Expression of cartilage developmental genes in Hoxc8- and Hoxd4-transgenic mice.

Hox genes encode transcription factors, which regulate skeletal patterning and chondrocyte differentiation during the development of cartilage, the precursor to mature bone. Overexpression of the homeobox transcription factors Hoxc8 and Hoxd4 causes severe cartilage defects due to delay in cartilage...

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Main Authors: Claudia Kruger, Claudia Kappen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-02-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2814844?pdf=render
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spelling doaj-a2347ee3f163416384ac318978495dc42020-11-25T00:08:49ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-02-0152e897810.1371/journal.pone.0008978Expression of cartilage developmental genes in Hoxc8- and Hoxd4-transgenic mice.Claudia KrugerClaudia KappenHox genes encode transcription factors, which regulate skeletal patterning and chondrocyte differentiation during the development of cartilage, the precursor to mature bone. Overexpression of the homeobox transcription factors Hoxc8 and Hoxd4 causes severe cartilage defects due to delay in cartilage maturation. Matrix metalloproteinases (MMPs), bone morphogenetic proteins (BMPs) and fibroblastic growth factors (FGFs) are known to play important roles in skeletal development and endochondral bone formation and remodeling. In order to investigate whether these molecules are aberrantly expressed in Hoxc8- and/or Hoxd4-transgenic cartilage, we performed quantitative RT-PCR on chondrocytes from Hox-transgenic mice. Gene expression levels of Bmp4, Fgf8, Fgf10, Mmp9, Mmp13, Nos3, Timp3, Wnt3a and Wnt5a were altered in Hoxc8-transgenic chondrocytes, and Fgfr3, Ihh, Mmp8, and Wnt3a expression levels were altered in Hoxd4-transgenic chondrocytes, respectively. Notably, Wnt3a expression was elevated in Hoxc8- and reduced in Hoxd4-transgenic cartilage. These results suggest that both transcription factors affect cartilage maturation through different molecular mechanisms, and provide the basis for future studies into the role of these genes and possible interactions in pathogenesis of cartilage defects in Hoxc8- and Hoxd4-transgenic mice.http://europepmc.org/articles/PMC2814844?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Claudia Kruger
Claudia Kappen
spellingShingle Claudia Kruger
Claudia Kappen
Expression of cartilage developmental genes in Hoxc8- and Hoxd4-transgenic mice.
PLoS ONE
author_facet Claudia Kruger
Claudia Kappen
author_sort Claudia Kruger
title Expression of cartilage developmental genes in Hoxc8- and Hoxd4-transgenic mice.
title_short Expression of cartilage developmental genes in Hoxc8- and Hoxd4-transgenic mice.
title_full Expression of cartilage developmental genes in Hoxc8- and Hoxd4-transgenic mice.
title_fullStr Expression of cartilage developmental genes in Hoxc8- and Hoxd4-transgenic mice.
title_full_unstemmed Expression of cartilage developmental genes in Hoxc8- and Hoxd4-transgenic mice.
title_sort expression of cartilage developmental genes in hoxc8- and hoxd4-transgenic mice.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-02-01
description Hox genes encode transcription factors, which regulate skeletal patterning and chondrocyte differentiation during the development of cartilage, the precursor to mature bone. Overexpression of the homeobox transcription factors Hoxc8 and Hoxd4 causes severe cartilage defects due to delay in cartilage maturation. Matrix metalloproteinases (MMPs), bone morphogenetic proteins (BMPs) and fibroblastic growth factors (FGFs) are known to play important roles in skeletal development and endochondral bone formation and remodeling. In order to investigate whether these molecules are aberrantly expressed in Hoxc8- and/or Hoxd4-transgenic cartilage, we performed quantitative RT-PCR on chondrocytes from Hox-transgenic mice. Gene expression levels of Bmp4, Fgf8, Fgf10, Mmp9, Mmp13, Nos3, Timp3, Wnt3a and Wnt5a were altered in Hoxc8-transgenic chondrocytes, and Fgfr3, Ihh, Mmp8, and Wnt3a expression levels were altered in Hoxd4-transgenic chondrocytes, respectively. Notably, Wnt3a expression was elevated in Hoxc8- and reduced in Hoxd4-transgenic cartilage. These results suggest that both transcription factors affect cartilage maturation through different molecular mechanisms, and provide the basis for future studies into the role of these genes and possible interactions in pathogenesis of cartilage defects in Hoxc8- and Hoxd4-transgenic mice.
url http://europepmc.org/articles/PMC2814844?pdf=render
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AT claudiakappen expressionofcartilagedevelopmentalgenesinhoxc8andhoxd4transgenicmice
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