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An ACTH-producing small cell lung cancer expresses aberrant glucocorticoid receptor transcripts from a normal gene
L L Parks1, M K Turney, S Detera-Wadleigh
1Division of Endocrinology, Vanderbilt University School of Medicine, Nashville, TN 37232-6303, USA.
Abstract:
ACTH production by non-pituitary tumors is generally not suppressible by exogenous glucocorticoid administration. We had postulated that defects in the glucocorticoid receptor (GR) signaling system might be responsible for this apparent glucocorticoid resistance and had previously demonstrated that DMS-79 cells, derived from an ectopic ACTH-producing tumor, express an abnormal GR mRNA. In this DMS-79 cell GR the sequence normally derived from exons 8 and 9 is replaced by sequence unmatched in the DNA databases. The protein encoded by this mRNA lacks the steroid-binding domain and does not function as a ligand-activated transcription factor. In the present work, we sought to identify the origin of the novel GR mRNA sequence. Southern blot analysis of DMS-79 genomic DNA showed no major structural alteration of the GR gene. Southern blotting of cosmid clones of the normal GR gene revealed that the novel DMS-79 GR mRNA sequence is derived from intron G, between exons 7 and 8. No splice site mutations were found in PCR-amplified DMS-79 DNA fragments surrounding the downstream splice junctions. Further sequencing indicated that the aberrant GR transcript appears to be generated by use of a consensus cleavage/polyadenylation signal found 3650 base pairs into the normal intron G. We conclude that abnormal GR pre-mRNA processing rather than a GR gene mutation confers glucocorticoid resistance on DMS-79 cells.
Insights
Ectopic ACTH-producing tumors resist glucocorticoids due to abnormal glucocorticoid receptor (GR) mRNA processing. This defect, caused by altered pre-mRNA splicing, leads to a non-functional GR protein, explaining glucocorticoid resistance in these tumors.
Area of Science:
- Endocrinology
- Molecular Biology
- Genetics
Background:
- Ectopic ACTH production by non-pituitary tumors often exhibits resistance to exogenous glucocorticoid suppression.
- Previous studies indicated abnormal glucocorticoid receptor (GR) mRNA in DMS-79 cells from an ectopic ACTH-producing tumor.
Purpose of the Study:
- To identify the origin of the abnormal GR mRNA sequence found in DMS-79 cells.
- To elucidate the mechanism conferring glucocorticoid resistance in these tumor cells.
Main Methods:
- Southern blot analysis of DMS-79 genomic DNA and cosmid clones of the GR gene.
- Polymerase Chain Reaction (PCR) amplification of DMS-79 DNA fragments.
- DNA sequencing of GR gene and mRNA.
Main Results:
- No structural alterations were found in the DMS-79 GR gene.
- The abnormal GR mRNA sequence originated from intron G, between exons 7 and 8.
- The aberrant transcript resulted from the use of a cryptic cleavage/polyadenylation signal within intron G, indicating abnormal pre-mRNA processing.
Conclusions:
- Glucocorticoid resistance in DMS-79 cells is conferred by abnormal GR pre-mRNA processing, not a GR gene mutation.
- Aberrant splicing leads to a non-functional GR protein lacking the steroid-binding domain.