Literature DB >> 17120769

Insights from a transgenic mouse model on the role of SLC26A2 in health and disease.

Antonella Forlino1, Benedetta Gualeni, Fabio Pecora, Sara Della Torre, Rocco Piazza, Cecilia Tiveron, Laura Tatangelo, Andrea Superti-Furga, Giuseppe Cetta, Antonio Rossi.   

Abstract

Mutations in the SLC26A2 cause a family of recessive chondrodysplasias that includes in order of decreasing severity achondrogenesis 1B, atelosteogenesis 2, diastrophic dysplasia and recessive multiple epiphyseal dysplasia. The gene encodes for a widely distributed sulfate/chloride antiporter of the cell membrane whose function is crucial for the uptake of inorganic sulfate that is needed for proteoglycan sulfation. To investigate the mechanisms leading to skeletal dysplasia, we generated a transgenic mouse with a mutation in Slc26a2 causing a partial loss of function of the sulfate transporter. Homozygous mutant mice were characterized by skeletal dysplasia with chondrocytes of irregular size, delay in the formation of the secondary ossification centre and osteoporosis of long bones. Impaired sulfate uptake was demonstrated in chondrocytes, osteoblasts and fibroblasts, but proteoglycan undersulfation was detected only in cartilage. The similarity with human diastrophic dysplasia makes this mouse a model to explore pathogenetic and therapeutic aspects of SLC26A2-related disorders.

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Year:  2006        PMID: 17120769

Source DB:  PubMed          Journal:  Novartis Found Symp        ISSN: 1528-2511


  1 in total

1.  Matrix disruptions, growth, and degradation of cartilage with impaired sulfation.

Authors:  Edward L Mertz; Marcella Facchini; Anna T Pham; Benedetta Gualeni; Fabio De Leonardis; Antonio Rossi; Antonella Forlino
Journal:  J Biol Chem       Date:  2012-05-03       Impact factor: 5.157

  1 in total

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