenicity of activated oncogenes.

Virally transduced oncogenes (v-onc) have a restricted target cell spectrum. They transform only a small part of the cell types in which they are expressed. Temperature-sensitive (ts) mutant studies have shown that some of them may act by blocking specific steps of maturation. If the cell can bypass the block, e.g., by a temporary switch off of the temperature-sensitive transforming protein, reexpression of the oncogene product at the permissive temperature may be unable to restore the transformed phenotype. Consideration of these facts, together with evidence concerning the reversion of the transformed phenotype and the suppression of tumorigenicity in hybrids derived from the fusion of normal and malignant cells, leads to the concept of "conditioned tumorigenicity." It states that the transforming and/or tumorigenic effect of a given oncogene, activated by structural or by regulatory changes, is restricted to specific and often quite narrow differentiation or maturation windows within each susceptible lineage. A similar restriction seems to apply to oncogenes activated by chromosomal translocation. The regular juxtaposition of the c-myc gene to one of the three immunoglobulin loci in Burkitt's lymphoma, mouse plasmacytoma, and rat immunocytoma is a case in point. The myc-carrying chromosome can break at many different places, within, upstream, or downstream of the gene, but not within its coding exons. This suggests that the break occurs at random and the myc protein plays an essential role in the selective, i.e., tumorigenic process. If so, other oncogenes should be equally transposable to the "Ig hot spots" during the long series of cell divisions in the preneoplastic target cell population that characterizes the prehistory of both BL and MPC. In other human B-cell leukemias and lymphomas, other (e.g., 11;14 and 14;18) translocations have been found, confirming that this can actually occur, but only in histologically different neoplasms. The exclusive involvement of myc in BL and MPC must be relatable to the specific functional features of the precursor cells and to the normal role of the myc protein. Recent evidence indicates that the myc gene is regularly turned off before or at the time when the cell enters a pathway that is programmed to lead it towards a resting Go state. Clonally expanded B-cells are believed to turn into resting memory cells upon waning of the antigenic stimulus. The normal, nontranslocated myc allele is regularly switched off in both BL and MPC, indicating that the cell has already obeyed a program involving the down-regulation of myc.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗