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PMID: 16751185 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Genetic and pharmacological evidence that a retinoic acid cannot be the RXR-activating ligand in mouse epidermis keratinocytes.

Genes & development ·Vol. 20 ·No. 11 ·2006-06-01 ·Pages 1525-38

Calléja C, Messaddeq N, Chapellier B, Yang H, Krezel W, Li M, Metzger D, Mascrez B, Ohta K, Kagechika H, Endo Y, Mark M, Ghyselinck NB, Chambon P

Abstract

Using genetic and pharmacological approaches, we demonstrate that both RARgamma/RXRalpha heterodimers involved in repression events, as well as PPARbeta(delta)/RXRalpha heterodimers involved in activation events, are cell-autonomously required in suprabasal keratinocytes for the generation of lamellar granules (LG), the organelles instrumental to the formation of the skin permeability barrier. In activating PPARbeta(delta)/RXRalpha heterodimers, RXRalpha is transcriptionally active as its AF-2 activation function is required and can be inhibited by an RXR-selective antagonist. Within repressing RARgamma/RXRalpha heterodimers, induction of the transcriptional activity of RXRalpha is subordinated to the addition of an agonistic ligand for RARgamma. Thus, the ligand that possibly binds and activates RXRalpha heterodimerized with PPARbeta(delta) cannot be a retinoic acid, as it would also bind RARgamma and relieve the RARgamma-mediated repression, thereby yielding abnormal LGs. Our data also demonstrate for the first time that subordination of RXR transcriptional activity to that of its RAR partner plays a crucial role in vivo, because it allows RXRs to act concomitantly, within the same cell, as heterodimerization partners for repression, as well as for activation events in which they are transcriptionally active.

MeSH Terms
Animals Epidermal Cells Epidermis/drug effects,metabolism Keratinocytes/cytology,drug effects,metabolism Ligands Mice Retinoid X Receptors/agonists Tretinoin/pharmacology
Chemicals
Ligands Retinoid X Receptors Tretinoin
Authors & Affiliations
14 authors, click to expand affiliations / ORCID
Calléja Cécile
Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC), Institut Clinique de la Souris (ICS), CNRS/INSERM/ULP, Collège de France, 67404 Illkirch Cedex, CU de Strasbourg, France.
Messaddeq Nadia
Chapellier Benoit
Yang Haiyuan
Krezel Wojciech
Li Mei
Metzger Daniel
Mascrez Bénédicte
Ohta Kiminori
Kagechika Hiroyuki
Endo Yasuyuki
Mark Manuel
Ghyselinck Norbert B
Chambon Pierre
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Article Info
Journal
Genes & development
Abbr.
Genes Dev
ISSN
0890-9369
Published
2006-06-01
Pages
1525-38
Language
English
Region
United States
NLM ID
8711660
PMCID
PMC1475764
Subset
IM
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