Abstract

Tissue factor (TF) gene expression is rapidly induced in epithelial cells by phorbol 12-myristate 13-acetate and serum. We have shown that this induction is mediated by a novel serum response region (SRR) (-111 to +14 bp) within the human TF promoter. In this study, we characterized cis-acting genetic elements within the SRR that regulated basal and inducible expression of the TF gene in HeLa cells. Gel mobility shift assays using oligonucleotides spanning the entire SRR identified three 12-base pair (bp) motifs within subregions 1, 2, and 3 that bound constitutively expressed Sp1 and inducibly expressed EGR-1. Analysis of protein binding to these 12-bp motifs by competition with Sp1 and EGR-1 sites, mutation, and antibody supershift experiments indicated that they each contained distinct EGR-1 and Sp1 sites that overlapped by 6 bp. Functional studies using HeLa cells transfected with plasmids containing the wild-type TF promoter (-111 to +14 bp) or derivatives containing mutations in the three Sp1 and/or EGR-1 sites examined basal and inducible expression. The Sp1 sites mediated basal promoter activity, and both Sp1 and EGR-1 sites were required for maximal induction of the TF promoter by phorbol 12-myristate 13-acetate or serum. These data indicated that TF gene expression in HeLa cells was regulated by both Sp1 and EGR-1.

Highlights

  • Tissue factor (TF)1 is the primary cellular initiator of the coagulation protease cascades [1]

  • This study demonstrated that three 12-bp motifs within the serum response region (SRR), each of which contained overlapping EGR-1/Sp1 sites, mediated both phorbol 12-myristate 13-acetate (PMA) and serum induction of the TF gene

  • Sp1 was constitutively expressed in unstimulated cells, whereas de novo synthesis of EGR-1 was rapidly induced by PMA and serum stimulation

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Summary

Introduction

Tissue factor (TF) is the primary cellular initiator of the coagulation protease cascades [1]. Our previous studies show that serum and phorbol 12-myristate 13-acetate (PMA) induction of the human TF gene is mediated by a region of the TF promoter (Ϫ111 to ϩ14 bp relative to the start site of transcription) called the serum response region (SRR) [9, 10]. This SRR does not contain DNA sequences resembling the serum response element characterized in the promoter of the c-fos gene and other immediate early genes [11, 12]. Functional studies using the cloned wild-type TF promoter and derivatives containing mutations in the Sp1 and/or EGR-1 sites indicated that Sp1 was required for basal TF expression and that both Sp1 and EGR-1 mediated inducible TF expression

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