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Biomedical subjects

I Fodor

Publications and source records attributed to I Fodor.

At least 37 records · Page 2Linked to original sources

Genetic selection of lambda phage clones from a gene clonotheque.

A genetic procedure for selection of specific lambda clones, by homologous recombination between lambda clones from a gene clonotheque and sequences cloned into a plasmid, was developed. Resulting clones are isolated in transduction experiments by plating infected Escherichia coli cells under conditions selecting for the antibiotic resistance marker carried by the plasmid. The feasibility of the method was demonstrated in a model test system as well as by isolation of alpha-interferon-specific sequences from the human gene clonotheque.

Bacteriophage lambda

Coated pit formation: a membrane function involved in the regulation of cellular iron uptake.

Diferric-transferrin induces a marked increase in the number of coated pits on the reticulocyte membrane. This increase is followed by a decline, often to below the initial number. Since a good correlation was found between the rate of iron uptake and the number of coated pits, but not between the rate of transferrin recycling and the coated pit count, it is likely that coated pit formation is necessary for the removal of iron from transferrin. The decline in the number of transferrin-induced coated pits was observed only when haem synthesis was undisturbed, indicating that the accumulation of intracellular haem inhibits coated pit formation. Based on these results we suggest that haem regulates the rate of iron uptake by inhibiting iron removal rather than receptor recycling.

Animals

The mobility of intramembrane particles in non-haemolysed human erythrocytes. Factors affecting acridine-orange-induced particle aggregation.

It has previously been shown that reversible intramembrane particle aggregation can be induced in non-haemolysed human erythrocytes. This phenomenon, which can be induced by the cationic dye Acridine Orange, has been further investigated using different experimental conditions that are expected to influence the rate of aggregation of the particles. In addition to the concentration of the dye, the rate of aggregation was also found to be dependent on the extracellular and intracellular pH, as well as on the type of buffer used. While lowering the pH of the Acridine Orange solutions resulted in decreased particle clustering, low intracellular pH increased and elevated intracellular pH decreased particle aggregation. Furthermore, at a given dye concentration and a given pH, Acridine Orange caused more intense aggregation in Tris-buffered saline than in isotonic phosphate buffer or phosphate-buffered saline. Under appropriate conditions Acridine Orange caused significant particle aggregation at concentrations as low as 0.25 mM within 30 s. During this period only discocyte-stomatocyte transformation occurred; neither agglutination nor vesiculation of the erythrocytes could be detected. Treatment of the erythrocytes with Diamide (Serva), which cross-links spectrin via disulphide bridges and thereby reduces lateral diffusion of integral membrane proteins over large distances, had no inhibitory effect on Acridine-Orange-induced particle aggregation. Heating the erythrocytes to 50 degrees C, at which temperature denaturation of spectrin and fragmentation of the erythrocytes occur, and subsequently incubating them in Acridine Orange at room temperature, caused an almost maximal rate of particle aggregation within 10-30 s, without haemolysis. The possible mechanism and significance of the particle aggregation phenomenon are discussed.

Acridine Orange

A comparative study on the cellular processing of free and gold-conjugated transferrin.

The kinetics of the transferrin-reticulocyte interaction was studied using free and colloidal gold-conjugated double labelled transferrin (Tf and AuTf, respectively). Simultaneous biochemical and morphological experiments provided the following information: 1. The cellular recycling of Tf is significantly faster than that of AuTf. 2. AuTf induces a marked increase in the number of multivesicular elements (MVE) in rabbit reticulocytes. 3. The release of AuTf from the cells is very slow and accumulation of gold particles in MVEs can be observed during the process. The results suggest that the two postulated pathways of the transferrin-cell cycle (a fast, iron-donating and a slow, receptor-shedding cycle) are not similarly involved in the cellular processing of Tf and AuTf. While it has been suggested that in the Tf-cell interaction the fast recycling mechanism is dominating, it is likely that, probably due to steric effects, the majority of AuTfs are forced into the slower receptor-shedding pathway. These observations call attention to the possible limitations of the colloidal gold labelling technique in the determination of the kinetics and pathway of intracellular processing of free ligands.

Animals

A site-specific endonuclease from Pseudomonas aeruginosa.

PaeI, a new restriction endonuclease from Pseudomonas aeruginosa clinical strain was isolated and characterized. It recognizes and cleaves the sequence 5'-GCATG reduced C-3' generating DNA fragments with 3'-tetranucleotide sticky ends. DNAs of pBR322, SV40 and bacteriophage lambda have one, two and six PaeI recognition sites, respectively. Seventy-two strains of Pseudomonas, Clostridium, Escherichia coli, Shigella, Proteus and Saccharomyces were screened for the presence of site-specific endonucleases. Here we describe the PaeI restriction enzyme found in Pseudomonas aeruginosa; other data will be published elsewhere. Earlier Hinkle and Miller isolated from P. aeruginosa a PaeR7 restriction endonuclease recognizing and cleaving a sequence 5'-C reduced TCGAG-3' (1). Sequence analysis of DNAs cleaved by PaeI shows that the enzyme is the isoschizomer of SphI (2).

Base Sequence

The catabolite gene activation system of E. coli may be directly involved in regulation of bacteriophage lambda development.

The primary structure of bacteriophage lambda DNA has been searched for the presence of consensus CAP binding sites. Four putative CAP binding sites have been found on the lambda genome, indicating that the catabolite gene activation system of E. coli may be directly involved in the regulation of lambda development. Molecular mechanisms of putative cAMP-CAP-mediated stimulation of lysogenic and lytic responses are discussed.

Bacteriophage lambda

Lambda phagemids and their transducing properties.

Two recombinant lambda DNAs, lambda gt::pMB9 and lambda NM::pBR322, containing, respectively, the pMB9 and pBR322 replicon were constructed and characterized. Both constructs (phagemid DNAs) transfect Escherichia coli cells, producing mature infectious phage progenies. Alternatively, drug-resistant colonies of transductants can be selected upon infection with these phages (phagemid particles) that maintain phagemid DNA in the cell in the form of covalently closed circular plasmids. The efficiency of transduction for nonlysogenic E. coli strains with lambda gt::pMB9 phage producing lambda repressor cIts ranges from 10(-7) to 10(-2) transductant colonies per input phage, depending on the temperature and strain used, while lambda NM::pBR322 phage carrying imm21 transduces with a frequency of up to 1. This means that each lambda NM::pBR322 phagemid particle is capable of establishing itself in the cell as a nonlethal plasmid, permitting formation of a resistant bacterial colony. The maximal level of transduction with lambda gt::pMB9 was obtained when E. coli cells lysogenic for lambda were used. Thus, we believe that the efficiency of transduction is determined by the turn-on of the phage repressor in the transductant. In addition, we have found that all lambda gt::pMB9-containing transductants under certain conditions harbor precisely excised pMB9; excision of pBR322 from lambda NM::pBR322 has not been observed.

Bacteriophage lambda

Development of intraductal protein plugs in rats fed with ethanol for 18 months.

The pancreatic tissue damage was investigated histologically in rats kept on liquid diet containing 6% ethanol for 18 months. Rats kept on a liquid diet without ethanol served as controls. The daily ethanol intake was 1.2 g/100 g b.w. The daily intake of liquid food was 26 ml/100 g b.w. (26 cal/100 g b.w.) (108 Joule/100 g b.w.) without ethanol and about the same (24 ml/100 g b.w.) with ethanol. Mortality rate was 75% in the group fed with ethanol and 30% in the control group. Ethanol decreased both body weight and pancreatic weight but did not effect the relative pancreatic weight. In histological sections no difference in character, intensity or extent of the damage was observed between the ethanol fed rats and controls. In both groups there were protein plugs in the pancreatic ducts and ductules. The noncalcified intraductal protein plugs are thought to have been induced by the protein precipitant effect of the tissue fixative applied in histology.

Alcoholism

Localization of substance P-like immunoreactivity in neurons and nerve terminals in the neostriatum of the rat: a correlated light and electron microscopic study.

An antiserum, to substance P has been used to study the neostriatum of rats which has received intracerebral injections of colchicine. Both cell bodies and nerve fibres were found to display immunoreactivity. Some of the fibres were swollen and could be traced back to their parent cell body. Examination in the electron microscope of structures that had first been identified in the light microscope showed that there are two different types of substance P-immunoreactive cell body. The first kind (type I) of immunoreactive cell body was of medium size and had a smooth surfaced nucleus. It displayed the ultrastructural features typical of medium-size spiny neurons. Identified axons of type I neurons gave rise to immunoreactive axon collaterals within the neostriatum: boutons along these collaterals were found to form symmetrical synaptic contacts. The second kind (type II) of immunoreactive cell body was also of medium-size and had a round or oval shape, but the nucleus was deeply indented and was surrounded by a thin rim of cytoplasm. Synaptic input to this neuron was sparse and consisted of small boutons that made symmetrical contacts with the perikaryon and proximal dendrites. Many immunoreactive dot-like structures could be seen in the light microscope: upon examination in the electron microscope these were found to be boutons. All fifty-six synaptic boutons that were studied made symmetrical synaptic contacts. These boutons were indistinguishable from the boutons of axon collaterals of identified type I immunoreactive neurons. The most common postsynaptic structures were dendrites, including some dendritic spines, although synapses between immunoreactive boutons and several perikarya, and an axon initial segment were observed. The morphological features of the immunoreactive boutons in the neostriatum were very similar to one type of substance P-immunoreactive bouton in the substantia nigra and to a bouton type in the substantia nigra which is labelled following the anterograde transport of horseradish peroxidase from the striatum. It is suggested that there are two kinds of substance P-containing neurons in the striatum and that one of these is likely to belong to the medium-spiny class. The latter type of neuron is probably the source of the striatonigral substance P-containing projection and of the immunoreactive boutons within the striatum. The finding of substance P-immunoreactive synaptic boutons within the neostriatum provides a morphological basis for the view that substance P might serve as a neurotransmitter in the neostriatum.

Animals

Characterization of plant satellite DNA using restriction nucleases.

The structural organization of satellite DNAs of mustard Brassica nigra and lemon Citrus limon has been studied by digestion with restriction nucleases. Analysis of DNA products produced by EcoRI and Bam I shows that two satellite DNAs contain long range periodicities belonging to several repeated sequences. The periodicities in two satellite DNAs differ characteristically, however, they have been found to contain common homologous sequences. Using the restriction nuclease Bsp I, a highly periodical fractions has been found in Citrus satellite DNA, composed of Bsp I fragments ranging from 80 to 1240 basepain. The major repeat units comprise five Bsp I fragments ranging from 80 to 200 bp. These fractions characterized by a high content of 5-methyl-cytosine.

DNA Restriction Enzymes

Synthesis of proteins coded by plasmid vectors of pCV series (Apr, Tcr) and their recombinant derivatives (pDm) in E. coli minicells.

Polypeptide synthesis directed by vector plasmids of pCV series conferring ampicillin and tetracycline resistance (Apr, Tcr) and by recombinant plasmids (pDm) have been analyzed using the minicell system. It has been found that a polypeptide of 34 000 daltons is responsible for the Tcr phenotype and regulated from the promoter near the HindIII site. Cloning of DNA fragments into HindIII site allowed to conclude that DNA from Drosophila melanogaster contains nucleotide sequences which may act as promoters for a 34 000 dalton polypeptide gene. beta-Lactamase is expressed as five proteins of 24 000, 26 5000, 27 000, 28 500 and 29 500 daltons. Insertion of DNA fragments into PstI site prevents the synthesis of all five polypeptides. Recombinant clones Dm39 and Dm187 produce additional proteins of 19 000, 23 000, 24 000 and 27 000 daltons.

Chromosome Mapping