Literature DB >> 7796816

EBF contains a novel zinc coordination motif and multiple dimerization and transcriptional activation domains.

J Hagman1, M J Gutch, H Lin, R Grosschedl.   

Abstract

Early B cell factor (EBF) was identified and cloned as a transcription factor expressed specifically in B lymphocytes and adipocytes. This protein was also identified as olfactory factor 1 (Olf-1) in olfactory neurons. In this study, we analyzed the structural requirements for DNA binding, homodimerization and transcriptional activation by EBF. A carboxyl-terminal region, containing a repeat of alpha-helices related to the helix-loop-helix motif, is important for dimerization of EBF in solution and can confer dimerization upon a heterologous DNA binding protein. The amino-terminal DNA binding domain by itself is monomeric, but can mediate assembly of dimers on optimized and correctly spaced half-sites. Mutational analysis of the DNA binding domain of EBF indicated that a novel zinc coordination motif consisting of H-X3-C-X2-C-X5-C is important for DNA recognition. Deletion analysis and transfer of regions of EBF onto a heterologous DNA binding domain identified a serine/threonine-rich transcriptional activation domain. Moreover, the DNA binding domain of EBF can mediate transcriptional activation from optimized binding sites. Thus, EBF contains both a complex DNA binding domain that allows for dimerization and transcriptional activation, and additional dimerization and activation domains.

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Year:  1995        PMID: 7796816      PMCID: PMC398409          DOI: 10.1002/j.1460-2075.1995.tb07290.x

Source DB:  PubMed          Journal:  EMBO J        ISSN: 0261-4189            Impact factor:   11.598


  42 in total

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9.  Purification of early-B-cell factor and characterization of its DNA-binding specificity.

Authors:  A Travis; J Hagman; L Hwang; R Grosschedl
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  54 in total

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Review 9.  Transcriptional regulation of early B cell development.

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