An Ikaros-Containing Chromatin-Remodeling Complex in Adult-Type Erythroid Cells

David O’Neill, Stuti Schoetz(Institut thématique Génétique, génomique et bioinformatique), Rocío López(Institut thématique Génétique, génomique et bioinformatique), M Castle(Institut thématique Génétique, génomique et bioinformatique), Lisa Rabinowitz(Institut thématique Génétique, génomique et bioinformatique), Erika Shor(Institut thématique Génétique, génomique et bioinformatique), Dayana Krawchuk(Institut thématique Génétique, génomique et bioinformatique), Mary Goll(Institut thématique Génétique, génomique et bioinformatique), Manfred Renz, Hans-Peter Seelig, Sunmi Han(Seoul National University), Rho Hyun Seong(Seoul National University), Sang D. Park(Seoul National University), Theodora Agalioti(Institute of Molecular Biology and Biophysics), Nikhil Munshi(Institute of Molecular Biology and Biophysics), Dimitrios Thanos(Institute of Molecular Biology and Biophysics), Hediye Erdjument‐Bromage(Memorial Sloan Kettering Cancer Center), Paul Tempst(Memorial Sloan Kettering Cancer Center), Arthur Bank(Columbia University)
Molecular and Cellular Biology
October 15, 2000
Cited by 165Open Access

Abstract

We have previously described a SWI/SNF-related protein complex (PYR complex) that is restricted to definitive (adult-type) hematopoietic cells and that specifically binds DNA sequences containing long stretches of pyrimidines. Deletion of an intergenic DNA-binding site for this complex from a human beta-globin locus construct results in delayed human gamma- to beta-globin switching in transgenic mice, suggesting that the PYR complex acts to facilitate the switch. We now show that PYR complex DNA-binding activity also copurifies with subunits of a second type of chromatin-remodeling complex, nucleosome-remodeling deacetylase (NuRD), that has been shown to have both nucleosome-remodeling and histone deacetylase activities. Gel supershift assays using antibodies to the ATPase-helicase subunit of the NuRD complex, Mi-2 (CHD4), confirm that Mi-2 is a component of the PYR complex. In addition, we show that the hematopoietic cell-restricted zinc finger protein Ikaros copurifies with PYR complex DNA-binding activity and that antibodies to Ikaros also supershift the complex. We also show that NuRD and SWI/SNF components coimmunopurify with each other as well as with Ikaros. Competition gel shift experiments using partially purified PYR complex and recombinant Ikaros protein indicate that Ikaros functions as a DNA-binding subunit of the PYR complex. Our results suggest that Ikaros targets two types of chromatin-remodeling factors-activators (SWI/SNF) and repressors (NuRD)-in a single complex (PYR complex) to the beta-globin locus in adult erythroid cells. At the time of the switch from fetal to adult globin production, the PYR complex is assembled and may function to repress gamma-globin gene expression and facilitate gamma- to beta-globin switching.


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