3.9 Article

Structural and Functional Characterization of the Interdomain Interaction in the Mineralocorticoid Receptor

Journal

MOLECULAR ENDOCRINOLOGY
Volume 23, Issue 9, Pages 1360-1370

Publisher

OXFORD UNIV PRESS INC
DOI: 10.1210/me.2009-0032

Keywords

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Funding

  1. National Health and Medical Research Council of Australia [122200]
  2. Prince Henry's Institute of Medical Research
  3. Fred Boylan and Bill Burke Fellowship
  4. Endocrine Society

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The mineralocorticoid receptor (MR) plays a central role in electrolyte homeostasis and in cardiovascular disease. We have previously reported a ligand-dependent N/C-interaction in the MR. In the present study we sought to fully characterize the MR N/C-interaction. By using a range of natural and synthetic MR ligands in a mammalian two-hybrid assay we demonstrate that in contrast to aldosterone, which strongly induces the interaction, the physiological ligands deoxycorticosterone and cortisol weakly promote the interaction but predominantly inhibit the aldosterone-mediated N/C-interaction. Similarly, progesterone and dexamethasone antagonize the interaction. In contrast, the synthetic agonist 9 alpha-fludrocortisol robustly induces the interaction. The ability of the N/C interaction to discriminate between MR agonists suggests a subtle conformational difference in the ligand-binding domain induced by these agonists. We also demonstrate that the N/C interaction is not cell specific, consistent with the evidence from a glutathione-S-transferase pull-down assay, of a direct protein-protein interaction between the N-and C-terminal domains of the MR. Examination of a panel of deletions in the N terminus suggests that several regions may be critical to the N/C-interaction. These studies have identified functional differences between physiological MR ligands, which suggest that the ligand-specific dependence of the N/C-interaction may contribute to the differential activation of the MR that has been reported in vivo. (Molecular Endocrinology 23: 1360-1370, 2009)

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