Embryonic erythroid differentiation in the human leukemic cell line K562.
- 1 January 1981
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 78 (1) , 348-352
- https://doi.org/10.1073/pnas.78.1.348
Abstract
K562 human leukemia cells synthesize embryonic hemoglobins after culture in the presence of hemin. We have rigorously identified these hemoglobins by globin chain analysis and peptide mapping. No adult hemoglobin could be detected, and beta-globin synthesis was less than 2 ppm of total protein synthesis. Persistent embryonic globin gene expression is known to occur as a consequence of globin gene deletions. However, restriction endonuclease mapping showed that the globin gene complexes in K562 cells are indistinguishable from normal. Hemin increased the rate of embryonic globin synthesis. The pattern of hemoglobin synthesis proved to be stable when cells from different laboratories were compared. One line, however, synthesized large amounts of Hb X and very little Hb Portland in response to hemin. Hb X has been previously detected in human embryos; we show here that it has the composition epsilon 2 gamma 2 and is diagnostic of imbalanced chain synthesis or "zeta thalassemia." We have identified several agents that induce hemoglobin synthesis in K562 cells. Different inducers induced different patterns of embryonic hemoglobin synthesis but never any adult hemoglobin synthesis.Keywords
This publication has 25 references indexed in Scilit:
- K562 human leukaemic cells express fetal type (i) antigen on different glycoproteins from circulating erythrocytesNature, 1980
- Human embryonic haemoglobins Gower 1 and Gower 2Nature, 1979
- K562 human leukaemic cells synthesise embryonic haemoglobin in response to haeminNature, 1979
- Induction of erythroid differentiation in the human leukaemia cell line K562Nature, 1979
- Deficient heme synthesis as the cause of noninducibility of hemoglobin synthesis in a friend erythroleukemia cell lineCell, 1979
- Localization of the human α-globin structural gene to chromosome 16 in somatic cell hybrids by molecular hybridization assayCell, 1977
- Gene deletion as the cause of α thalassaemia: The severe form of α thalassaemia is caused by a haemoglobin gene deletionNature, 1974
- Evidence for a New Haemoglobin Chain (ζ-Chain)Nature, 1970
- Haemoglobin and red cell enzyme changes in juvenile myeloid leukaemia.BMJ, 1968
- Abnormal human haemoglobins: Separation and characterization of the α and β chains by chromatography, and the determination of two new variants, Hb chesapeake and Hb J (Bangkok)Journal of Molecular Biology, 1966