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Gene suppressor tumor RECK: cloning and characterization of the promoter and regulation of its expression

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Author(s):
Regina Maki Sasahara
Total Authors: 1
Document type: Doctoral Thesis
Press: São Paulo.
Institution: Universidade de São Paulo (USP). Conjunto das Químicas (IQ e FCF) (CQ/DBDCQ)
Defense date:
Examining board members:
Mari Cleide Sogayar; Eugenia Costanzi; Suely Lopes Gomes; Vilma Regina Martins; Luis Fernando Lima Reis
Advisor: Mari Cleide Sogayar; Makoto Noda
Abstract

The RECK gene is ubiquitously expressed in normal human tissues, but is downregulated both in tumor cell lines and in oncogenically transformed fibroblasts. Initially isolated as a tumor→normal phenotypic reversioninducing gene in v-ki-ras-transformed fibroblast, RECK encodes a membrane-anchored glycoprotein that suppresses tumor invasion and metastasis by regulating the matrix metalloproteinase-9. In order to understand the mechanism of oncogene-mediated suppression of RECK gene expression, we have isolated and characterized the 5\'-flanking region of the mouse RECK gene (mRECK). Deletion mutants constructs of this 5\' -flanking region with the luciferase reporter gene, revealed that the 52 base pairs upstream displays promoter activity which is suppressed by the Ha-ras (V12) oncogene. This region contains two Spl-binding motifs (SplA and SplB), one cEBPb-binding motif, and one CAAT box. Gel shift analysis and reporter gene assays, in combination with site-directed point mutations in these elements, revealed that both Spl sites associate with Spl as well as Sp3 proteins, although Ras- responsiveness seems to be mediated only by the downstream Spl site (SplB). Southern blot analysis using a methylation-sensitive restriction enzyme and Northern blot analysis with mRNA extracted from cells treated with a demethylating agent, indicated that the mechanism of DNA methylation is not involved in the regulation of RECK gene transcription. The role of RECK in several systems of cell proliferation, invasion and reversion, analysed by Northern blot, suggested that RECK expression is cell cycle regulated by serum in normal A3l mouse fibroblast cell line. (AU)