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R Emanoïl-Ravicovitch

Publications and source records attributed to R Emanoïl-Ravicovitch.

4 recordsLinked to original sources

Reverse transcriptase from simian foamy virus serotype 1: purification and characterization.

Chromatography on heparin-Sepharose, known for its affinity for nucleotide-binding polypeptides, was used to purify the viral RNA-dependent DNA polymerase (reverse transcriptase) from the core polypeptides of simian foamy virus type 1. This procedure allowed the recovery of highly purified enzyme with a high specific activity. The average molecular weight of this monomeric enzyme is 81,000 and is thus comparable to that found for other known primate retroviruses. Reverse transcriptase activity of simian foamy virus type 1 requires a ribonucleotide template as a primer or otherwise a DNA with 3'-OH ends. Other optimal conditions of activity are reviewed. Heat inactivation studies led to the concept of an enzyme with two loci, one specific for the substrate and the other for the template-primer.

Hot Temperature↗

Biochemical characterization of simian foamy virus type i.

Simian syncitium-forming ("foamy") virus type I (SFV1) was characterized biochemically. RNA was extracted from purified virus either with 0.1 per cent SDS or by the standard phenol-chloroform method. By both techniques a main component of 65-70S was found. Denaturation of the 65-70S RNA by heat resulted in a shift of the sedimentation coefficient mainly to a 30-35S component. Electrophoresis on a composite polyacrylamide gel demonstrated the existence of three minor RNA's: 8S, 5S and 4S respectively. PAGE-SDS analysis of disrupted purified virions enabled the separate migration of five viral proteins and the identification of two main proteins: a 30 kd polypeptide and a 70 kd polypeptide.

Animals↗

[Response of an undifferentiated and nullipotential cell line derived from an A/Heston mouse teratocarcinoma to infection with type C ecotropic murine viruses].

The PCC6 cell line, derived from an A/Heston Mouse Teratocarcinoma, and composed of nullipotential embryonic carcinoma cells (ECC), is completely resistant to infection with type C murine ecotropic viruses. It reacts as other cell lines previously studied which are derived from a 129 Mouse teratocarcinoma and composed of multipotential ECC.

Cell Differentiation↗