Literature DB >> 19107525

Identifying novel genes involved in both deer physiological and human pathological osteoporosis.

Adrienn Borsy1, János Podani, Viktor Stéger, Bernadett Balla, Arnold Horváth, János P Kósa, István Gyurján, Andrea Molnár, Zoltán Szabolcsi, László Szabó, Eéna Jakó, Zoltán Zomborszky, János Nagy, Szabolcs Semsey, Tibor Vellai, Péter Lakatos, László Orosz.   

Abstract

Osteoporosis attacks 10% of the population worldwide. Humans or even the model animals of the disease cannot recover from porous bone. Regeneration in skeletal elements is the unique feature of our newly investigated osteoporosis model, the red deer (Cervus elaphus) stag. Cyclic physiological osteoporosis is a consequence of the annual antler cycle. This phenomenon raises the possibility to identify genes involved in the regulation of bone mineral density on the basis of comparative genomics between deer and human. We compare gene expression activity of osteoporotic and regenerating rib bone samples versus autumn dwell control in red deer by microarray hybridization. Identified genes were tested on human femoral bone tissue from non-osteoporotic controls and patients affected with age-related osteoporosis. Expression data were evaluated by Principal Components Analysis and Canonical Variates Analysis. Separation of patients into a normal and an affected group based on ten formerly known osteoporosis reference genes was significantly improved by expanding the data with newly identified genes. These genes include IGSF4, FABP3, FABP4, FKBP2, TIMP2, TMSB4X, TRIB, and members of the Wnt signaling. This study supports that extensive comparative genomic analyses, here deer and human, provide a novel approach to identify new targets for human diagnostics and therapy.

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Year:  2008        PMID: 19107525     DOI: 10.1007/s00438-008-0413-7

Source DB:  PubMed          Journal:  Mol Genet Genomics        ISSN: 1617-4623            Impact factor:   3.291


  30 in total

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  9 in total

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Review 3.  Molecular genetic studies of gene identification for osteoporosis: the 2009 update.

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5.  Antler development and coupled osteoporosis in the skeleton of red deer Cervus elaphus: expression dynamics for regulatory and effector genes.

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9.  Correlation of microsynteny conservation and disease gene distribution in mammalian genomes.

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  9 in total

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