Literature DB >> 14514691

Physical and functional interactions between USF and Sp1 proteins regulate human deoxycytidine kinase promoter activity.

Yubin Ge1, Tanya L Jensen, Larry H Matherly, Jeffrey W Taub.   

Abstract

Deoxycytidine kinase (EC 2.7.1.74, dCK) is central to drug activity of anticancer and antiviral agents such as cytosine arabinoside (araC) and gemcitabine. HepG2 hepatocellular carcinoma cells were used to study the transcriptional regulation of dCK. 5'-Deletion and site-directed mutagenesis of the dCK upstream region (positions -464 to -27) confirmed the importance of two GC-boxes (positions -317 to -309 and -213 to -206) and two E-boxes (positions -302 to -297 and -278 to -273). In vitro electromobility shift assays with HepG2 nuclear extracts and in vivo chromatin immunoprecipitation assays with HepG2 chromatin extracts confirmed the presence of bound Sp1/Sp3 and USF1/2. Co-transfections in HepG2 cells showed that USF1 and USF2a stimulated and Sp1 repressed promoter activity from a dCK-luciferase reporter gene construct. In Sp- and USF-null Drosophila Mel-2 cells, both Sp1 and USF1 stimulated dCK promoter activity in a dose-dependent manner, however, both Sp3 and USF2a were effectively inert. Combined Sp1 and USF1 showed additive transactivation at lower concentrations of Sp1. Sp1 was inhibitory at higher levels. Stimulation by combined USF1/USF2a with Sp1 was similar to that for USF1 alone with Sp1, whereas transactivation by Sp1 and USF2a without USF1 was synergistic. Physical interactions between USF and Sp proteins were confirmed by immunoprecipitations with Sp- and USF-specific antibodies. Domain mapping of USF1 and USF2a localized the functional interactions between USF and Sp proteins to the DNA binding domain of USF. Identifying the physical and functional interactions between Sp and USF proteins may lead to a better understanding of the basis for differential expression of the dCK gene in tumor cells and may foster strategies for up-regulating dCK gene expression and improving chemotherapy with araC and gemcitabine.

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Year:  2003        PMID: 14514691     DOI: 10.1074/jbc.M305085200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  11 in total

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4.  HINT1 inhibits beta-catenin/TCF4, USF2 and NFkappaB activity in human hepatoma cells.

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5.  Synergistic role of specificity proteins and upstream stimulatory factor 1 in transactivation of the mouse carboxylesterase 2/microsomal acylcarnitine hydrolase gene promoter.

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6.  Hypoxia-induced deoxycytidine kinase expression contributes to apoptosis in chronic lung disease.

Authors:  Tingting Weng; Harry Karmouty-Quintana; Luis J Garcia-Morales; Jose G Molina; Mesias Pedroza; Raquel R Bunge; Brian A Bruckner; Matthias Loebe; Harish Seethamraju; Michael R Blackburn
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7.  Maximal Expression of the Evolutionarily Conserved Slit2 Gene Promoter Requires Sp1.

Authors:  Jacquelyn Saunders; D Roonalika Wisidagama; Travis Morford; Cindy S Malone
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Authors:  Mingjun Liu; Johnathan R Whetstine; Scott G Payton; Yubin Ge; Robin M Flatley; Larry H Matherly
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9.  A human protein interaction network shows conservation of aging processes between human and invertebrate species.

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Journal:  PLoS Genet       Date:  2009-03-13       Impact factor: 5.917

10.  Upstream stimulatory factors are involved in the P1 promoter directed transcription of the A beta H-J-J locus.

Authors:  Alessia Finotti; Susan Treves; Francesco Zorzato; Roberto Gambari; Giordana Feriotto
Journal:  BMC Mol Biol       Date:  2008-12-16       Impact factor: 2.946

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