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Biomedical subjects

Y Cleuter

Publications and source records attributed to Y Cleuter.

At least 55 records · Page 3Linked to original sources

Synthesis of carp proinsulin in Xenopus oocytes.

Total poly(A)-containing RNA from Brockmann boides of carp (Cyprinus carpio) directs the synthesis of authentic carp proinsulin in Xenopus oocytes. Neither preproinsulin nor further processing of the proinsulin to insulin can be detected in the oocytes.

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Distribution of bovine leukemia virus proviral sequences in tissues of bovine, ovine and human origin.

Bovine leukemia virus (BLV) single-stranded cDNA was used to study the distribution of DNA sequences in tissues (normal or malignant) from bovine, ovine and human origin. After recycling against normal bovine DNA, BLV (3H) cDNA hybridized with bovine enzootic tumor DNA but did not hybridize with normal bovine DNA. These results indicate that BLV is an exogenous RNA oncogenic virus and confirm that enzootic bovine leukosis (EBL) is an infectious disease. Proviral BLV sequences were also detected in buffy coat cells of animals in persistent lymphocytosis (PL) and carrying antibodies to BLV but no tumors. In animals at the tumor stage of EBL, the proviral sequences were found in buffy coat cells, in solid tumors (lymphosarcomas) and in organs infiltrated with tumoral lymphoid cells but not in apparently normal organs. No hybridization above background was observed between BLV (3H) cDNA and DNAs extracted from buffy coat cells and tumors corresponding to sporadic forms of bovine leukosis and some human leukemias and sarcomas.

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Frog oocytes synthesize and completely process the precursor polypeptide to virion structural proteins after microinjection of avian myeloblastosis virus RNA.

After microinjection of Xenopus laevis oocytes with RNA from avian myeloblastosis virus, viral structural proteins p27, p19, p15, and p12 are formed by a sequence of posttranslational cleavages of a high-molecular-weight precursor polypeptide. The 60-70S RNA aggregate or its 30-40S RNA subunits obtained by heat or formamide treatment possess the same ability to serve as template in X. laevis oocytes. The processing pattern of virus-specific precursor polypeptides is the same in X. laevis oocytes as in chick embryo fibroblasts infected with avian myeloblastosis virus, but the processing takes place at a much slower rate.

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Bovine leukemia virus: an exogenous RNA oncogenic virus?

Short term cultures of bovine leukemic lymphocytes release virus particles with biochemical properties of RNA oncogenic viruses. These particles, tentatively called Bovine Leukemia Virus (BLV) have a high molecular weight-reverse transcriptase complex and a density averaging 1.155 g/ml in sucrose solutions. Molecular hybridizations between BLV-3H cDNA and several viral RNAs show that BLV is not related to Mason-Pfizer Monkey Virus (MPMV) Simian Sarcoma Associated Virus (SSV-1) Feline Leukemia Virus (FeLV) or Avian Myeloblastosis Virus (AMV). Rauscher Leukemia Virus (RLV) exhibits a slight but reproducible relatednesse to BLV. The high preference of BLV reverse transcriptase for Mg++ as the divalent cation suggests that BLV might be an atypical mammalian leukemogenic type C virus. Hybridization studies using BLV 3H cDNA as a probe suggest that the DNA of bovine leukemic cells contains viral sequences that cannot be detected in normal bovine DNA.

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Bovine leukemia virus: an exogenous RNA oncogenic virus.

Short-term cultures of bovine leukemic lymphocytes release virus particles with biochemical properties of RNA oncogenic viruses. These particles, tentatively called bovine leukemia virus (BLV), have a high molecular weight RNA-reverse transcriptase complex and a density of 1.155 g/ml in sucrose solutions. Molecular hybridizations between BLV/[3H]cDNA and several viral RNAs show that BLV is not related to Mason-Pfizer monkey virus, simian sarcoma associated virus, feline leukemia virus, or avian myeloblastosis virus. These results were confirmed by hybridization between BLV 70S RNA and [3H]cDNA synthesized in the various viruses tested. The high preference of BLV reverse transciptase for Mg++ as the divalent cation suggests that BLV might be an atypical mammalian leukemogenic "type C" virus. DNA-DNA hybridization studies using BLV [3H]cDNA as a probe strongly suggest that the DNA of bovine leukemic cells contains viral sequences that cannot be detected in normal bovine DNA.

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