PubMed Health⌕ Search

Biomedical subjects

G C Moser

Publications and source records attributed to G C Moser.

9 recordsLinked to original sources

Fluorimetric measurements and chromatin condensation patterns of nuclei from 3T3 cells throughout G1.

Using two cytological methods based on nuclear morphology, quinacrine dihydrochloride (QDH) staining and premature chromosome condensation (PCC), it has been possible to identify cell cycle positions within G1 of growing and arrested 3T3 cells. The fluorescent intensity of QDH-stained interphase cells appears to decrease as the cells pass from mitosis to S phase. Likewise, the length and thickness of prematurely condensed chromatids can be related to the cells; position within the G1 period. Data are presented that deal with three interrelated topics: 1) We determined by fluorometric measurements of nuclei from 3T3 cells that the visual observation of the decrease in QDH fluorescence during G1 reflects an actual decrease in total fluorescence and not a dispersion of the fluorescent chromatin in a larger nuclear area. 2) We correlated the results obtained by QDH staining with those of PCC on the same cell samples blocked in G1 by different conditions. Serum-starved and contact-inhibited cell nuclei had the highest intensity, hydroxyurea-treated ones had the lowest intensity, while that of isoleucine-deprived cells was in between. The same relative order of G1 positions was obtained based on PCC morphology. Thus, both methods monitor the state of chromatin condensation and can be used to identify cell cycle position within G1. 3) We showed with both methods that the states of chromatin resulting from the various G1 blocking conditions differ from each other.

Animals↗

Cell cycle dependent changes of chromosomes in mouse fibroblasts.

Mouse fibroblast interphase nuclei stained with quinacrine dihydrochloride show distinctive differences in their fluorescent characteristics analogous to those which we have already observed in human and Syrian hamster cells. These patterns reflect the position of any given nucleus within the cell cycle. The brightly fluorescent chromocenters in the mouse nuclei were found to be in absolute aggreement with those stained by the C-banding technique, indicating that they represent centromeric heterochromatin. Furthermore, their number and size per nucleus were shown to vary in relation to the progress of the cell cycle.

Animals↗

A cytological procedure to screen mammalian temperature-sensitive mutants for cell-cycle-related defects.

Interphase cells stained with quinacrine dihydrochloride show distinctive fluorescent nuclear patterns according to their position in the cell cycle. These patterns were used to determine whether temperature-sensitive growth mutants of the Syrian hamster cell line BHK-21 are blocked at specific stages of the cell cycle. These cytological studies confirmed the previous conclusion that ts Af8 cell line derived from BHK cells is a GI cell-cycle mutant. The method promises to be of use as an initial probe in screening for cell-cycle mutants.

Cell Cycle↗