ArticleMolecular and cellular biology1996
Binding of the Ets factor GA-binding protein to an upstream site in the factor IX promoter is a critical event in transactivation.
Article in Molecular and cellular biology, 1996. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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Who cites it
7 citing papers in PubMed, 28 citations in OpenAlex.
- Interindividual Regulation of the Breast Cancer Resistance Protein/Drug metabolism and disposition: the biological fate of chemicals · 2018Article
- Cataloguing functionally relevant polymorphisms in gene DNA ligase I: a computational approach.3 Biotech · 2011Article
- Partial correlation network analyses to detect altered gene interactions in human disease: using preeclampsia as a model.Human genetics · 2011Article
- The ETS transcription factor GABPalpha is essential for early embryogenesis.Molecular and cellular biology · 2004Article
- Pituitary Ets-1 and GABP bind to the growth factor regulatory sites of the rat prolactin promoter.Nucleic acids research · 2001Article
- The novel coactivator C1 (HCF) coordinates multiprotein enhancer formation and mediates transcription activation by GABP.The EMBO journal · 2000Article
- Identification of multiple transcription factors, HLF, FTF, and E4BP4, controlling hepatitis B virus enhancer II.Journal of virology · 2000Article
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4 authors at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Factor IX is an essential vitamin K-dependent serine protease that participates in the intrinsic pathway of coagulation. The protein is expressed exclusively in the liver. The rare Leyden form of hemophilia B (inherited factor IX deficiency) results from point mutations in three proximal promoter elements that decrease factor IX expression. Recovery of expression occurs following puberty, with factor IX protein levels rising into the normal range. We have previously implicated the PAR domain D-site-binding protein (DBP) as well as an upstream element, site 5, as playing important roles in the phenotypic recovery of hemophilia B Leyden. Here we demonstrate that site 5 binds both the CCAAT/enhancer-binding protein (C/EBPalpha) and the ubiquitous Ets factor GA-binding protein (GABPalpha/beta). Transactivation of the factor IX promoter by the PAR proteins DBP and hepatic leukemia factor (HLF) is dependent on the binding of GABPalpha/beta to site 5, and coexpression of these two factors is required for optimal activation of this promoter. The binding of C/EBPalpha to site 5 also augments the activity of GABPalpha/beta. Analysis of the developmental regulation of site 5-binding proteins in rat liver has shown that C/EBPalpha and the GABPbeta subunit increase markedly in the 2 weeks after birth. These observations establish a functional association between the Ets factor GABPalpha/beta and C/EBPalpha and indicate that the two PAR proteins, DBP and HLF, may play complementary roles in factor IX activation. Given the developmental changes exhibited by these proteins, it is likely that they play a role in regulation of the normal factor IX promoter as well as promoters carrying hemophilia B Leyden mutations.
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