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dc.contributor.authorLeboy, Phoebe S.
dc.contributor.authorGrasso-Knight, Giovi
dc.contributor.authorD'Angelo, Mariana
dc.contributor.authorVolk, Susan
dc.contributor.authorLian, Jane B.
dc.contributor.authorDrissi, Hicham
dc.contributor.authorStein, Gary S.
dc.contributor.authorAdams, Sherrill L.
dc.date2022-08-11T08:10:57.000
dc.date.accessioned2022-08-23T17:26:26Z
dc.date.available2022-08-23T17:26:26Z
dc.date.issued2001-03-27
dc.date.submitted2011-01-11
dc.identifier.citationJ Bone Joint Surg Am. 2001;83-A Suppl 1(Pt 1):S15-22. <a href="http://www.ejbjs.org/cgi/reprint/83/1_suppl_1/S15">Link to article on publisher's website</a>
dc.identifier.issn0021-9355 (Print)
dc.identifier.pmid11263661
dc.identifier.urihttp://hdl.handle.net/20.500.14038/49637
dc.description.abstractBACKGROUND: Intracellular signaling triggered by bone morphogenetic proteins (BMPs) results in activated Smad complexes that regulate transcription of BMP-responsive genes. However, the low specificity of Smad binding to regulatory sequences implies that additional tissue-specific transcription factors are also needed. Runx2 (Cbfal) is a transcription factor required for bone formation. We have examined the role of Smads and Runx2 in BMP induction of type X collagen, which is a marker of chondrocyte hypertrophy leading to endochondral bone formation. METHODS: Pre-hypertrophic chondrocytes from the cephalic portion of the chick embryo sternum were placed in culture in the presence or absence of rhBMP-2. Cultures were transiently transfected with DNA containing the BMP-responsive type X collagen promoter upstream of the luciferase gene. The cultures were also transfected with plasmids, causing over-expression of Smads or Runx2, or both. After 24-48 hours, cell extracts were examined for levels of luciferase expression. RESULTS: In the presence of BMP-2, chondrocytes over-expressing BMP-activated Smadl or Smad5 showed significant enhancement of luciferase production compared with that seen with BMP alone. This enhancement was not observed with over-expression of Smad2, a transforming growth factor beta (TGF-beta)-activated Smad. Overexpression of Runx2 in BMP-treated cultures increased transcriptional activity to levels similar to those seen with Smads 1 or 5. When chondrocytes were simultaneously transfected with both Runx2 and Smad 1 or 5, promoter activity was further increased, indicating that BMP-stimulated Smad activity can be augmented by increasing the levels of Runx2. CONCLUSIONS: These results implicate the skeletal tissue transcription factor Runx2 in regulation of chondrocyte hypertrophy and suggest that maximal transcription of the type X collagen gene in pre-hypertrophic chondrocytes involves interaction of BMP-stimulated Smads with Runx2. Clinical Relevance: Many skeletal abnormalities are associated with impaired regulation of chondrocyte hypertrophy in growth plates. These studies demonstrate that both BMP-activated Smads and Runx2 levels can modulate chondrocyte transition to hypertrophy.
dc.language.isoen_US
dc.relation<a href="http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?db=pubmed&cmd=Retrieve&list_uids=11263661&dopt=Abstract">Link to Article in PubMed</a>
dc.relation.urlhttp://www.ejbjs.org/cgi/reprint/83/1_suppl_1/S15
dc.subjectAnimals
dc.subjectBone Morphogenetic Proteins
dc.subjectCells, Cultured
dc.subjectChick Embryo
dc.subjectChondrocytes
dc.subjectCollagen
dc.subjectCore Binding Factor Alpha 1 Subunit
dc.subjectCore Binding Factor Alpha 2 Subunit
dc.subjectCore Binding Factor alpha Subunits
dc.subjectDNA-Binding Proteins
dc.subjectHypertrophy
dc.subjectLuciferases
dc.subject*Neoplasm Proteins
dc.subjectPhosphoproteins
dc.subjectPromoter Regions, Genetic
dc.subject*Proto-Oncogene Proteins
dc.subject*Signal Transduction
dc.subjectSmad Proteins
dc.subjectSmad5 Protein
dc.subjectTrans-Activators
dc.subjectTranscription Factors
dc.subjectTranscription, Genetic
dc.subjectTransfection
dc.subjectCell Biology
dc.titleSmad-Runx interactions during chondrocyte maturation
dc.typeJournal Article
dc.source.journaltitleThe Journal of bone and joint surgery. American volume
dc.source.volume83-A Suppl 1
dc.source.issuePt 1
dc.identifier.legacyfulltexthttps://escholarship.umassmed.edu/cgi/viewcontent.cgi?article=1063&amp;context=stein&amp;unstamped=1
dc.identifier.legacycoverpagehttps://escholarship.umassmed.edu/stein/64
dc.identifier.contextkey1724104
refterms.dateFOA2022-08-23T17:26:26Z
html.description.abstract<p>BACKGROUND: Intracellular signaling triggered by bone morphogenetic proteins (BMPs) results in activated Smad complexes that regulate transcription of BMP-responsive genes. However, the low specificity of Smad binding to regulatory sequences implies that additional tissue-specific transcription factors are also needed. Runx2 (Cbfal) is a transcription factor required for bone formation. We have examined the role of Smads and Runx2 in BMP induction of type X collagen, which is a marker of chondrocyte hypertrophy leading to endochondral bone formation.</p> <p>METHODS: Pre-hypertrophic chondrocytes from the cephalic portion of the chick embryo sternum were placed in culture in the presence or absence of rhBMP-2. Cultures were transiently transfected with DNA containing the BMP-responsive type X collagen promoter upstream of the luciferase gene. The cultures were also transfected with plasmids, causing over-expression of Smads or Runx2, or both. After 24-48 hours, cell extracts were examined for levels of luciferase expression.</p> <p>RESULTS: In the presence of BMP-2, chondrocytes over-expressing BMP-activated Smadl or Smad5 showed significant enhancement of luciferase production compared with that seen with BMP alone. This enhancement was not observed with over-expression of Smad2, a transforming growth factor beta (TGF-beta)-activated Smad. Overexpression of Runx2 in BMP-treated cultures increased transcriptional activity to levels similar to those seen with Smads 1 or 5. When chondrocytes were simultaneously transfected with both Runx2 and Smad 1 or 5, promoter activity was further increased, indicating that BMP-stimulated Smad activity can be augmented by increasing the levels of Runx2.</p> <p>CONCLUSIONS: These results implicate the skeletal tissue transcription factor Runx2 in regulation of chondrocyte hypertrophy and suggest that maximal transcription of the type X collagen gene in pre-hypertrophic chondrocytes involves interaction of BMP-stimulated Smads with Runx2. Clinical Relevance: Many skeletal abnormalities are associated with impaired regulation of chondrocyte hypertrophy in growth plates. These studies demonstrate that both BMP-activated Smads and Runx2 levels can modulate chondrocyte transition to hypertrophy.</p>
dc.identifier.submissionpathstein/64
dc.contributor.departmentDepartment of Cell Biology
dc.source.pagesS15-22


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