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PMID: 1655821 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Transcriptional element H4-site II of cell cycle regulated human H4 histone genes is a multipartite protein/DNA interaction site for factors HiNF-D, HiNF-M, and HiNF-P: involvement of phosphorylation.

Journal of cellular biochemistry ·Vol. 46 ·No. 2 ·1991-06-00 ·Pages 174-89

van Wijnen AJ, Ramsey-Ewing AL, Bortell R, Owen TA, Lian JB, Stein JL, Stein GS

Abstract

Cell cycle regulated gene expression was studied by analyzing protein/DNA interactions occurring at the H4-Site II transcriptional element of H4 histone genes using several approaches. We show that this key proximal promoter element interacts with at least three distinct sequence-specific DNA binding activities, designated HiNF-D, HiNF-M, and HiNF-P. HiNF-D binds to an extended series of nucleotides, whereas HiNF-M and HiNF-P recognize sequences internal to the HiNF-D binding domain. Gel retardation assays show that HiNF-D and HiNF-M each are represented by two distinct protein/DNA complexes involving the same DNA binding activity. These results suggest that these factors are subject to post-translational modifications. Dephosphorylation experiments in vitro suggest that both electrophoretic mobility and DNA binding activities of HiNF-D and HiNF-M are sensitive to phosphatase activity. We deduce that these factors may require a basal level of phosphorylation for sequence specific binding to H4-Site II and may represent phosphoproteins occurring in putative hyper- and hypo-phosphorylated forms. Based on dramatic fluctuations in the ratio of the two distinct HiNF-D species both during hepatic development and the cell cycle in normal diploid cells, we postulate that this modification of HiNF-D is related to the cell cycle. However, in several tumor-derived and transformed cell types the putative hyperphosphorylated form of HiNF-D is constitutively present. These data suggest that deregulation of a phosphatase-sensitive post-translational modification required for HiNF-D binding is a molecular event that reflects abrogation of a mechanism controlling cell proliferation. Thus, phosphorylation and dephosphorylation of histone promoter factors may provide a basis for modulation of protein/DNA interactions and H4 histone gene transcription during the cell cycle and at the onset of quiescence and differentiation.

MeSH Terms
Base Sequence Binding Sites Cell Cycle Chromatography, Affinity DNA-Binding Proteins/genetics,metabolism Histones/genetics Humans Molecular Sequence Data Phosphoprotein Phosphatases/metabolism Phosphorylation Plasmids Protein Processing, Post-Translational Transcription Factors/genetics Transcription, Genetic
Chemicals
DNA-Binding Proteins H4TF-1 protein, human HINF-D protein, human Histones Transcription Factors Phosphoprotein Phosphatases
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
van Wijnen A J
Department of Cell Biology, University of Massachusetts Medical School, Worcester 01655.
Ramsey-Ewing A L
Bortell R
Owen T A
Lian J B
Stein J L
Stein G S
Article Info
Journal
Journal of cellular biochemistry
Abbr.
J Cell Biochem
ISSN
0730-2312
Published
1991-06-00
Pages
174-89
Language
English
Region
United States
NLM ID
8205768
Subset
IM
Grants
NIAMS NIH HHS · AR39588 · United States
NIGMS NIH HHS · GM32010 · United States
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