PubMed HealthSearch

SEARCH · PubMed Health

Results for “cytokinesis”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Inhibition of cytokinesis in Friend leukemia cells by membrane mobility agents.

Treatment of a line of Friend leukemia cells with a dispersion of the membrane mobility agent, A2C, yields cells that undergo successive nuclear divisions without cytokinesis, resulting eventually in cells with as many as 30 nuclei. Neither the DNA replication rate of the cells nor the generation time is different after treatment; in addition, the multiple nuclei divide synchronously, and the chromosome number corresponds to the number of nuclei in the cell. Inhibition of cytokinesis is not observed if the cells are washed with reagent-free medium within 1 hr of treatment, but is observed if washing is delayed for 24 hr. Membrane mobility agent loaded with the fluorescent probe, Flomol F20C, leads to fluorescent membrane; fluorescence disappears from the membrane after a change of medium within 1 hr, but not after a change of medium within 24 hr. Some stages in the overall development resemble those seen for cytochalasin B inhibition of cytokinesis, although the mechanisms may well be different for the inhibition promoted by membrane mobility agent. The inhibition of cytokinesis by A2C provides a potentially interesting means of studying cytokinesis and the regulation of differentiation.

Animals

Fibronectin mediates cytokinesis and growth of rat follicular cells in serum-free medium.

In this study, the growth of rat follicular (RF-1) cells was severely depressed when the cells were subcultured by trypsinization directly into serum-free medium supplemented with insulin, transferrin and hydrocortisone, which are required for growth of these cells in vitro. Within 24 hr after plating, 50-65% of the cells became binucleated, indicating lack of cytokinesis. However, the addition of human plasma fibronectin (8 microgram/ml) to the serum-free medium eliminated cell binucleation and enhanced cell growth considerably. Fibronectin had the same effect when RF-1 cells were plated into tissue culture dishes on which fibronectin had been absorbed, and cells were inoculated into fibronectin-free medium. Cell binucleation and poor growth in serum-free medium occurred when the cells were subcultured by trypsinization, EGTA treatment or detachment of mitotic cells. Under some conditions, cells could be "rescued" if fibronectin was added soon after inoculation, indicating that fibronectin was needed mainly during a limited time when the subcultured cells were attaching to the tissue culture substratum. Our findings describe an adhesive activity for fibronectin which circumvents the serum preincubation usually needed after RF-1 cells are subcultured for growth in serum-free medium. They also indicate the importance of fibronectin-mediated adhesion for cytokinesis processes of these cells.

Animals

Alpha-actinin localization in the cleavage furrow during cytokinesis.

We used antibodies against alpha-actinin and myosin labeled directly with contrasting fluorochromes to localize these contractile proteins simultaneously in dividing chick embryo cells. During mitosis anti-alpha-actinin stains diffusely the entire cytoplasm including the mitotic spindle, while in the same cells intense antimyosin staining delineates the spindle. During cytokinesis both antibodies stain the cleavage furrow intensely, and until the midbody forms the two staining patterns in the same cell are identical at the resolution of the light microscope. Thereafter the anti-alpha-actinin staining of the furrow remains strong, but the antimyosin staining diminishes. These observations suggest that alpha-actinin participates along with actin and myosin in the membrane movements associated with cytokinesis.

Actinin

Dimethyl sulfoxide-induced differentiation of Friend erythroleukemia cells in the absence of cytokinesis.

Friend erythroleukemia cells grown in culture and induced to differentiate along the erythroid developmental pathway by dimethyl sulfoxide (DMSO) were used as a model system to investigate the requirement for cellular replication to express a differentiated erythroid phenotype. That cytokinesis is not essential for DMSO-induced erythroid differentiation as measured by the synthesis and accumulation of hemoglobin was shown by experiments using cytochalasin B. In these studies, hemoglobin was found to accumulate in Friend cells treated simultaneously with DMSO and cytochalasin B; such treatment caused cells to become enlarged and multinucleated due to inhibition of cytokinesis by cytochalasin B. In contrast, exposure of cells to cytochalasin B for at least 48 hr prior to DMSO caused significant inhibition of erythroid differentiation. The findings support the concept that cellular division and, thereby the production of new cellular types are not required for gene activation and the expression of an erythroid phenotype. These effects of cytochalasin B on DMSO-induced differentiation of Friend leukemia cells also suggest plasma membrane-cytoskeleton involvement in the initiation of the erythroid maturation process in this system.

Animals

Contribution to the understanding of the mechanism of cytokinesis in plant cells: the action of deoxyguanosine on the kinetics of a root meristem cell population.

The kinetics of binucleate cells, formed by the action of deoxyguanosine, are studied using three methods: in a population synchronized with hydroxyurea, by autoradiography after pulse-labelling, and in a sample of a cell population morphologically located at the M--G1 limit. Deoxyguanosine induces a slowing down in S and G2, independent of the inhibition of cytokinesis. It is only when it takes effect during the G2 stage that deoxyguanosine brings about the formation of binucleate cells.

Cell Cycle

Tensiometric studies of cytokinesis in cleaving sand dollar eggs.

Tensions exerted by cleavage furrows of Echinarachnius parma were measured by means of calibrated, flexible glass needles. The tensions exerted by the first and second furrows in isometric contraction were, respectively, 1.58 X 10(-3) dyne (S.D. 0.41 X 10(-3) dyne) and 1.43 X 10(-3) dyne (S.D. 0.44 X 10(-3) dyne). The difference between the two means is not significant. The tensions exerted by the same cleavage furrow at two different lengths, of which the shorter was about 66% the length of the longer, were not significantly different. When the progress of a second cleavage furrow was mechanically blocked, it continued to exert maximum tension up to 9 minutes after its companion blastomere, which served as a time control, completed cleavage.

Animals