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Biomedical subjects

I Fodor

Publications and source records attributed to I Fodor.

At least 19 recordsLinked to original sources

Immunological characterisation of glycoprotein E of Aujeszky's disease virus.

A panel of 14 monoclonal antibodies (MAbs) against glycoprotein E (gE) of Aujeszky's disease (pseudorabies) virus (ADV), which constitutes a representative sample of naturally occurring gE-specific antibodies in sera from infected animals, was produced and characterised. Eleven topologically distinct antigenic domains represented by one or more MAbs were identified on gE by using these MAbs and three additional gE-specific MAbs. Three of the MAbs available recognised conformation-independent epitopes on gE, while the other 14 MAbs bound to conformation-dependent epitopes. By using the recombinant protein encompassing the N-terminal part of gE, which was expressed in Escherichia coli, all the conformation-independent epitopes of gE were mapped within the first 125 amino-terminal amino acids of gE. The epitopes of gE were demonstrated to be conserved among gE-positive laboratory, field and vaccine ADV strains. Conformation-dependent epitopes were shown to contribute largely to the overall antibody response to gE in naturally infected swine and immunised mice. Most of the infected animals responded weakly to the identified conformation-independent epitopes of gE, while the group of immunodominant epitopes of gE was represented exclusively by conformation-dependent antigenic determinants from different antigenic domains. The results clearly demonstrated that conformation-dependent epitopes play a crucial role in inducing the humoral immune response to gE of ADV during the natural infection of swine and immunisation of mice. The application of MAbs of our panel as research and diagnostic tools is discussed.

Animals

Detection of baculovirus gene expression in insect cells and larvae by low light video image analysis.

Recombinant baculovirus isolates BmNPVluc and AcNPVluc (Kopylova-Sviridova et al., 1990) expressing the luc gene in Bombyx mori N-4, and in Sf 9 and Trichoplusia ni 368 cells, respectively, were studied. Luc gene expression driven by baculovirus regulatory elements was detected by enzyme and photometric assays. The expression of recombinant AcNPVluc and BmNPVluc genes in infected larvae of the cabbage looper, T. ni and the tomato hornworm Manduca sexta was analyzed by low-light video image methods. Expression of the luc gene was detected at high levels in both the lepidopteran cells and in third to fifth instar T. ni larvae. However, no light emission was detected in M. sexta caterpillars. High levels of light emission were detected in T. ni larvae when occlusion bodies containing both wild type and recombinant virus were fed to larvae. The results of these experiments demonstrate that video image analysis can be used to monitor the progression of baculovirus infection in susceptible insect cells and larvae. Bioluminescence in recombinant virus infected larvae can be used to determine virus host range, to monitor latent virus infection in insect cells and to assess the spread of recombinant viruses in the environment. Video image analysis was found to be a sensitive method for rapid detection and semiquantitative measurement of luc gene expression in baculovirus infected cells and for monitoring virus infection in larval tissues.

Animals

In vivo studies on Aujeszky's disease virus mutants.

We report the construction and in vivo analysis of three recombinant Aujeszky's disease virus (ADV) strains containing mutations at three different loci of the genome. Mutant vE16lac was generated by deleting of 2976 bp DNA fragment which covers 1851 bp of the right arm of UL component, the UL-US junction, the "a" element of the internal repeat (IR) region and a putative LAT promoter. Mutant vRRlac was generated by deletion of a 1805 bp fragment from the coding region of the large and small subunits of ribonucleotide reductase gene (rr). The third mutant, vTKlac, was constructed using insertional mutagenesis of the thymidine kinase gene (tk). In the constructed mutants a lacZ gene expression cassette was either inserted into the target gene (vTKlac) or replaced the deleted DNA segment (vE16lac, vRRlac). Constructed recombinant viruses were analyzed by infecting pigs and monitoring the virus excretion from nasal fluid and disease symptoms. Tissue specimens were collected for virus isolation and pathological examination. Strains vTKlac and vRRlac retained the ability to establish an infection, but showed reduced replication efficiency in the respiratory tract and were unable to attack the central nervous system (CNS) of pigs. Thus, both deletions induce significant attenuation of the virus measured by decrease of virulence in infected pigs. Strain vE16lac showed disease symptoms similar to that of wild type and could be detected in the CNS of pigs.

Animals

Large and small subunits of the Aujeszky's disease virus ribonucleotide reductase: nucleotide sequence and putative structure.

We determined the entire DNA sequence of two adjacent open reading frames of Aujeszky's disease virus encoding ribonucleotide reductase genes with the intergenic sequence of 9 bp. From the sequence analysis we deduce that ORFs encode large and small subunits, with sizes of 835 and 303 amino acids, respectively. Amino acid sequence comparison of ADV RR2 with that of equine herpesvirus type 1, bovine herpesvirus type 1, HSV-1 and varicella zoster virus revealed that 48% of amino acids represent clusters of residues conserved in all compared sequences. In the N-terminal part ADV RR1 shows low homology to the RR1 of other herpesviruses. Rest of the RR1 protein contains highly conserved amino acid sequences divided by blocks of low homology.

Amino Acid Sequence

Nucleotide and deduced amino acid sequences of the glycoprotein gene of rabies virus vaccine strain Vnukovo-32.

The glycoprotein gene of the rabies virus vaccine strain Vnukovo-32 was sequenced and the deduced protein sequence was analyzed and compared with that of various laboratory and street strains. The amino acid sequence homologies of strain Vnukovo-32 were compared with fixed strains ERA, SAD B19, PV, HEP-Flury, CVS and two street strains, canine and CXX89-1, were 98.9% (6 replacements), 98.3% (9), 96.2% (20), 91.4% (45), 87.0% (68), 93.5% (34) and 91.4% (45), respectively. Sequence alignments of the proteins revealed that the most conserved region is the ectodomain, whereas the transmembrane and cytoplasmic domains showed significant divergence.

Amino Acid Sequence

Sense antisense DNA strand?

Recent evidence indicates that alphaherpesviruses express latency associated transcripts (LATs) from the antisense strand of immediate-early (IE) genes of the viral genome. It has been suggested that LATs containing extended open reading frames (ORFs), might be translated into (a) protein product(s). We found that a salient feature of some herpesvirus DNAs is a high GC preference at the third codon positions. The consequence of this feature is that the probability of a stop-codon appearing at two of the six reading frames of the DNA strand is very low. Therefore, the presence of an extended ORF does not necessarily mean that it is relevant to real translation.

Base Sequence

Structural features of the ribonucleotide reductase of Aujeszky's disease virus.

A gene construct of the Aujeszky's disease virus (ADV) genome was prepared and the DNA fragment encoding the ribonucleotide reductase was structurally characterized. We determined the entire DNA sequence of two adjacent open reading frames of the ribonucleotide reductase genes with the intergenic sequence of nine base pairs. From the sequence analysis we predict that Aujeszky's disease virus encodes a ribonucleotide reductase which comprises two polypeptides--large and small subunits, with sizes of 835 and 303 amino acids, respectively. Nucleotide and amino acid sequences of the large and small subunits of the Aujeszky's disease virus ribonucleotide reductase have been compared with that of other herpesviruses, and structural features of both proteins have been characterized.

Amino Acid Sequence

Overexpression and purification of enzymatically active recombinant integrase protein of Rous sarcoma virus.

The carboxy-terminal domain of polymerase gene of Rous sarcoma virus was cloned into an expression vector under the control of lac regulatory elements, resulting in the plasmid pMF1413. Upon isopropyl-beta-D-thiogalactopyranoside induction, viral integration (IN) protein was expressed in large quantity in Escherichia coli. The expressed recombinant protein was prepurified by successive washing of the bacterial pellet with 0.1 M NaCl and detergents. Further purification was performed in high yield by standard chromatography methods. The purified enzyme revealed selective DNA cleaving activity on supercoiled plasmid with the LTR-LTR junction fragment. The reaction was metal ion dependent, with a preference for Mn2+ over Mg2+, and showed substrate specificity at 1 mM MnCl2.

Avian Sarcoma Viruses

Transient expression assay in a baculovirus system using firefly luciferase gene as a reporter.

Transient gene expression assays were developed to assess the function of the regulatory sequences of baculoviruses Bombyx mori nuclear polyhedrosis virus (BmNPV) and Autographa californica nuclear polyhedrosis virus (AcNPV) in insect cells of Bombyx mori and Spodoptera frugiperda, respectively. DNA sequences encoding luciferase (luc) of the firefly Photinus pyralis was successfully employed in the expression assay as a reporter gene. Recombinant plasmids were constructed containing the luc gene under control of baculovirus-specific or heterologous promoters. Cotransfection of Bombyx mori and Spodoptera frugiperda cells with recombinant plasmids carrying virus-specific promoter sequences and BmNPV and AcNPV DNA, respectively, gave rise to efficient synthesis of luciferase (Luc), while heterologous promoters induced a low level of luc expression. We found that flanking sequences of the AcNPV DNA in the transfer plasmid contained an unknown promoter conferring an efficient luc expression. The activity of this promoter was modulated by the polh promoter sequences. The assay allows one to conduct highly sensitive monitoring of the transient expression of foreign genes from the transfecting plasmids prior to construction of recombinant viruses.

Animals

Transient expression of deletion mutants of the herpes simplex virus thymidine kinase-encoding gene in mouse fibroblast cells.

Previous studies have shown that at least three polypeptides of 43, 39 and 38 kDa are translated from separate AUG codons of the thymidine kinase (TK) encoding mRNA of herpes simplex virus type 1. In addition, small tk-specific transcripts initiated within the tk coding region were observed. However, functional activity of these three proteins and their role in establishing of the TK+ cell phenotype is not yet clear. In order to locate the 5' boundary of the gene encoding functionally active TK, we constructed a set of deletion mutants with truncated 5' ends and examined their ability to provide a TK+ phenotype after microinjection into nuclei of LTK- cells. The results demonstrate that nucleotide sequences upstream from the second ATG codon can be removed without affecting the TK+ phenotype. Deletion of the second start codon and its downstream region inactivates the TK function. Those deletion mutants which contain only the third ATG codon are TK-. Thus, the 38-kDa polypeptide that initiates at the third start codon is not endowed with the TK+ activity. Constructs containing deletions up to nt +210 and lacking all 5'-end canonical and aberrant transcription control regions, as well as first start codon, can provide the TK+ function.

Animals

Formation of large, membrane skeleton-free erythrocyte vesicles as a function of the intracellular pH and temperature.

Vesiculation of intact erythrocytes can be induced by decreasing their intracellular pH and then heating the red cell suspension to a critical temperature value. While at intracellular pH 6 vesiculation begins at 45 degrees C, further decrease in the intracellular pH lowers the critical temperature. In addition, the critical temperature value can be modified by varying the length of the interval between titration and heating as well as by changing the temperature during this interval. The vesicles are large (1-3.5 micron in diameter), haemoglobin-containing and completely free of skeletal proteins. Pretreatment of the cells with diamide and 2,4-dinitrophenol had no substantial effect on vesiculation, while N-ethylmaleimide, chlorpromazine and wheat germ agglutinin proved to be inhibitory. Increasing the osmolarity of the incubation medium markedly decreased the critical temperature: red cells suspended in a solution of 600 mosM NaCl vesiculated at 42 degrees C instead of 45 degrees C when the intracellular pH was decreased to 6. We propose that the vesiculation is due to a purely physicochemical molecular mechanism which affects the state and dimension of the membrane skeleton. We also discuss the possible role of an altered haemoglobin-membrane interaction in preventing low pH-induced intramembrane particle aggregation in the membrane skeleton-free vesicles.

Cell Fractionation

Nucleotide sequence of Citrus limon 26S rRNA gene and secondary structure model of its RNA.

The complete nucleotide sequence of Citrus limon 26S rDNA has been determined. The sequence has been aligned with large ribosomal RNA (L-rRNA) sequences of Escherichia coli, Saccharomyces cerevisiae and Oryza sativa. Nine extensive expansion segments in dicot 26S rRNA relative to E. coli 23S rRNA have been identified and compared with analogous segments of monocot, yeast, amphibian and human L-rRNAs. A secondary structure model for lemon 26S rRNA has been derived based on the refined model of E. coli 23S rRNA. It has been compared with other eukaryotic L-rRNAs models in terms of location of functionally important regions. Origin and evolution of L-rRNA expansion segments are discussed.

Base Sequence

[Recombinant RNA-dependent DNA-polymerase from Rous sarcoma virus. Isolation and properties].

Preparations of recombinant reverse transcriptase RSV were isolated from E. coli HB101/pMF14 cell cultures. The enzyme purified to homogeneity was shown to be made up of two subunits with molecular masses of 97 +/- 4 and 61 +/- 3 kDa. A comparison of enzymatic properties of recombinant transcriptase to those of the enzyme isolated from the RSV (Rauss sarcoma) virus demonstrated that in the preparations under study the recombinant reverse transcriptase exists in a subunit form, alpha beta, and may acquire a relatively stable configuration, alpha 2.

Avian Sarcoma Viruses

[Formation of an IS1-induced deletion in pNt6::IS1 plasmid].

The expression of oLpLN region of the plasmid pNT6 causes the high instability of the plasmid. Mutations in the promoter pL region and lesions in the structural part of the N gene result in the stable inheritance of the plasmid. The plasmids pNT6::IS1 containing the IS1-element inserted into the different loci of oLpLN region restore the high instability of the plasmid inheritance in the strain 4830 coding for oLpLN. The plasmids pIG3 and pIG4 of the series pNT6: :IS1 permit one to obtain the collection of random deletions in the cloned fragments induced by IS1-element.

Bacteriophage lambda

The distribution and aggregatability of intramembrane particles in phenylhydrazine-treated human erythrocytes.

Freeze-fracture analysis of phenylhydrazine-treated, unfixed human erythrocytes showed a random distribution of intramembrane particles both over membrane-bound Heinz-bodies and in the intervening areas when examined after fast freezing in liquid propane. The same results was obtained when unfixed, glycerinated red cells were frozen in liquid Freon. In contrast to previously published data (Low et al. (1985) Science 227, 531-533) these results indicate that binding of Heinz-bodies to the red cell membrane cannot cause morphologically detectable clustering of Band 3 in phenylhydrazine-treated red cells. Over numerous Heinz-bodies a decreased Acridine orange-induced particle aggregation was observed. The phenomenon of the oxidant-induced red cell fluorescence is described.

Erythrocyte Membrane

Lipid peroxidation of rabbit small intestinal microvillus membrane vesicles by iron complexes.

Fe(II)- and Fe(III)-induced lipid peroxidation of rabbit small intestinal microvillus membrane vesicles was studied. Ferrous ammonium sulphate, ferrous ascorbate at a molar ratio of 10:1, and ferric citrate, at molar ratios of 1:1 and 1:20, did not stimulate lipid peroxidation. Ferrous ascorbate, 1:1, induced low stimulation, while ferrous ascorbate, 1:20 gave higher stimulation of lipid peroxidation. These results show that in our experimental system, ascorbate is a promotor rather than an inhibitor of lipid peroxidation. Ferric nitrilotriacetate (at molar ratios of 1:2 and 1:10), at an iron concentration of 200 microM, was by far the most effective in inducing lipid peroxidation. Superoxide dismutase, mannitol and glutathione had no effect, while catalase, thiourea and vitamin E markedly decreased ferrous ascorbate 1:20-induced lipid peroxidation. Ferric nitrilotriacetate-induced lipid peroxidation was slightly reduced by catalase and mannitol, significantly reduced by superoxide dismutase, and completely inhibited by thiourea. Glutathione caused a 100% increase in the ferric nitrilotriacetate-induced lipid peroxidation. These results suggest that Fe(II) in the presence of trace amounts of Fe(III), or an oxidizing agent and Fe(III) in the presence of Fe(II) or a reducing agent, are potent stimulators of lipid peroxidation of microvillus membrane vesicles. Addition of deferoxamine completely inhibited both ferrous ascorbate, 1:20 and ferric nitrilotriacetate-induced lipid peroxidation, demonstrating the requirement for iron for its stimulation. Iron-induced peroxidation of microvillus membrane may have physiological significance because it could already be demonstrated at 2 microM iron concentration.

Animals