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MINIREVIEW: Interactions Among a Subfamily of Nuclear Hormone Receptors: The Regulatory Zipper Model

Molecular Endocrinology · 1990 · Vol. 4(9) · pp. 1293–1301
Barry M. FormanHerbert H. Samuels

Abstract

The nuclear hormone receptors comprise a superfamily of ligand-modulated transcription factors that regulate homeostasis, reproduction, development, and differentiation. Three amino acids within the zinc finger DNA binding motif determine target gene specificity. Groups of receptors exist with similar DNA binding specificity. A complex carboxy terminal region mediates ligand binding, dimerization, and hormone-relieved transcriptional inactivation. We summarize the current understanding of these phenomena and suggest a novel model that structurally and functionally links these events. This "regulatory zipper model" may explain the mechanism by which ligand activates nuclear hormone receptors.

Estrogen and related hormone effectsNuclear Receptors and SignalingHormonal Regulation and HypertensionBiologyNuclear receptorTranscription factorZinc fingerSubfamilyReceptorLeucine zipperZipperbZIP domainCell biology

MeSH terms

Amino Acid SequenceAnimalsBase SequenceBinding SitesDNAHumansMolecular Sequence DataReceptors, Cell SurfaceZinc FingersMacromolecular Substances

Funding

  • York University
  • National Institutes of Health
Citations
421
FWCI
33.43
field-weighted impact
References
92
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100%
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Cited by
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Physiological Reviews · 2001 · 1,999 citations
References
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