Scientific article
OA Policy
English

The relation between polyoma T-antigen and increased 5S RNA synthesis in cell-free extracts from polyoma-infected mouse kidney cell cultures

Published inNucleic Acids Research, vol. 10, no. 23, p. 7643-7655
Publication date1982
Abstract

In polyoma-infected mouse kidney cell cultures 5S RNA synthesis began to increase around 16 h, i.e. 7–9 h after the onset of polyoraa T-antigen synthesis. The rate of polyoma-induced 5S RNA synthesis reached a maximum plateau around 25 h when it was 1.8–2.0 times higher than in mock-infected parallel cultures. Stimulation of 5S RNA synthesis in vivo thus coincided in time with the increase in total cellular RNA and protein. Cell-free extracts (S100) prepared at 15 h from mock-(S100-M) or polyoma-infected (S100-Py) mouse kidney cell cultures were indistinguishable with respect to protein concentration and 5S RNA synthesis, using a cloned somatic Xenopus borealis 5S gene as template. S100-Py extracted 25 h after infection contained 30% more protein and synthesized 1.5–2.0 times more 5S RNA than S100-M. Complete removal of the polyoma T-antigens from S100-Py by 3 cycles of immunoprecipitation with hamster anti-T serum remained without effect on stimulated 5S RNA synthesis. However, a linear relationship between 5S RNA synthesis and protein concentration of S100-M and S100-Py was observed.

Funding
  • Swiss National Science Foundation - 3.474.79
Citation (ISO format)
MATTER, Jean-Marc, WEIL, Roger. The relation between polyoma T-antigen and increased 5S RNA synthesis in cell-free extracts from polyoma-infected mouse kidney cell cultures. In: Nucleic Acids Research, 1982, vol. 10, n° 23, p. 7643–7655. doi: 10.1093/nar/10.23.7643
Main files (1)
Article (Published version)
Identifiers
Journal ISSN0305-1048
239views
237downloads

Technical informations

Creation03/03/2021 11:31:00
First validation03/03/2021 11:31:00
Update16/03/2023 00:12:32
Status update16/03/2023 00:12:32
Last indexation31/10/2024 21:31:29
All rights reserved by Archive ouverte UNIGE and the University of GenevaunigeBlack