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PMID: 9030690 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

HBP1: a HMG box transcriptional repressor that is targeted by the retinoblastoma family.

Genes & development ·Vol. 11 ·No. 3 ·1997-02-01 ·Pages 383-96

Tevosian SG, Shih HH, Mendelson KG, Sheppard KA, Paulson KE, Yee AS

Abstract

A prominent feature of cell differentiation is the initiation and maintenance of an irreversible cell cycle arrest with the complex involvement of the retinoblastoma (RB) family (RB, p130, p107). We have isolated the HBP1 transcriptional repressor as a potential target of the RB family in differentiated cells. By homology, HBP1 is a sequence-specific HMG transcription factor, of which LEF-1 is the best-characterized family member. Several features of HBP1 suggest an intriguing role as a transcriptional and cell cycle regulator in differentiated cells. First, inspection of the HBP1 protein sequence revealed two consensus RB interaction motifs (LXCXE and IXCXE). Second, HBP1 interaction was selective for RB and p130, but not p107. HBP1, RB, and p130 levels are all up-regulated with differentiation; in contrast, p107 levels decline. Third, HBP1 can function as a transcriptional repressor of the promoter for N-MYC, which is a critical cell cycle and developmental gene. Fourth, because the activation of the N-MYC promoter in cycling cells required the E2F transcription factor, we show that E2F-1 and HBP1 represent opposite transcriptional signals that can be integrated within the N-MYC promoter. Fifth, the expression of HBP1 lead to efficient cell cycle arrest. The arrest phenotype was manifested in the presence of optimal proliferation signals, suggesting that HBP1 exerted a dominant regulatory role. Taken together, the results suggest that HBP1 may represent a unique transcriptional repressor with a role in initiation and establishment of cell cycle arrest during differentiation.

MeSH Terms
Animals Carrier Proteins Cell Cycle/physiology Cell Cycle Proteins Cell Differentiation Cell Line DNA-Binding Proteins E2F Transcription Factors E2F1 Transcription Factor High Mobility Group Proteins/metabolism Mice Nuclear Proteins/metabolism Phosphoproteins/metabolism Promoter Regions, Genetic Proteins Proto-Oncogene Proteins c-myc/genetics Repressor Proteins/metabolism Retinoblastoma Protein/metabolism Retinoblastoma-Binding Protein 1 Retinoblastoma-Like Protein p107 Retinoblastoma-Like Protein p130 Transcription Factor DP1 Transcription Factors/metabolism
Chemicals
Arid4a protein, mouse Carrier Proteins Cell Cycle Proteins DNA-Binding Proteins E2F Transcription Factors E2F1 Transcription Factor E2f1 protein, mouse HBP1 protein, human Hbp1 protein, mouse High Mobility Group Proteins Nuclear Proteins Phosphoproteins Proteins Proto-Oncogene Proteins c-myc Rbl1 protein, mouse Rbl2 protein, mouse Repressor Proteins Retinoblastoma Protein Retinoblastoma-Binding Protein 1 Retinoblastoma-Like Protein p107 Retinoblastoma-Like Protein p130 Transcription Factor DP1 Transcription Factors
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Tevosian S G
The Department of Biochemistry, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.
Shih H H
Mendelson K G
Sheppard K A
Paulson K E
Yee A S
Article Info
Journal
Genes & development
Abbr.
Genes Dev
ISSN
0890-9369
Published
1997-02-01
Pages
383-96
Language
English
Region
United States
NLM ID
8711660
Subset
IM
Grants
NIDDK NIH HHS · DK 50442 · United States
NIGMS NIH HHS · GM44634 · United States
NIDDK NIH HHS · P30 DK-34928 · United States
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