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Biomedical subjects

B Sundquist

Publications and source records attributed to B Sundquist.

41 records · Page 3Linked to original sources

Assembly of adenoviruses.

Sodium dodecyl sulfate-polyacrylamide gel electrophoresis of purified incomplete particles of adenoviruses type 2 and 3 revealed that core proteins V and VII and capsid proteins VI, VIII, and X were absent in these particles, but they contained polypeptides not present in complete particles. Two types of incomplete particles were observed in the electron microscope, appearing as deoxyribonucleic acid-less particles with single discontinuities in the capsid structure (about 80%), or more amorphous particles resembling hexon aggregates (about 20%). The amount of incomplete and complete particles increased in parallel during the infectious cycle. Detectable amounts were found at 13 h with a maximum rate of synthesis for both particles at 24 h after infection. (3)H-labeled amino acids were incorporated into incomplete particles without a detectable lag period, but the label appeared in complete particles with a 60- to 80-min lag. Early after the pulse in pulse-chase experiments, the radioactivity was higher for incomplete particles than for complete particles and leveled off before the activity of complete particles reached a maximum. In the adenovirus type 2 system, pulse-chase experiments suggested a precursor-product relationship between incomplete and complete particles. After a short pulse, 19 h postinfection, entrance of (3)H-labeled amino acids into the hexon polypeptide of complete particles was delayed for 80 min, but no delay was observed for the labeling of the hexon polypeptide of incomplete particles. The core polypeptides appear in complete particles without a delay, also suggesting that incomplete particles were precursors to complete particles. Incorporation of (3)H-labeled amino acids into the hexon polypeptide of complete and incomplete particles was drastically decreased by inhibition of protein synthesis with emetine. However, the uptake of label into core proteins of complete particles was only decreased to 50% on inhibition of protein synthesis. The results suggest that incomplete particles are intermediates in virus assembly in vivo and that the assembly of capsid polypeptides into incomplete and complete particles is dependent on continuing protein synthesis.

Adenoviridae

Mechanism of the arginine requirement for adenovirus synthesis. I. Synthesis of structural proteins.

The mechanism of the arginine requirement for adenovirus was studied in cultures of KB cells infected with adenovirus type 2. Macromolecular synthesis was found to be severely impaired in uninfected cells under complete arginine deprivation, whereas an arginine concentration of 50 mum yielded a moderate and reversible inhibition of growth and nucleic acid synthesis. At this concentration, viral structural proteins were accumulated in excess although the virus yield was reduced more than 1,000-fold. The arginine-sensitive step appeared to occur early during the first 15 hr postinfection in the virus growth cycle. Virus-infected cells deprived of arginine to 50 mum showed, when reversed, a 4- to 5-hr lag period before the increase in virus growth was observed. Analysis of the radioactive pattern of labeled virions synthesized after reversion showed that all polypeptides were synthesized after addition of arginine to the medium, and none of the virion-polypeptides which are revealed by gel electrophoresis appeared to be preferentially synthesized after arginine reversion. The excess pool of structural proteins formed during depletion appeared to a large extent to be unavailable for virus assembly.

Adenoviridae

Iscom, a novel structure for antigenic presentation of membrane proteins from enveloped viruses.

We describe here a novel type of immunostimulating complex, called 'iscom', in which virus membrane proteins are presented in a multimeric form. The matrix of the iscom is the glycoside Quil A (Spikoside; Iscotec AB), extracted from the bark of Quillaja saponaria Molina, which forms micelles at the critical micellar concentration of 0.03%. In micelle form, Quil A probably has regions accessible for hydrophobic interaction with the membrane proteins so that it can form complexes with them. Iscoms have been prepared with membrane proteins of para-influenza-3 (PI-3), measles and rabies viruses, and their immunizing potency tested in animals. In these experiments, iscoms prove to be at least 10 times more potent than micelles formed by aggregation of the membrane proteins alone. Iscoms of PI-3 and measles viruses also stimulate the formation of antibody to the fusion (F) protein, which is considered to be poorly immunogenic. No side effects of iscoms or of protein micelles have been observed.

Adjuvants, Immunologic

Evaluation of a monoclonal blocking enzyme-linked immunosorbent assay for the detection of Mycoplasma gallisepticum-specific antibodies.

A monoclonal blocking enzyme-linked immunosorbent assay (blocking-ELISA) was developed to detect antibodies to Mycoplasma gallisepticum (MG) in poultry sera with the help of a peroxidase-labeled monoclonal antibody (MAb) recognizing an epitope of a 56-kilodalton polypeptide (p56) of MG. Immunoglobulins from undiluted MG-positive sera prevent the MAb conjugate from attaching to its specific binding site on p56, which results in no color development. The opposite result--a strong color reaction--was obtained after incubation with MG-negative sera (or when no serum was added before the MAb conjugate). Results were expressed in percent inhibition or ELISA titers. The blocking-ELISA detected 84.7% positive chickens in an experimentally infected flock and 72.6% of chickens in naturally infected flocks, whereas the hemagglutination-inhibition (HI) test was positive only with 68.4% and 48.6% of these serum samples, respectively. All HI-positive serum samples reacted positively in blocking-ELISA. Of sera negative by the HI test, 51.6% and 46.8% proved to be positive when examined with the blocking-ELISA. Overall agreement between the ELISA and HI test was 76.8%. Infection with closely related M. synoviae did not induce any false-positive reactions in blocking-ELISA. There was a strong positive correlation between HI and blocking-ELISA titers (r = 0.83).

Animals