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Differential Functional Significance of Ap-1 Binding Sites in the Promoter of the Gene Encoding Mouse Tissue Inhibitor of Metalloproteinases-3

  1. Author:
    Kim, H. T.
    Pennie, W. D.
    Sun, Y.
    Colburn, N. H.
  2. Author Address

    Kim HT NCI GENE REGULAT SECT LAB BIOCHEM PHYSIOL FREDERICK CANC RES & DEV CTR FREDERICK, MD 21702 USA WARNER LAMBERT PARKE DAVIS PARKE DAVIS PHARMACEUT RES DEPT MOL BIOL ANN ARBOR, MI 48105 USA
    1. Year: 1997
  1. Journal: Biochemical Journal
    1. 324
    2. Part 2
    3. Pages: 547-553
  2. Type of Article: Article
  1. Abstract:

    Tissue inhibitor of metalloproteinases-3 (TIMP-3) is an extracellular-matrix-associated protein that suppresses tumorigenicity or invasion in several model systems. We have identified, by in vitro footprinting, six AP-1 (activator protein-1) or AP-1-like binding sites in the mouse TIMP-3 promoter that bind purified c-Jun homodimers. Electrophoretic mobility shift assays revealed that the non-consensus fifth AP-1 binding site (AP-720; nt -720 to -714) had the strongest binding activity for recombinant c-Jun protein, and that the fourth binding site (AP-763; nt -763 to -754) and AP-720 showed strong binding activity for cellular nuclear proteins. Antibody supershift and blocking experiments suggest that AP-720, but not AP-763, binds authentic AP-1 components. Transient transfection reporter assays of deletion constructs showed that the region spanning AP-720 has the highest transcriptional activity, and that sequences 5' to this region (nt -2846 to -747) may contain negative regulatory elements. The deletion construct containing about 500 nt 5' to the transcriptional start, but no AP-1 sites, showed lower but significant activity, suggesting both AP-1-dependent and -independent regulation of the mouse TIMP-3 promoter. Mutational inactivation of AP-720 abolished the activity increment that distinguished the reporter construct containing both AP-720 and sixth AP-1 binding site (AP-617; nt -617 to -611) from that containing only AP-617. In summary, we report here that both AP-1 and non-AP-1 elements contribute to activity, with the non-consensus AP-1 site at -720 showing the greatest functional significance among the AP-1 sites. [References: 27]

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