Regulation of the rate of cell cycle progression in quiescent cytolytic T cells by T cell growth factor: Analysis by flow microfluorometry
- 1 October 1984
- journal article
- research article
- Published by Wiley in Journal of Cellular Physiology
- Vol. 121 (1) , 159-166
- https://doi.org/10.1002/jcp.1041210120
Abstract
We have previously shown that >90% of B6.1 cells, a murine cytolytic T lymphocyte (CTL) cloned line which is solely dependent on T cell growth factor (TCGF) for continuous growth in vitro, accumulates in the G1 phase of the cell cycle after transfer into culture medium containing no TCGF. Moreover, when such quiescent cells are exposed again to TCGF, >85% reenter the S phase and subsequently divide in a relatively synchronous fashion. In this study, the regulation of the rate of cell cycle progression of quiescent B6.1 cells after exposure to TCGF was analyzed using two complementary DNA staining techniques, namely, the propodium iodide method (to enumerate cells entering the S phase) and the Hoechst 33342-bromodeoxyuridine substitution technique (to enumerate cells which have gone through mitosis). After TCGF addition, quiescent B6.1 cells resumed DNA synthesis and divided after a lag phase of 10 and 20 h, respectively. The duration of the lag phase was found to be dependent on the length of time during which quiescent B6.1 cells had been deprived of TCGF, but was independent of the concentration of TCGF used for restimulation. In contrast, the proportion of cells responding to TCGF as well as the rate of their first passage through mitosis was dependent on TCGF concentration. The presence of TCGF for at least 6 h was required for a maximal response. Moreover, direct evidence was obtained that TCGF by itself was able to stimulate proliferation of quiescent B6.1 cells in the absence of other growth factors and serum constituents other than bovine serum albumin, transferrin, and lipids.This publication has 37 references indexed in Scilit:
- Consequences of parental exposure to epidermal growth factor for progeny cell divisionJournal of Cellular Physiology, 1983
- Hirudin, a probe to analyze the growth-promoting activity of thrombin in fibroblasts; Reevaluation of the temporal action of competence factorsBiochemical and Biophysical Research Communications, 1982
- T cell growth factor receptors. Quantitation, specificity, and biological relevanceThe Journal of Experimental Medicine, 1981
- The stimulation of the initiation of DNA synthesis by fibroblast growth factor in swiss 3T3 cells: Interactions with hormones during the pre‐replicative phaseJournal of Cellular Physiology, 1980
- Biochemical and biological characterization of lymphocyte regulatory molecules. I. Purification of a class of murine lymphokines.The Journal of Experimental Medicine, 1979
- Requirements of BHK cells for the exit from different quiescent statesJournal of Cellular Physiology, 1978
- Complete replacement of serum by albumin, transferrin, and soybean lipid in cultures of lipopolysaccharide-reactive B lymphocytes.The Journal of Experimental Medicine, 1978
- Interaction of two hormones and their effect on observed rate of initiation of DNA synthesis in 3T3 cellsNature, 1977
- Effects of prolonged quiescence on nuclei and chromatin of WI‐38 fibroblastsJournal of Cellular Physiology, 1976
- Regulation of the fibroblast cell cycle by serumNature, 1976