Search PubMedSearch

PubMed · 3919782

K562 human erythroleukemia cells demonstrate commitment.

Abstract

Commitment, ie, the decision to express a differentiated phenotype and to terminate proliferation irreversibly in the absence of inducer, was investigated in K562 human erythroleukemia cells. Cells were cultured for 0, 1, 2, 3, or 4 days with inducer and then plated in medium containing methylcellulose without inducer. Daily after plating, hemoglobin content was scored by benzidine staining, and growth was assessed by estimating the cell number per colony. With all inducers used, three types of colonies were found, those containing only benzidine-positive cells, those containing only benzidine-negative cells, and those containing both cell types (mixed colonies). Thymidine produced a progressive increase in the percentage of positive and mixed colonies and a progressive fall in the percentage of negative colonies. Whereas negative colonies grew at an exponential rate with a generation time of about 20 hours, positive colonies reached an average maximum size of 16 cells, representing a total of four divisions. Butyrate had a similar effect, except that the rise was greater for mixed colonies than for positive colonies, and the plateau in positive colony size was less evident. In contrast, CO2 depletion or hemin treatment induced an increase in the fraction of cells staining benzidine positive that was lost rapidly upon removal of the inducing condition. Thus, of the four conditions, thymidine and butyrate caused commitment, whereas hemin and CO2 depletion did not. Thus K562 cells, like Friend cells, demonstrate commitment, but, unlike Friend cells, demonstrate a significant rate of commitment in the absence of inducer and hence form a significant percentage of mixed colonies with or without inducer.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

P T Rowley, B M Ohlsson-Wilhelm, B A Farley. 1985. K562 human erythroleukemia cells demonstrate commitment.. https://pubmed.ncbi.nlm.nih.gov/3919782/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Sodium butyrate induces tyrosine phosphorylation and activation of MAP kinase (ERK-1) in human K562 cells.

Butyrate is a naturally occurring 4-carbon fatty acid. Biologically, butyrate has been shown to affect the morphology and growth rate of mammalian cells, as well as induce gene expression. Moreover, butyrate has been proven to serve as an anticancer agent, which unlike others (methotrexate and hydroxyurea), is a nontoxic, safe alternative to cancer treatment. It also induces erythroid differentiation in K562 cells. However, its mechanism of action has yet to be determined. In this study we investigated the effects of sodium butyrate (NaB) on tyrosine phosphorylation in K562 erythroleukemic cells. We demonstrate that NaB induces both dose and time-dependent tyrosine phosphorylation of several proteins, the effects of which were blocked by the tyrosine kinase inhibitor genistein. Furthermore, NaB induces tyrosine phosphorylation and rapid activation of MAP kinase (ERK-1). These findings provide the first evidence that the signal transduction mechanism of NaB involves rapid tyrosine phosphorylation and activation of MAP kinase.

Butyrates

Inhibition of proliferation but not erythroid differentiation of J2E cells by rapamycin.

During erythropoiesis, replication and maturation are tightly coupled processes. Here, we show that the immunosuppressant rapamycin inhibited basal- as well as erythropoietin-stimulated proliferation of the erythroid cell line J2E. In addition, it enhanced the antiproliferative effect of sodium butyrate. Although rapamycin suppressed erythroid cell division, it did not affect terminal differentiation induced by erythropoietin or sodium butyrate. The proliferative status of J2E cells correlated well with the activity of the ribosomal S6 kinase p70S6k, an enzyme effectively blocked by rapamycin. It was concluded from this study that erythroid maturation proceeded normally despite the rapamycin-induced inhibition of mitosis and of p70S6k activity. These data provide further evidence that separate signalling pathways for proliferation and differentiation exist in erythroid cells.

Butyrates