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Article

Selective Regulation of Bone Cell Apoptosis by Translational Isoforms of the Glucocorticoid Receptor

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Pages 7143-7160 | Received 12 Feb 2007, Accepted 25 Jul 2007, Published online: 27 Mar 2023
 

Abstract

Glucocorticoids are widely used in the treatment of inflammatory and other diseases. However, high-dose or chronic administration often triggers troublesome side effects such as metabolic syndrome and osteoporosis. We recently described that one glucocorticoid receptor gene produces eight translational glucocorticoid receptor isoforms that have distinct gene-regulatory abilities. We show here that specific, but not all, glucocorticoid receptor isoforms induced apoptosis in human osteosarcoma U-2 OS bone cells. Whole human genome microarray analysis revealed that the majority of the glucocorticoid target genes were selectively regulated by specific glucocorticoid receptor isoforms. Real-time PCR experiments confirmed that proapoptotic enzymes necessary for cell death, granzyme A and caspase-6, were induced by specific glucocorticoid receptor isoforms. Chromatin immunoprecipitation assays further suggested that glucocorticoid receptor isoform-dependent induction of proapoptotic genes was likely due to selective coregulator recruitment and chromatin modification. Interestingly, the capabilities to transrepress proinflammatory genes were similar among glucocorticoid receptor isoforms. Together, these findings provide new evidence that translational glucocorticoid receptor isoforms can elicit distinct glucocorticoid responses and may be useful for the development of safe glucocorticoids with reduced side effects.

We thank Carl D. Bortner and Maria Sifre for assistance with flow cytometric analysis and Christine M. Jewell and Alyson B. Scoltock for technical assistance.

This research was supported by the Intramural Research Program of the NIH National Institute of Environmental Health Sciences and a divisional fund from the Division of Allergy-Immunology, Department of Medicine, Northwestern University.

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