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Glucocorticoids in malignant lymphoid cells: gene regulation and the minimum receptor fragment for lysis
E B Thompson1, L V Nazareth, R Thulasi
1University of Texas Medical Branch, Galveston 77550.
Abstract:
We have examined clones of human malignant lymphoid cells for markers that correlate with glucocorticoid-mediated cell lysis. In glucocorticoid-sensitive clones of CEM, a human T-cell lymphoblastic leukemia line, two genes correlate with glucocorticoid-induced cell lysis. The glucocorticoid receptor (GR) itself is induced by standard glucocorticoids in sensitive clones and not in insensitive clones. The phenylpyrazolo-glucocorticoid cortivazol (CVZ) is capable of lysing several clones resistant to high concentrations of standard potent glucocorticoids. When these clones were tested for cortivazol responses, they were not only lysed by cortivazol but also showed induction of GR mRNA. Thus receptor induction appears to correlate with the lysis function of receptor in these cells. To determine what parts of the GR are required for lysis, we have mapped this function by transfecting and expressing GR and GR fragment genes in a GR-deficient CEM clone. Our results indicate that none of the known trans-activation regions of the GR are required. Removal of the steroid binding domain gives a fragment that is fully constitutive. Only one and one-half "Zn fingers" of the DNA binding region are required. We also find in CEM cells rapid suppression of the c-myc protooncogene, preceding growth arrest and cell lysis by glucocorticoids. This occurs only in clones possessing both intact receptors and lysis function. Thus the simple presence of GR alone is not sufficient to guarantee c-myc down-regulation. Introduction into the cells of c-myc driven by a promoter that does not permit suppression by glucocorticoids confers resistance to steroids. Furthermore, suppression of c-myc by antisense oligonucleotides also kills the cells. Therefore, c-myc appears to be a pivotal gene related both to ability of steroid to kill and to cell viability.
Insights
Glucocorticoid receptor (GR) induction and specific DNA-binding domains are crucial for glucocorticoid-induced cell death in lymphoid leukemia. The c-myc gene is pivotal, mediating both steroid-induced cell killing and overall cell viability.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Glucocorticoids induce cell lysis in sensitive lymphoid cells.
- Glucocorticoid receptor (GR) expression and function are key to this process.
- Understanding the molecular mechanisms of glucocorticoid-induced cell death is crucial for leukemia treatment.
Purpose of the Study:
- To identify markers correlating with glucocorticoid-mediated cell lysis in human malignant lymphoid cells.
- To map the functional domains of the GR required for cell lysis.
- To elucidate the role of the c-myc protooncogene in glucocorticoid-induced apoptosis.
Main Methods:
- Analysis of GR induction in sensitive and resistant lymphoid cell clones.
- Testing cortivazol (CVZ) response in resistant clones.
- Transfection and expression of GR and GR fragment genes in GR-deficient cells.
- Investigating c-myc protooncogene regulation by glucocorticoids.
Main Results:
- GR induction correlates with glucocorticoid-induced cell lysis.
- Specific DNA-binding domains (Zn fingers) of GR are essential for lysis, not trans-activation regions or the steroid-binding domain.
- Glucocorticoids rapidly suppress c-myc, preceding cell arrest and lysis.
- c-myc down-regulation is necessary for steroid-induced cell death and is linked to cell viability.
Conclusions:
- GR induction and specific DNA-binding regions are critical for glucocorticoid-mediated lymphoid cell lysis.
- The c-myc protooncogene plays a pivotal role in both glucocorticoid-induced apoptosis and maintaining cell viability.