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Central role of betaine-homocysteine S-methyltransferase 3 in chondral ossification and evidence for sub-functionalization in neoteleost fish.
Rosa, Joana; Tiago, Daniel M; Marques, Cátia L; Vijayakumar, Parameswaran; Fonseca, Luis; Cancela, M Leonor; Laizé, Vincent.
Afiliação
  • Rosa J; Centre of Marine Sciences (CCMAR), University of Algarve, Faro, Portugal; PhD Program in Biomedical Sciences, Department of Biomedical Sciences and Medicine (DCBM), University of Algarve, Faro, Portugal.
  • Tiago DM; Centre of Marine Sciences (CCMAR), University of Algarve, Faro, Portugal.
  • Marques CL; Centre of Marine Sciences (CCMAR), University of Algarve, Faro, Portugal.
  • Vijayakumar P; Centre of Marine Sciences (CCMAR), University of Algarve, Faro, Portugal.
  • Fonseca L; Centre of Marine Sciences (CCMAR), University of Algarve, Faro, Portugal.
  • Cancela ML; Centre of Marine Sciences (CCMAR), University of Algarve, Faro, Portugal; Department of Biomedical Sciences and Medicine (DCBM), University of Algarve, Faro, Portugal.
  • Laizé V; Centre of Marine Sciences (CCMAR), University of Algarve, Faro, Portugal. Electronic address: vlaize@ualg.pt.
Biochim Biophys Acta ; 1860(7): 1373-87, 2016 Jul.
Article em En | MEDLINE | ID: mdl-27036080
BACKGROUND: To better understand the complex mechanisms of bone formation it is fundamental that genes central to signaling/regulatory pathways and matrix formation are identified. Cell systems were used to analyze genes differentially expressed during extracellular matrix mineralization and bhmt3, coding for a betaine-homocysteine S-methyltransferase, was shown to be down-regulated in mineralizing gilthead seabream cells. METHODS: Levels and sites of bhmt3 expression were determined by qPCR and in situ hybridization throughout seabream development and in adult tissues. Transcriptional regulation of bhmt3 was assessed from the activity of promoter constructs controlling luciferase gene expression. Molecular phylogeny of vertebrate BHMT was determined from maximum likelihood analysis of available sequences. RESULTS: bhmt3 transcript is abundant in calcified tissues and localized in cartilaginous structures undergoing endo/perichondral ossification. Promoter activity is regulated by transcription factors involved in bone and cartilage development, further demonstrating the central role of Bhmt3 in chondrogenesis and/or osteogenesis. Molecular phylogeny revealed the explosive diversity of bhmt genes in neoteleost fish, while tissue distribution of bhmt genes in seabream suggested that neoteleostean Bhmt may have undergone several steps of sub-functionalization. CONCLUSIONS: Data on bhmt3 gene expression and promoter activity evidences a novel function for betaine-homocysteine S-methyltransferase in bone and cartilage development, while phylogenetic analysis provides new insights into the evolution of vertebrate BHMTs and suggests that multiple gene duplication events occurred in neoteleost fish lineage. GENERAL SIGNIFICANCE: High and specific expression of Bhmt3 in gilthead seabream calcified tissues suggests that bone-specific betaine-homocysteine S-methyltransferases could represent a suitable marker of chondral ossification.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Osteogênese / Cartilagem / Condrogênese / Dourada / Proteínas de Peixes / Betaína-Homocisteína S-Metiltransferase Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Osteogênese / Cartilagem / Condrogênese / Dourada / Proteínas de Peixes / Betaína-Homocisteína S-Metiltransferase Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Ano de publicação: 2016 Tipo de documento: Article