The dual role of helix-loop-helix-zipper protein USF in ribosomal RNA gene transcription in vivo
被引:29
作者:
Ghosh, AK
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FINCH UNIV HLTH SCI CHICAGO MED SCH, DEPT PHARMACOL & MOL BIOL, CHICAGO, IL 60064 USAFINCH UNIV HLTH SCI CHICAGO MED SCH, DEPT PHARMACOL & MOL BIOL, CHICAGO, IL 60064 USA
Ghosh, AK
[1
]
Datta, PK
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FINCH UNIV HLTH SCI CHICAGO MED SCH, DEPT PHARMACOL & MOL BIOL, CHICAGO, IL 60064 USAFINCH UNIV HLTH SCI CHICAGO MED SCH, DEPT PHARMACOL & MOL BIOL, CHICAGO, IL 60064 USA
Datta, PK
[1
]
Jacob, ST
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FINCH UNIV HLTH SCI CHICAGO MED SCH, DEPT PHARMACOL & MOL BIOL, CHICAGO, IL 60064 USAFINCH UNIV HLTH SCI CHICAGO MED SCH, DEPT PHARMACOL & MOL BIOL, CHICAGO, IL 60064 USA
Jacob, ST
[1
]
机构:
[1] FINCH UNIV HLTH SCI CHICAGO MED SCH, DEPT PHARMACOL & MOL BIOL, CHICAGO, IL 60064 USA
ribosomal RNA gene;
upstream stimulatory factor;
repressor;
activator;
pol I transcription;
D O I:
10.1038/sj.onc.1200866
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
We have previously demonstrated that the core promoter of rat ribosomal RNA gene (rDNA) contains an E-box-Like sequence to which the core promoter binding factor CPBF binds and that the 44 kDa subunit of this protein is immunologically related to USF1, the helix-loop-helix-zipper DNA binding protein. Further, we showed that RNA polymerase I (pol I) transcription in vitro is competed by oligonucleotides containing USF-binding site, which suggested a key role for USF in rDNA transcription. To prove the potential role of USF in pol I transcription in vivo, USF1 and USF2 homodimers and USF1/USF2 heterodimer were overexpressed in CHO cells by transfection of the respective cDNAs, Co-transfection of a plasmid containing rDNA followed by primer extension analysis showed that overexpression of USF1 and USF2 as homodimers resulted in inhibition of rDNA transcription by as much as 85-90% whereas overexpression of USF1/USF2 in the heterodimeric form activated transcription approximately 3.5-fold. Transfection of mutant USF2 cDNA that is devoid of the basic DNA-binding domain produced only minimal inhibition of rDNA transcription. These data show that USF can modulate transcription of rRNA gene in vivo by functioning as a repressor (homodimer) or activator (heterodimer) of pol I transcription in vivo and suggest that inhibition of rDNA transcription may be responsible for the antiproliferative action of USF homodimers.
机构:
CHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USACHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USA
GHOSH, AK
;
HOFF, CM
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CHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USACHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USA
HOFF, CM
;
JACOB, ST
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机构:
CHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USACHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USA
机构:
CHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USACHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USA
GHOSH, AK
;
HOFF, CM
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h-index: 0
机构:
CHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USACHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USA
HOFF, CM
;
JACOB, ST
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h-index: 0
机构:
CHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USACHICAGO MED SCH, DEPT PHARMACOL & MOLEC BIOL, 3333 GREEN BAY RD, N CHICAGO, IL 60064 USA