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Biomedical subjects

C E Buckler

Publications and source records attributed to C E Buckler.

6 recordsLinked to original sources

A highly divergent simian immunodeficiency virus (SIVstm) recovered from stored stump-tailed macaque tissues.

We report here the results of molecular analysis of a simian immunodeficiency virus (designated SIVstm) which was isolated from a rhesus monkey inoculated with stored lymph node tissue of an Asian stump-tailed macaque. The latter monkey had died in 1977 during an epidemic of acquired immunodeficiency and lymphoma at the California Regional Primate Research Center (L. J. Lowenstine, N. W. Lerche, P. A. Marx, M. B. Gardner, and N. C. Pedersen, p. 174-176, in M. Girard and L. Valette, ed., Retroviruses of Human AIDS and Related Animal Viruses, 1988). Nucleotide sequence analysis of the gag and env regions indicates that SIVstm is an ancient member of the SIV/human immunodeficiency virus type 2 group; it is quite divergent from known SIVs isolated from African sooty mangabeys as well as from Asian macaques. Furthermore, of all SIV strains described to date, SIVstm is the most closely related to human immunodeficiency virus type 2.

Amino Acid Sequence

Production of human lymphoblastoid interferon by Namalva cells.

Optimum conditions for growth and interferon production by a human lymphoblastoid cell line, Namalva, have been studied. Adaptation to large-scale production is possible utilizing either Sendai virus or Newcastle disease virus. Priming of cultures before induction is unnecessary. The interferon produced has properties similar to human leukocyte interferon. The production of lymphoblastoid interferon per cell is increased two- to fourfold after dilution with serum-free medium of a saturation-density culture of Namalva induced with Newcastle disease virus. Maximum interferon yields were obtained 27 h after the addition of virus, using cultures diluted to 4 X 10(5) to 9 X 10(5) cells per ml. The presence of glutamine in the dilution medium was required for maximum interferon production. Newcastle disease virus appeared to inhibit the rates of RNA and protein synthesis more effectively in the diluted cultures.

Animals

Human lymphoblastoid interferon. Large scale production and partial purification.

Human lymphoblastoid interferon was produced on an 800-liter scale (2.6 X 10(9) units) by induction of Namalva cells with Newcastle disease virus, strain B1. The interferon was partially purified by anti-leukocyte interferon affinity chromatography, sulfopropyl Sephadex ion exchange chromatography, isoelectric focusing, and sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Recovery of interferon after gel electrophoresis varied from 11 to 33% based on the original crude material, with about 35,000-fold purification. The gel electrophoresis resolved the antiviral activity into two components with apparent molecular weights of 18,000 and 22,000; treatment with glycosidases resulted in all the activity being associated with the lower molecular weight species. Interferon activity could be completely (85 to 113%) recovered from the gels by elution into a buffer containing sodium dodecyl sulfate. The presence of sodium dodecyl sulfate did not appear to affect the assay of interferon. The protein could also be completely (75 to 106%) eluted from gels stained with coomassie blue, again with no loss in activity.

Cell Line

A modified polyriboinosinic-polyribocytidylic acid complex that induces interferon in primates.

A comlex of polyriboinosinic-polyribocytidylic acid (poly I-poly C) with poly-L-lysine and carboxymethylcellulose has been prepared. This complex is five to 10 times as resistant to hydrolysis by primate serum as the parent poly I-poly C. It has a thermal denaturation temperature about 40 C higher than that of poly I-poly C. The complex induces significant levels of serum interferon in monkeys and chimpanzees under conditions in which poly I-poly C itself induces no interferon.

Animals