Literature DB >> 9294161

The activation domain of the enhancer binding protein p45NF-E2 interacts with TAFII130 and mediates long-range activation of the alpha- and beta-globin gene loci in an erythroid cell line.

P J Amrolia1, L Ramamurthy, D Saluja, N Tanese, S M Jane, J M Cunningham.   

Abstract

We have used the interaction between the erythroid-specific enhancer in hypersensitivity site 2 of the human beta-globin locus control region and the globin gene promoters as a paradigm to examine the mechanisms governing promoter/enhancer interactions in this locus. We have demonstrated that enhancer-dependent activation of the globin promoters is dependent on the presence of both a TATA box in the proximal promoter and the binding site for the erythroid-specific heteromeric transcription factor NF-E2 in the enhancer. Mutational analysis of the transcriptionally active component of NF-E2, p45NF-E2, localizes the critical region for this function to a proline-rich transcriptional activation domain in the NH2-terminal 80 amino acids of the protein. In contrast to the wild-type protein, expression of p45 NF-E2 lacking this activation domain in an NF-E2 null cell line fails to support enhancer-dependent transcription in transient assays. More significantly, the mutated protein also fails to reactivate expression of the endogenous beta- or alpha-globin loci in this cell line. Protein-protein interaction studies reveal that this domain of p45 NF-E2 binds specifically to a component of the transcription initiation complex, TATA binding protein associated factor TAFII130. These findings suggest one potential mechanism for direct recruitment of distal regulatory regions of the globin loci to the individual promoters.

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Year:  1997        PMID: 9294161      PMCID: PMC23301          DOI: 10.1073/pnas.94.19.10051

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  51 in total

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5.  Targeted deletion of 5'HS2 of the murine beta-globin LCR reveals that it is not essential for proper regulation of the beta-globin locus.

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6.  Multiple TAFIIs directing synergistic activation of transcription.

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Authors:  R A Shivdasani; M F Rosenblatt; D Zucker-Franklin; C W Jackson; P Hunt; C J Saris; S H Orkin
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9.  Dependence of globin gene expression in mouse erythroleukemia cells on the NF-E2 heterodimer.

Authors:  K J Kotkow; S H Orkin
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Authors:  S M Jane; A W Nienhuis; J M Cunningham
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  22 in total

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2.  USF and NF-E2 cooperate to regulate the recruitment and activity of RNA polymerase II in the beta-globin gene locus.

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Review 3.  Regulation and function of the NFE2 transcription factor in hematopoietic and non-hematopoietic cells.

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Journal:  Cell Mol Life Sci       Date:  2015-02-27       Impact factor: 9.261

4.  Lineage-specific activators affect beta-globin locus chromatin in multipotent hematopoietic progenitors.

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Journal:  EMBO J       Date:  2006-07-13       Impact factor: 11.598

5.  Genetic analysis of hierarchical regulation for Gata1 and NF-E2 p45 gene expression in megakaryopoiesis.

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6.  The locus control region is necessary for gene expression in the human beta-globin locus but not the maintenance of an open chromatin structure in erythroid cells.

Authors:  A Reik; A Telling; G Zitnik; D Cimbora; E Epner; M Groudine
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7.  Loading of DNA-binding factors to an erythroid enhancer.

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8.  The beta -globin locus control region (LCR) functions primarily by enhancing the transition from transcription initiation to elongation.

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10.  A major role for the TATA box in recruitment of chromatin modifying complexes to a globin gene promoter.

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