Literature DB >> 14523025

Osteocrin, a novel bone-specific secreted protein that modulates the osteoblast phenotype.

Gethin Thomas1, Pierre Moffatt, Patrick Salois, Marie-Hélène Gaumond, Rock Gingras, Eric Godin, Dengshun Miao, David Goltzman, Christian Lanctôt.   

Abstract

Although a number of secreted factors have been demonstrated to be bone regulators, none of these are unique to bone. Using a viral-based signal-trap strategy we have identified a novel gene we have termed "osteocrin." A 1280-bp mRNA encodes osteocrin producing a mature protein of 103 amino acids with a molecular mass of 11.4 kDa. Osteocrin shows no homology with any known gene except for two conserved sequence motifs reminiscent of dibasic cleavage sites found in peptide hormone precursors. Immunofluorescence and Western blot analysis confirmed the secretory nature of osteocrin. Two protein species were identified in the medium of cells overexpressing osteocrin, a full-length 11.4 kDa species and a processed approximately 5 kDa species. Mutation of the 76KKKR79 dibasic cleavage site abolished the appearance of this smaller osteocrin fragment. By in situ hybridization in mouse embryos, osteocrin was expressed specifically in Cbfa-1-positive, osteocalcin-negative osteoblasts. Immunohistochemistry on adult mouse bone showed osteocrin localization in osteoblasts and young osteocytes. By Northern blot analysis, osteocrin expression was only detected in bone, expression peaking just after birth and decreasing markedly with age. In primary osteoblastic cell cultures osteocrin expression coincided with matrix formation then decreased in very mature cultures. Treatment of cultures with 1,25-dihydroxyvitamin D3 resulted in a rapid dose-dependent down-regulation of osteocrin expression, suggesting direct regulation. Chronic treatment of primary cultures with osteocrin-conditioned media inhibited mineralization and reduced osteocalcin and alkaline phosphatase expression. These results suggest that osteocrin represents a novel, unique vitamin D-regulated bone-specific protein that appears to act as a soluble osteoblast regulator.

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Year:  2003        PMID: 14523025     DOI: 10.1074/jbc.M307310200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  35 in total

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Review 2.  Quantitative trait loci, genes, and polymorphisms that regulate bone mineral density in mouse.

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3.  Adipocyte-Specific GH Receptor-Null (AdGHRKO) Mice Have Enhanced Insulin Sensitivity With Reduced Liver Triglycerides.

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5.  Characterization of the osteoblast-specific transmembrane protein IFITM5 and analysis of IFITM5-deficient mice.

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6.  Assessing the osteoblast transcriptome in a model of enhanced bone formation due to constitutive Gs-G protein signaling in osteoblasts.

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7.  Identification of novel peptide hormones in the human proteome by hidden Markov model screening.

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9.  Musclin is an activity-stimulated myokine that enhances physical endurance.

Authors:  Ekaterina Subbotina; Ana Sierra; Zhiyong Zhu; Zhan Gao; Siva Rama Krishna Koganti; Santiago Reyes; Elizabeth Stepniak; Susan A Walsh; Michael R Acevedo; Carmen M Perez-Terzic; Denice M Hodgson-Zingman; Leonid V Zingman
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10.  Loading-related regulation of gene expression in bone in the contexts of estrogen deficiency, lack of estrogen receptor alpha and disuse.

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Journal:  Bone       Date:  2009-10-24       Impact factor: 4.398

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