Literature DB >> 20683988

Gene expression patterns in the bone tissue of women with fibrous dysplasia.

János Kiss1, Bernadett Balla, János P Kósa, Adrienn Borsy, János Podani, István Takács, Aron Lazáry, Zsolt Nagy, Krisztián Bácsi, Adrián Kis, Eszter Szlávy, Miklós Szendroi, Gábor Speer, László Orosz, Péter Lakatos.   

Abstract

Fibrous dysplasia is an isolated skeletal disorder caused by a somatic activating mutation of GNAS gene with abnormal unmineralized matrix overproduction and extensive undifferentiated bone cell accumulation in the fibro-osseous lesions. The aim of our investigation was to identify genes that are differently expressed in fibrous versus non-fibrous human bone and to describe the relationships between these genes using multivariate data analysis. Six bone tissue samples from female patients with fibrous dysplastia (FD) and seven bone tissue samples from women without FD (non-FD) were examined. The expression differences of selected 118 genes were analyzed by the TaqMan probe-based quantitative real-time RT-PCR system. The Mann-Whitney U-test indicated marked differences in the expression of 22 genes between FD and non-FD individuals. Nine genes were upregulated in FD women compared to non-FD ones and 18 genes showed a downregulated pattern. These altered genes code for minor collagen molecules, extracellular matrix digesting enzymes, transcription factors, adhesion molecules, growth factors, pro-inflammatory cytokines, and lipid metabolism-affected substrates. Canonical variates analysis demonstrated that FD and non-FD bone tissues can be distinguished by the multiple expression profile analysis of numerous genes controlled via a G-protein coupled pathway and BMP cascade as well as genes coding for extracellular matrix composing molecules. The remarkable changed gene expression profile observed in the fibrous dysplastic human bone tissue may provide further insight into the pathogenetic process of fibrous degeneration of bone. Copyright 2010 Wiley-Liss, Inc.

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Year:  2010        PMID: 20683988     DOI: 10.1002/ajmg.a.33559

Source DB:  PubMed          Journal:  Am J Med Genet A        ISSN: 1552-4825            Impact factor:   2.802


  3 in total

1.  Changes in gene expression in human skeletal stem cells transduced with constitutively active Gsα correlates with hallmark histopathological changes seen in fibrous dysplastic bone.

Authors:  Domenico Raimondo; Cristina Remoli; Letizia Astrologo; Romina Burla; Mattia La Torre; Fiammetta Vernì; Enrico Tagliafico; Alessandro Corsi; Simona Del Giudice; Agnese Persichetti; Giuseppe Giannicola; Pamela G Robey; Mara Riminucci; Isabella Saggio
Journal:  PLoS One       Date:  2020-01-30       Impact factor: 3.240

2.  Autosomal dominant mesomandibular fibro-osseous dysplasia: a self-resolving inherited fibro-osseous lesion of the jaws.

Authors:  Ioannis G Koutlas; Cynthia L Forsman; Stephanos Kyrkanides; William S Oetting; Anna Petryk
Journal:  Front Physiol       Date:  2012-12-06       Impact factor: 4.566

3.  Nanostring technology on Fibrous Dysplasia bone biopsies. A pilot study suggesting different histology-related molecular profiles.

Authors:  Agnese Persichetti; Edoardo Milanetti; Biagio Palmisano; Annamaria di Filippo; Emanuela Spica; Samantha Donsante; Ilenia Coletta; Michele Dello Spedali Venti; Ernesto Ippolito; Alessandro Corsi; Mara Riminucci; Domenico Raimondo
Journal:  Bone Rep       Date:  2021-12-09
  3 in total

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