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Biomedical subjects

M F Lavin

Publications and source records attributed to M F Lavin.

At least 109 records · Page 6Linked to original sources

Radiation-activated DNA-binding protein constitutively present in ataxia telangiectasia nuclei.

We have recently described the appearance of a specific DNA-binding protein in nuclei from human cells exposed to ionizing radiation which was not detected in nuclear extracts from unperturbed cells (Singh, S. P., and Lavin, M. F. (1990) Mol. Cell. Biol. 10, 5279-5285). We report here a similar activity which is constitutively present in nuclei of both unirradiated and irradiated cells from patients with the human genetic disorder ataxia telangiectasia (A-T). Activity was present in unirradiated nuclear extracts from 3 A-T cell lines of different complementation groups, but was not detected or was present only at a low level in 4 controls. Active protein was detected in the cytoplasm of both cell types. Exposure to ionizing radiation did not change the amount of DNA binding activity in A-T nuclei but led to an increase in nuclei from 4 control cell lines. Purification of the binding activities from A-T nuclei and control cytoplasm was carried out by affinity chromatography, as described previously for control extracts (Teale, B., Singh, S. P., Khanna, K. K., Findik, D., and Lavin, M. F. (1992) J. Biol. Chem. 267, 10295-10301). Southwestern analysis and UV cross-linking confirmed the presence of a major DNA-binding species at 70 kDa in both cases with a minor binding activity at 47 kDa also evident. It was not possible to distinguish between the binding activities from A-T and control cells under different conditions, and phosphorylation was required for binding activity in both cases. Footprint analysis revealed that the same sequence was being recognized by the control and A-T proteins. The constitutive presence of a specific radiation-responsive DNA-binding protein in A-T cells may be indicative of a continuous state of stress in these cells.

Ataxia Telangiectasia↗

Immuno-dot blot as a rapid diagnostic method for detection of chlamydial infection in koalas (Phasolarctos cinereus).

The sensitivity and specificity of an immunoscreening test for anti-chlamydial antibodies in koala (Phasolarctos cinereus) serum were determined after the adsorption of non-specific antibodies. The results of the test were compared with complement fixation tests, tissue culture, gene probe analysis and dot blot immunoscreening for host-borne chlamydial antigen. The immunoscreening test was the most sensitive test for the identification of chlamydial infection in koala serum samples, furthermore it was rapid, taking approximately 16 hours to complete, and inexpensive. However, for the assay of swab material from koalas, gene probe analysis remains the most sensitive method of detection of chlamydiae.

Animals↗

Cloning and characterization of a human protein phosphatase 1-encoding cDNA.

While sequence information is available for a number of eukaryotic protein phosphatase 1 (PP1)-encoding genes, the cloning and characterization of a complete human pp1 gene has not been reported. We have used two conserved regions within the pp1 family of genes to synthesize oligodeoxyribonucleotide primers for the amplification of a 438-bp sequence from human mRNA. This DNA fragment was sequenced to verify that it corresponded to a pp1 cDNA and it was used to screen a human cDNA library to isolate a full-length clone. The deduced amino acid (aa) sequence identified a protein of 330 aa in length. Comparison with the rabbit pp1 cDNA sequence showed some nucleotide differences, largely at the third position of the codon, with complete concordance at the aa level. Northern blot analysis revealed an mRNA of approximately 1.6 kb.

Amino Acid Sequence↗

Peptide epitope induced apoptosis of human cytotoxic T lymphocytes. Implications for peripheral T cell deletion and peptide vaccination.

Cloned CTL can be induced to undergo apoptosis with cognate peptide epitopes. This phenomenon has been attributed to self recognition and self destruction of individual, isolated CTL and/or Ag-induced cell death. It has been claimed that these mechanism are responsible for extrathymic elimination of primed CTL. In our study the contribution of all known effector mechanisms (single cell self killing, CTL-CTL killing, backward killing, bystander killing, Ag-induced cell death, and veto) to peptide epitope-induced destruction of CTL was evaluated. CTL-CTL killing was found to be the dominant mechanism, with a significant contribution from bystander killing. CTL were as susceptible to peptide-mediated lysis as conventional target cells. CTL, which were actively killing target cells, were not refractory to the lytic mechanisms of other CTL but paradoxically, avoid destruction by their own lytic mediators when delivering the lethal hit. These data imply that mature primed CTL are not deleted in the periphery as a direct result of the lysis of target cells, although, under certain circumstances peripheral CTL-CTL killing may be envisaged when cognate peptide is used for vaccination.

Amino Acid Sequence↗

Calyculin A, a potent inhibitor of phosphatases-1 and -2A, prevents apoptosis.

Exposure of the Burkitt's lymphoma cell line BM13674 cells to gamma-radiation or heat results in extensive DNA fragmentation and morphological changes characteristic of apoptosis. When cells were gamma-irradiated in the presence of calyculin A, a potent inhibitor of the catalytic subunit of phosphatases 1 and 2A, apoptosis was prevented. This was shown to be concentration dependent with maximal inhibition occurring at 20nM. Both DNA fragmentation and the morphological features characteristic of apoptosis were prevented by incubation with calyculin A. The concentration required to inhibit apoptosis (20 nM) was considerably less than that reported previously for okadaic acid (500 nM), also an inhibitor of phosphatase activity as well as apoptosis. In addition, while okadaic acid caused a marked condensation of nuclear material in both control and irradiated cells, while preventing apoptosis, no such changes in chromatin were evident in the presence of calyculin A. It is clear from these data and other results with protein synthesis inhibitors that the complete machinery for apoptosis, induced under certain conditions, preexists in the cell, and phosphatase activity plays a key role in this process.

Apoptosis↗

Comparison of type I and type II Chlamydia psittaci strains infecting koalas (Phascolarctos cinereus).

The native Australian marsupial Phascolarctos cinereus, otherwise known as the koala, is prone to infection by the obligate intracellular parasite Chlamydia psittaci, which causes ocular 'pink eye' and urogenital 'dirty tail' diseases. Several chlamydial DNA probes to both chromosomal and plasmid sequences were used to type by Southern blot analysis 51 samples taken from wild and captive koalas from habitats on the eastern seaboard of Australia as far apart as Queensland and Victoria. Two types of C. psittaci were observed and called types I and II. Type II was found more frequently than type I and occurred in both ocular and urogenital samples, while type I showed a strong but not absolute preference for ocular sites. Cross-hybridization analyses indicated that type I and type II had about 10% DNA sequence identity to each other. DNA analyses showed that type II was very closely related to some ovine and bovine chlamydiae but type I could not be related to any other C. psittaci strain available. Light and electron microscopic analyses of infected BGM monolayers revealed that the two strains were similar in morphological characteristics. The type I strain was considerably more infectious than the type II strain in BGM cells and in the yolk sacs of embryonated eggs. A PCR based assay detected both type I and type II koala chlamydiae in samples that had been negative by Southern blot and tissue culture and provided the first evidence that both types can occur simultaneously at the one site of infection.

Animals↗

Recombinant viral vaccines for enzootic bovine leucosis.

Recently published studies on the development and use of recombinant vaccinia virus (VV) vaccines incorporating either the complete envelope (env) gene or only a fragment of the env gene consisting of the coding sequence for the env glycoprotein 51 (gp51) and part of gp30 of the bovine leukaemia virus (BLV) are described. It has been reported that vaccination of sheep with recombinant VV vaccines containing the complete env gene appears to protect sheep against challenge infection with BLV. The evidence for this protection is based on the lack of persistence of high titres of anti-gp51 antibodies compared with unvaccinated BLV infected controls, on the enhanced CD4 proliferative responses to specific BLV gp51 synthetic peptides in the vaccinated sheep, and on the inability to detect BLV pro-virus by polymerase chain reaction in the vaccinated sheep after 4 months following challenge infection compared with continual detection in unvaccinated sheep over a 16 month trial period. It has been suggested that cell-mediated immune responses may be an important aspect of protective immunity against BLV infection and it has been reported that large tracts of amino acid sequences within the env and pol genes are highly conserved in different isolates from different countries which is of importance in designing peptide derived vaccines.

Animals↗

The adverse effect of fibrin-clot inhibiting drugs on intravesical bacillus Calmette-Guérin efficacy for superficial bladder cancer.

Bacillus Calmette-Guérin (BCG) is currently thought to act as a biological immune modifier in effecting antitumour activity. Recent evidence suggests that BCG binding to fibronectin (FN), a tissue glycoprotein, may be a prerequisite step in initiating this response. Drugs inhibiting the availability of exposed FN in the bladder after urothelial disruption may adversely affect the efficacy of BCG. Data are presented of 45 patients with tumour limited to mucosa (pTa) or carcinoma in situ (CIS) given intravesical BCG therapy, with (group 1) or without (group 2) fibrin clot-inhibiting drugs concurrently during treatment. The success rate of 11.1% for group 1 (1/9) patients was significantly less than that of 69.4% for group 2 (25/36), (chi 2 = 7.79, P < 0.01 Fisher's exact test) supporting the suggestion that the concurrent administration of fibrin-clot inhibiting drugs may adversely affect the outcome of BCG therapy.

Administration, Intravesical↗

Some aspects of the immune response of koalas (Phascolarctos cinereus) and in vitro neutralization of Chlamydia psittaci (koala strains).

Western-blot analysis was used to study the reaction of koala antisera, two specific polyclonal antibodies and one monoclonal antibody, with chlamydial antigens in koalas infected with Chlamydia psittaci. The koala sera recognized four C. psittaci surface antigens, corresponding to the major outer membrane protein (39.5 kDa), 31 kDa protein, 18 kDa protein and lipopolysaccharide. The S25-23 LPS specific monoclonal antibody inhibited chlamydial infection (55-67%) with both koala strains (type I and type II). Both koala antiserum and rabbit polyclonal antibodies against either type of chlamydia significantly reduced the number of infected cells resulting from type II infections at a dilution of 1 in 20. Rabbit antiserum against type II was effective in neutralizing infection by type II elementary bodies, but was less effective against type I infection. In addition, no koala antiserum was effective in neutralizing type I infection.

Animals↗

T-cell responses to highly conserved CD4 and CD8 epitopes on the outer membrane protein of bovine leukemia virus: relevance to vaccine development.

Bovine leukemia virus (BLV) is a retrovirus that infects cattle and sheep and may provide a model for studying human leukemia. Cell-mediated immune mechanisms may play a major role in protection against BLV infection. We describe here for the first time the identification of proliferative (CD4) and cytotoxic T-lymphocyte (CD8) epitopes of the gp51 envelope (env) protein of BLV. This protein and a recombinant form expressed by a vaccinia virus construct have been shown to be potential vaccine candidates. A complete series of overlapping peptides, 20 amino acids in length, was prepared to identify epitopes from gp51. These peptides were tested for the ability to elicit peripheral blood lymphocyte proliferation and cytotoxic T-lymphocyte responses in infected and uninfected cattle and sheep. Peptides 51-70 and 61-80 produced a proliferative response in lymphocytes from only uninfected animals (both sheep and cattle), and this was shown by T-cell subset deletion to be a CD4-mediated response. Seven BLV-infected sheep did not show a response to either peptide. Cytotoxic T-lymphocyte activity, however, was associated only with peptides 121-140 and 131-150. In this case, the response was demonstrated to be CD8 dependent and was found only in BLV-infected animals (sheep). Knowledge of the location of these T-cell recognition domains will complement data available on B-cell epitopes in gp51 and may be useful in the design of a subunit vaccine.

Amino Acid Sequence↗

Protection of sheep against bovine leukemia virus (BLV) infection by vaccination with recombinant vaccinia viruses expressing BLV envelope glycoproteins: correlation of protection with CD4 T-cell response to gp51 peptide 51-70.

We have previously constructed vaccinia virus (VV) recombinants containing a complete or truncated envelope (env) gene of bovine leukemia virus (BLV). Only recombinants carrying the complete env gene (VV-BLV2 and VV-BLV3) expressed env glycoprotein on the surface of virus-infected cells and produced an antibody response in rabbits. In the present study, these VV recombinants were used to immunize sheep prior to challenge with BLV-infected peripheral blood mononuclear cells. Both humoral and cell-mediated immunity were monitored in infected animals. Sheep inoculated with recombinants containing the complete env gene showed a CD4 response to a defined epitope of gp51, but this response was absent 4 months postchallenge. Anti-gp51 antibodies appeared in animals inoculated with complete env 2 weeks after challenge, reached a peak at 4 weeks, and subsequently declined over 16 months. No CD4 response was recorded in animals inoculated with recombinants containing truncated env gene (VV-BLV1). BLV-infected control animals and those animals receiving VV-BLV1 were slower to develop antibodies postchallenge, and the titers of anti-gp51 antibodies continued to increase over 16 months. Proviral DNA was detected by the polymerase chain reaction in the four groups at 6 weeks after challenge. However, it could not be detected 4 months postinfection in the VV groups inoculated with complete env. Provirus was present in the VV-BLV1 and control groups over the 16-month trial period. These results demonstrate that vaccination with VV recombinants containing the complete env gene of BLV protects sheep against infection and that protection correlated with a CD4 T-cell response to a defined epitope.

Animals↗

Ionizing radiation and UV induction of p53 protein by different pathways in ataxia-telangiectasia cells.

Cell cycle anomalies have been described in ataxia-telangiectasia cells after exposure to ionizing radiation. A recent report demonstrates that cells from these patients lack the ionizing radiation-induced increase in p53 protein seen in controls. We report here that an ionizing radiation-induced p53 response is reduced and/or delayed in cells from four ataxia-telangiectasia complementation groups. On the other hand, p53 induction is normal in all A-T complementation groups after exposure to UV-B light, an agent to which these cells are not hypersensitive. Specific inhibitors of protein kinase C and serine/threonine phosphatases prevented the radiation induction of p53 protein. Agents that produced double-strand breaks in DNA and/or inhibition of transcription caused an induction of p53 in the absence of radiation in control cells but not in ataxia-telangiectasia, but inhibitors of cell cycle progression such as mimosine and aphidicolin led to an increase in p53 in both cell types in the absence of radiation. These results suggest that there is more than one signal transduction pathway responsible for activation of p53, one of which is less efficient in ataxia-telangiectasia cells.

Aphidicolin↗

Purification and characterization of a DNA-binding protein activated by ionizing radiation.

Exposure of mammalian cells to a variety of agents leads to the activation of pre-existing proteins and the induction of specific genes. We have recently described the appearance of a specific DNA-binding protein in nuclei from cells exposed to ionizing radiation (Singh, S. P., and Lavin, M. F. (1990) Mol. Cell. Biol. 10, 5279-5285). This protein is present in the cytoplasm of unperturbed cells and is apparently translocated to the nucleus in response to radiation damage. We describe here the purification and characterization of this specific DNA-binding protein. Purification involved the use of affinity chromatography employing a multimeric form of the DNA-binding motif conjugated to cyanogen bromide-activated Sepharose. Three DNA-binding species were recognized by UV-cross-linking and South-Western analysis. The major species or that with the highest affinity was approximately 70 kDa in size. DNase-1 footprint analysis revealed a single binding site in the kappa immunoglobulin gene enhancer and in a putative control sequence upstream from the c-myc gene. At salt concentrations as high as 1 M, up to 40% of the DNA-binding activity was maintained and the Kd was calculated to be 1.205 x 10(-6) M-1. Binding activity was found to be modulated by phosphorylation. Removal of phosphate groups from the protein resulted in a major loss of binding activity. It is not clear at this stage whether the factor(s) described here plays a role in transcription control or a more general DNA-processing role in response to radiation damage.

Alkaline Phosphatase↗

Specific protein dephosphorylation in apoptosis induced by ionizing radiation and heat shock in human lymphoid tumor lines.

Apoptosis or programmed cell death is observed in a variety of organisms and tissues and is characterized by distinct morphologic changes to the cell. Although early indicators of this process have been described, their functional relevance remains unknown. We have used two-dimensional gel electrophoresis to look for characteristic and consistent changes in the phosphorylation state of proteins during apoptosis, induced by different agents, in the B cell lymphoma line, BM13674, and the T cell leukemia line, CEM-C7. We report that apoptosis induced by either heat treatment or by ionizing radiation exposure is accompanied by dephosphorylation of a limited number of specific proteins. The pattern of dephosphorylation was similar after both treatments in BM13674 cells. In CEM-C7 cells, dephosphorylation was also observed after heat and irradiation. One of these proteins corresponded to one dephosphorylated in BM13674 cells. Okadaic acid, an inhibitor of phosphatases 1, 2A, and, to a lesser extent, 2B, prevented apoptosis in all cases and inhibited dephosphorylation of this common protein as well as some of the others. It seems likely that activation of a phosphatase(s) or loss of activity of a kinase is of central importance in apoptosis in these systems.

Cell Death↗

Bistratene A: a novel compound causing changes in protein phosphorylation patterns in human leukemia cells.

Bistratene A, a polyether toxin isolated from the colonial ascidian Lissoclinum bistratum, causes incomplete differentiation of human leukemia (HL-60) cells apparently through a mechanism not involving protein kinase C. In view of the importance of phosphorylation/dephosphorylation in cellular growth and differentiation we have investigated protein phosphorylation in these cells following exposure to bistratene A, using two-dimensional polyacrylamide gel electrophoresis. Marked increases in the phosphorylation of a protein of 20 kDa, pl 6.7, and a basic protein of 25 kDa were observed after incubation with bistratene A. A comparison was made with cells treated with 12-O-tetradecanoylphorbol 13-acetate and bryostatin 5. While changes in phosphorylation patterns were observed with these two compounds, the 20 kDa and 25 kDa proteins did not undergo phosphorylation changes. The 20 kDa protein was induced rapidly by very low concentrations of bistratene A reaching near maximal levels with 10 nM at 15 min exposure. This protein was found to be localised to the cytoplasm. Phosphoaminoacid analysis demonstrated that the majority of 32P was present in serine and tyrosine residues. The increased phosphorylation of the 20 kDa protein appeared to be due to hyperphosphorylation of existing protein although there was some increase in the amount of the protein. These results suggest that bistratene A will be a useful tool with which to investigate cellular differentiation mechanisms.

Acetamides↗

Inhibition of apoptosis in human tumour cells by okadaic acid.

Gamma-radiation, tetrandrine, bistratene A, and cisplatin were all found to induce pronounced morphological changes characteristic of apoptosis and extensive DNA fragmentation in the human BM13674 cell line 8 h after treatment. Apoptosis induced in BM13674 cells by these diverse agents was markedly inhibited by 1 microM okadaic acid, a tumour promoter that inhibits protein phosphatases 1 and 2A. This compound also inhibited the appearance of apoptosis in fresh human leukaemia cells that had been exposed to gamma-radiation. The inhibition of apoptosis was confirmed using fluorescence microscopy and DNA gel electrophoresis. Dephosphorylation of a limited number of proteins was shown to be associated with apoptosis and okadaic acid prevented these dephosphorylations. Previous studies on the BM13674 cell line showed that an inhibitor of protein synthesis failed to prevent apoptosis in these cells. The present data provides further support that posttranslational modification of proteins, in particular, phosphorylation/dephosphorylation status, plays an important role in inhibition/activation of programmed cell death in different human cells after exposure to several cytotoxic agents.

Acetamides↗

An immunohistological demonstration of c-erbB-2 oncoprotein expression in primary urothelial bladder cancer.

Sections of formalin-fixed, paraffin-blocked tissue from 116 primary transitional cell carcinomas were stained immunohistochemically using a polyclonal antibody against the c-erbB-2 oncoprotein. Positive staining of cell membranes, known to correlate with gene amplification, was seen in 22 (19%) of the 116, with variable staining from tumour to tumour and within tumours themselves. Consistent with its mooted value as a prognosticator in bladder cancer, the c-erbB-2 oncoprotein was detected in 13 (of 40) grade III and 9 of the 26 muscle-invasive tumours examined compared to 1 (of 25) grade I and 6 (of 66) mucosa only (pTa) lesions. These results support further examination of c-erbB-2 expression in bladder cancer.

Aged↗

Enhanced levels of radiation-induced G2 phase delay in ataxia telangiectasia heterozygotes.

Ataxia telangiectasia (AT) is a multiform genetic disease characterized by immunodeficiency, cerebellar abnormalities, and cancer predisposition. Heterozygotes also have an increased risk of developing several different cancers. It has been estimated that as many as 18% of all patients with breast cancer, the cancer most clearly associated with AT heterozygotes, may be carriers of the AT gene. We describe an assay for AT heterozygotes that relies on the previous observation that cells from AT homozygotes show a greater and more prolonged radiation-induced accumulation in the G2 phase of the cell cycle than do normal controls. We showed that all 6 A-T heterozygotes show a greater extent of G2 phase delay at different times postirradiation than do controls. The degree of accumulation was less than that observed in AT homozygotes. Only two of 22 controls showed overlap with heterozygotes at 18 hours postirradiation, and that number was reduced to one at the 24-hour point. As a group, AT heterozygotes were intermediate between controls and AT homozygotes at both time points after irradiation. This assay is relatively simple and reliable and can be performed in any laboratory with access to both Epstein-Barr virus (EBV) for transformation of lymphocytes and a fluorescence-activated cell analyzer.

Ataxia Telangiectasia↗