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Mol. Cell. Biol., Apr 1996, 1668-1675, Vol 16, No. 4
SY Lin, AR Black, D Kostic, S Pajovic, CN Hoover and JC Azizkhan
Because of the large number of growth-regulated genes containing binding
sites for the transcription factors Sp1 and E2F and the reported ability of
E2F to mediate cell cycle (growth) regulation, we studied interactions
between E2F1 and Sp1. In transient transfection assays using Drosophila
melanogaster SL2 cells, transfection with both Sp1 and E2F1 expression
vectors resulted in greater than 85-fold activation of transcription from a
hamster dihydrofolate reductase reporter construct, whereas cotransfection
with either the Sp1 or E2F1 expression vector resulted in 30- or <2-fold
activation, respectively. Therefore, these transcription factors act
synergistically in activation of dihydrofolate reductase transcription.
Transient transfection studies demonstrated that E2F1 could superactivate
Sp1- dependent transcription in a promoter containing only Sp1 sites and
that Sp1 could superactivate transcription of promoters through E2F sites,
further demonstrating that these physically associated in Drosophila cells
transfected with Sp1 and E2F1 expression vectors and in human cells, with
maximal interaction detected in mid- to late G1. Additionally, E2F1 and Sp1
interact in vitro through specific domains of each protein, and the
physical interaction and functional synergism appear to require the same
regions. Taken together, these data demonstrate that E2F1 and Sp1 both
functionally and physically interact; therefore this interaction, Sp1 and
E2F1 may regulate transcription of genes containing binding sites for
either or both factors.
Copyright © 1996, American Society for Microbiology
Cell cycle-regulated association of E2F1 and Sp1 is related to their functional interaction
Department of Experimental Therapeutics, Roswell Park Cancer Institute, Buffalo, New York 14263, USA.
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