|
|
| Research article summary (published 30 Oct 2009): |
Progressive interdigital cell death: regulation by the antagonistic interaction between fibroblast growth factor 8 and retinoic acid.
Full Abstract
The complete cohort of molecules involved in interdigital cell death (ICD) and their interactions are yet to be defined. Bmp proteins, retinoic acid (RA) and Fgf8 have been previously identified as relevant factors in the control of ICD. Here we determined that downregulation of Fgf8 expression in the ectoderm overlying the interdigital areas is the event that triggers ICD, whereas RA is the persistent cell death-inducing molecule that acts on the distal mesenchyme by a mechanism involving the induction of Bax expression. Inhibition of the mitogen-activated protein kinase (Mapk) pathway prevents the survival effect of Fgf8 on interdigital cells and the accompanying Erk1/2 phosphorylation and induction of Mkp3 expression. Fgf8 regulates the levels of RA by both decreasing the expression of Raldh2 and increasing the expression of Cyp26b1, whereas RA reduces Fgfr1 expression and Erk1/2 phosphorylation. In the mouse limb, inhibition of Bmp signaling in the mesenchyme does not affect ICD. However, noggin in the distal ectoderm induces Fgf8 expression and reduces interdigit regression. In the chick limb, exogenous noggin reduces ICD, but, when applied to the distal mesenchyme, this reduction is associated with an increase in Fgf8 expression. In agreement with the critical decline in Fgf8 expression for the activation of ICD, distal interdigital cells acquire a proximal position as interdigit regression occurs. We identified proliferating distal mesenchymal cells as those that give rise to the interdigital cells fated to die. Thus, ICD is determined by the antagonistic regulation of cell death by Fgf8 and RA and occurs through a progressive, rather than massive, cell death mechanism.
Author information
Author/s: Hernández-Martínez, Rocío (R); Castro-Obregón, Susana (S); Covarrubias, Luis (L);
Affiliation: Department of Developmental Genetics and Molecular Physiology, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Morelos 62210, México.
Journal and publication information
Publication Type: Journal Article; Research Support, Non-U.S. Gov't
Journal: Development (Cambridge, England) (Development), published in England. (Language: eng)
Reference: 2009-Nov; vol 136 (issue 21) : pp 3669-78
Dates: Created 2009/10/12; Completed 2009/11/05;
PMID: 19820185, status: MEDLINE (last retrieval date: 11/5/2009, IMS Date: )
Sourced from the National Library of Medicine. Abstract text and other information may be subject to copyright.
External Links for this article
(including full text providers, if available):
Click Electronic Full-text Provider Links to see options for finding the electronic full text links to this article. Note there may be a subscription or fee required for access to the full text. See our FAQ for information on finding FREE full text articles.
This article may also be located in paper journal collections available in many libraries. Use the Journal and Publication Information above to find the full article.
MeSH headings (categories)
This article was linked to the MESH Headings shown below.
Related articles
These are the highest related articles currently in the database:
- Limb bud and flank mesoderm have distinct "physical phenotypes" that may contribute to limb budding.
18 Jun 2008 - Fine structure of the apical rim-mesenchyme complex during limb morphogenesis in man.
30 Jan 1973 - Morphogenetic potential of leg bud mesoderm to express limb-like characteristics in vitro.
30 Dec 1992 - Growth and differentiation of stage 24 limb mesenchyme cells in a serum-free chemically defined medium.
29 Jun 1989 - On the measurement of cytokinetics by continuous labeling with bromodeoxyuridine with applications to chick wing buds.
30 Dec 1991 - Retinoid receptors in vertebrate limb development.
29 Jun 1992 - Limb-somite relationship: myogenic potentialities of somatopleural mesoderm.
30 Dec 1979 - Molecular model for limb development.
19 May 2002 - Cyclic AMP derivatives stimulate the chondrogenic differentiation of the mesoderm subjacent to the apical ectodermal ridge of the chick limb bud.
30 Jul 1979 - Effects of ectoderm co-culture and conditioned medium on the limb mesoderm in vitro.
30 Dec 1992
Related Article Map
Legend:
- FREE Full text Article.
- Abstract only.
- Title only. More help.
See a large map of 100+ related articles.