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PMID: 21306609 Published · epublish English Journal Article

Coordinated gene expression during gilthead sea bream skeletogenesis and its disruption by nutritional hypervitaminosis A.

BMC developmental biology ·Vol. 11 ·2011-02-09 ·页码 7

Fernández I, Darias M, Andree KB, Mazurais D, Zambonino-Infante JL, Gisbert E

Abstract

Vitamin A (VA) has a key role in vertebrate morphogenesis, determining body patterning and growth through the control of cell proliferation and differentiation processes. VA regulates primary molecular pathways of those processes by the binding of its active metabolite (retinoic acid) to two types of specific nuclear receptors: retinoic acid receptors (RARs) and retinoid X receptors (RXRs), which promote transcription of downstream target genes. This process is well known in most of higher vertebrates; however, scarce information is available regarding fishes. Therefore, in order to gain further knowledge of fish larval development and its disruption by nutritional VA imbalance, the relative expression of some RARs and RXRs, as well as several genes involved in morpho- and skeletogenesis such as peroxisome proliferator-activated receptors (PPARA, PPARB and PPARG); retinol-binding protein (RBP); insulin-like growth factors I and II (IGF1 and IGF2, respectively); bone morphogenetic protein 2 (Bmp2); transforming growth factor β-1 (TGFB1); and genes encoding different extracellular matrix (ECM) proteins such as matrix Gla protein (mgp), osteocalcin (bglap), osteopontin (SPP1), secreted protein acidic and rich in cysteine (SPARC) and type I collagen α1 chain (COL1A1) have been studied in gilthead sea bream. During gilthead sea bream larval development, specific expression profiles for each gene were tightly regulated during fish morphogenesis and correlated with specific morphogenetic events and tissue development. Dietary hypervitaminosis A during early larval development disrupted the normal gene expression profile for genes involved in RA signalling (RARA), VA homeostasis (RBP) and several genes encoding ECM proteins that are linked to skeletogenesis, such as bglap and mgp. Present data reflects the specific gene expression patterns of several genes involved in larval fish RA signalling and skeletogenesis; and how specific gene disruption induced by a nutritional VA imbalance underlie the skeletal deformities. Our results are of basic interest for fish VA signalling and point out some of the potential molecular players involved in fish skeletogenesis. Increased incidences of skeletal deformities in gilthead sea bream fed with hypervitaminosis A were the likely ultimate consequence of specific gene expression disruption at critical development stages.

MeSH 主题词
Animals Bone Development Bone Morphogenetic Protein 2/genetics Cell Differentiation/drug effects Cell Proliferation/drug effects Collagen Type I/genetics Collagen Type I, alpha 1 Chain Extracellular Matrix Proteins/drug effects,genetics Gene Expression/drug effects Gene Expression Profiling Gene Expression Regulation, Developmental Hypervitaminosis A/genetics Morphogenesis Peroxisome Proliferator-Activated Receptors/genetics Receptors, Retinoic Acid/genetics Retinoid X Receptors/genetics Retinol-Binding Proteins/genetics Reverse Transcriptase Polymerase Chain Reaction Sea Bream/genetics,growth & development,metabolism Somatomedins/genetics Transforming Growth Factor beta/genetics Tretinoin/metabolism Vitamin A/administration & dosage
化学物质
Bone Morphogenetic Protein 2 Collagen Type I Collagen Type I, alpha 1 Chain Extracellular Matrix Proteins Peroxisome Proliferator-Activated Receptors Receptors, Retinoic Acid Retinoid X Receptors Retinol-Binding Proteins Somatomedins Transforming Growth Factor beta Vitamin A Tretinoin
作者与单位
共 6 位作者,点击展开单位 / ORCID
Fernández Ignacio
Unitat de Cultius Experimentals, IRTA Centre de Sant Carles de la Ràpita (IRTA-SCR), Crta, del Poble Nou s/n, 43540 - Sant Carles de la Ràpita (Spain) [email protected]
Darias Maria
Andree Karl B
Mazurais David
Zambonino-Infante Jose Luís
Gisbert Enric
Article Info
Journal
BMC developmental biology
Abbr.
BMC Dev Biol
ISSN
1471-213X
Corresponding email
Published
2011-02-09
电子出版
2011-00-09
页码
7
Language
English
Country/Region
England
NLM ID
100966973
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