Major erythrocyte membrane protein genes in EKLF-deficient mice
pmid: 16728274
Major erythrocyte membrane protein genes in EKLF-deficient mice
Mice deficient in the transcription factor erythroid Krüppel-like factor, KLF1 (EKLF) die approximately 14.5 days postcoitum of anemia, attributed to decreased expression of the beta-globin gene. The objectives of this study were to rescue EKLF-deficient embryos with mice expressing gamma-globin from beta-spectrin or ankyrin promoters and to characterize expression of the major erythrocyte membrane genes in EKLF-deficient cells.Transgenic beta-spectrin/gamma-globin or ankyrin/gamma-globin mice were bred onto EKLF-deficient and wild-type backgrounds. Animals were genotyped, gamma-globin mRNA levels measured, and hemoglobin electrophoresis performed. Steady-state mRNA levels and transcriptional rates of the major erythrocyte membrane protein genes were assayed.beta-spectrin/gamma-globin or ankyrin/gamma-globin mice on EKLF-deficient and wild-type backgrounds had identical levels of gamma-globin mRNA, indicating EKLF-independence of these promoters. gamma-Globin expression improved globin chain imbalance, but hemolysis was not improved and no live-born EKLF-deficient/(A)gamma-globin mice were obtained. Circulating erythroid cells from EKLF-deficient/(A)gamma-globin embryos exhibited hemolysis reminiscent of that seen in patients with severe erythrocyte membrane defects. Levels of beta-spectrin, ankyrin, and band 3 mRNA, but not alpha-spectrin, were decreased in EKLF-deficient fetal liver RNA. In a run-on assay, levels of transcription of the ankyrin and band 3 genes were decreased in EKLF-deficient fetal liver nuclei.These results indicate that the EKLF-responsive regions of the ankyrin and beta-spectrin genes are outside their promoters and that EKLF is necessary for full transcriptional activity of the ankyrin and band 3 genes; the results also provide additional evidence that defects in addition to beta-globin deficiency, including an abnormal erythrocyte membrane, contribute to the anemia and embryonic lethality in EKLF-deficient mice.
- National Institutes of Health United States
- Yale University United States
- National Institute of Health Pakistan
- National Human Genome Research Institute United States
- New School United States
Cell Nucleus, Mice, Knockout, Erythrocyte Membrane, Kruppel-Like Transcription Factors, Erythrocytes, Abnormal, Membrane Proteins, Hemolysis, Globins, Mice, Gene Expression Regulation, Liver, Embryo Loss, Animals, Humans, Promoter Regions, Genetic
Cell Nucleus, Mice, Knockout, Erythrocyte Membrane, Kruppel-Like Transcription Factors, Erythrocytes, Abnormal, Membrane Proteins, Hemolysis, Globins, Mice, Gene Expression Regulation, Liver, Embryo Loss, Animals, Humans, Promoter Regions, Genetic
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