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Identification of biologically active and inactive steroid receptors

Clinical Biochemistry
|October 1, 1980
PubMed

Insights

Inactive progesterone receptors in chick oviducts prevent steroid action by lacking a specific molecular species. Restoring this species re-establishes oviduct responsiveness to progesterone.

Area of Science:

  • Endocrinology
  • Molecular Biology
  • Cell Biology

Background:

  • Steroid hormones regulate gene expression via intracellular receptors.
  • Progesterone receptors (PRs) in chick oviducts mediate steroid responsiveness.
  • Seasonal variations affect PR activity and oviduct function.

Purpose of the Study:

  • Investigate the molecular basis of inactive progesterone receptors in chick oviducts.
  • Determine the role of receptor species in steroid responsiveness.
  • Assess the functionality of progesterone receptors.

Main Methods:

  • Cell-free nuclear binding assays.
  • Isoelectric focusing to separate receptor species.
  • Analysis of receptor sedimentation rates and steroid binding affinity.

Main Results:

  • Inactive PRs in winter chick oviducts fail to translocate and bind to nuclear sites.
  • No differences in sedimentation rates or steroid binding affinity between active and inactive PRs.
  • Inactive PRs exhibit reduced tissue levels and absence of the 'A' species.
  • Undeveloped or estrogen-withdrawn oviducts show absence of the 'B' PR species.

Conclusions:

  • Steroid action may be regulated by modulating levels of specific receptor species.
  • Presence of a steroid receptor does not guarantee its functionality.
  • Cell-free nuclear binding assays and molecular species analysis can assess steroid biological activity.

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