z-logo
Premium
Use of the human MDR1 promoter for heat‐inducible expression of therapeutic genes
Author(s) -
Walther Wolfgang,
Stein Ulrike,
Schlag Peter M.
Publication year - 2001
Publication title -
international journal of cancer
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.475
H-Index - 234
eISSN - 1097-0215
pISSN - 0020-7136
DOI - 10.1002/ijc.10174
Subject(s) - reporter gene , hyperthermia , microbiology and biotechnology , heat shock protein , gene expression , cell culture , biology , transfection , promoter , gene , tumor necrosis factor alpha , in vitro , expression vector , heat shock , cancer research , recombinant dna , immunology , biochemistry , genetics , paleontology
The promoter of the human multidrug resistance gene ( mdr1 ) harbors stress‐responsive elements, which can be induced e.g. , by heat or cytostatic drugs. In previous studies the drug‐responsiveness of the mdr1 promoter was successfully used for the drug‐inducible expression of the human TNF‐α gene in vitro and in vivo . Beside the drug‐responsive elements of the mdr1 promoter, heat‐shock responsive elements have also been identified, which could be exploited for construction of heat‐inducible expression vectors. To analyze the hyperthermia‐inducibility of the mdr1 promoter we used the pmdr‐p‐CAT and pM3mdr‐p‐hTNF vector constructs. Both constructs carry the mdr1 promoter fragment spanning from −207 to +153 to drive expression of the CAT‐reporter or TNF‐α gene. We tested the heat‐induced CAT‐reporter and TNF‐α expression in vitro in transduced HCT15 and HCT116 human colon carcinoma cells. For the studies the transduced tumor cells were treated with hyperthermia at 41.5°C or 43°C for 2 hr to induce CAT or TNF‐α expression. Cells and supernatants were harvested before hyperthermia and at certain time points (0–120 hr) after heat shock. The heat‐induced CAT‐reporter expression or TNF‐α secretion was determined by specific ELISA. The experiments indicate that hyperthermia activates the mdr1 promoter in a temperature and time dependent manner. This induction leads to an 2‐ to 4‐fold increase in CAT‐reporter or 2‐ to 7‐fold increase in TNFα expression in the tumor cell lines. These experiments reveal that the mdr1 promoter driven expression of therapeutic genes can be employed for combined cancer gene therapy approaches. © 2001 Wiley‐Liss, Inc.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here