Literature DB >> 16636652

Identification of the genetic defect in the original Wagner syndrome family.

Barbara Kloeckener-Gruissem1, Deborah Bartholdi, Marie-Therese Abdou, Dieter R Zimmermann, Wolfgang Berger.   

Abstract

PURPOSE: The aim of the present study was to determine the genetic defect in Wagner syndrome, a rare disorder belonging to the group of hereditary vitreoretinal degenerations. This disease has been genetically mapped to chromosome 5q14.3.
METHODS: Molecular analysis was performed in the progeny of the original pedigree described by Wagner in 1938. We searched for pathogenic mutations and their effects in two candidate genes, CSPG2 and EDIL3, which locate to the critical chromosomal interval. Reverse transcriptase polymerase chain reaction (RT-PCR) analysis was used to investigate potential splice defects of CSPG2 transcripts.
RESULTS: While no alterations were detected in the exons of EDIL3, several changes were identified in the CSPG2 gene. Only one of the novel changes, a heterozygous G to A substitution of the first nucleotide in intron 8, cosegregates with the disease phenotype. This change disrupts the highly conserved splice donor sequence. In blood cells of an index patient, we found CSPG2 transcripts with normally spliced exon 8/9 junction but also two additional CSPG2 transcripts, which were not detected in the control. One lacks the entire exon 8, while the other is missing only the last 21 bp of exon 8.
CONCLUSIONS: CSPG2 encodes versican, a large proteoglycan, which is an extracellular matrix component of the human vitreous and participates in the formation of the vitreous gel. The splice site mutation described here may lead to a complete lack of exon 8 in CSPG2 transcripts, which shortens the predicted protein by 1754 amino acids and leads to severe reduction of glycosaminoglycan attachment sites.

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Year:  2006        PMID: 16636652

Source DB:  PubMed          Journal:  Mol Vis        ISSN: 1090-0535            Impact factor:   2.367


  19 in total

1.  Novel VCAN mutations and evidence for unbalanced alternative splicing in the pathogenesis of Wagner syndrome.

Authors:  Barbara Kloeckener-Gruissem; John Neidhardt; István Magyar; Henri Plauchu; Jean-Christophe Zech; Laurette Morlé; Sheila M Palmer-Smith; Moira J Macdonald; Véronique Nas; Andrew E Fry; Wolfgang Berger
Journal:  Eur J Hum Genet       Date:  2012-06-27       Impact factor: 4.246

2.  Multimodal Imaging in Wagner Syndrome.

Authors:  Akshay S Thomas; Kari Branham; Russell N Van Gelder; Stephen P Daiger; Lori S Sullivan; Sara J Bowne; John R Heckenlively; Mark E Pennesi
Journal:  Ophthalmic Surg Lasers Imaging Retina       Date:  2016-06-01       Impact factor: 1.300

Review 3.  The multiple, complex roles of versican and its proteolytic turnover by ADAMTS proteases during embryogenesis.

Authors:  Sumeda Nandadasa; Simon Foulcer; Suneel S Apte
Journal:  Matrix Biol       Date:  2014-01-18       Impact factor: 11.583

Review 4.  Extracellular matrix in the trabecular meshwork: intraocular pressure regulation and dysregulation in glaucoma.

Authors:  Janice A Vranka; Mary J Kelley; Ted S Acott; Kate E Keller
Journal:  Exp Eye Res       Date:  2015-04       Impact factor: 3.467

5.  Mutations in CABP4, the gene encoding the Ca2+-binding protein 4, cause autosomal recessive night blindness.

Authors:  Christina Zeitz; Barbara Kloeckener-Gruissem; Ursula Forster; Susanne Kohl; István Magyar; Bernd Wissinger; Gábor Mátyás; François-Xavier Borruat; Daniel F Schorderet; Eberhart Zrenner; Francis L Munier; Wolfgang Berger
Journal:  Am J Hum Genet       Date:  2006-08-23       Impact factor: 11.025

6.  Clinical characterisation and molecular analysis of Wagner syndrome.

Authors:  Sarah P Meredith; Allan J Richards; Declan W Flanagan; John D Scott; Arabella V Poulson; Martin P Snead
Journal:  Br J Ophthalmol       Date:  2006-10-11       Impact factor: 4.638

Review 7.  Characterizing the "POAGome": A bioinformatics-driven approach to primary open-angle glaucoma.

Authors:  Ian D Danford; Lana D Verkuil; Daniel J Choi; David W Collins; Harini V Gudiseva; Katherine E Uyhazi; Marisa K Lau; Levi N Kanu; Gregory R Grant; Venkata R M Chavali; Joan M O'Brien
Journal:  Prog Retin Eye Res       Date:  2017-02-20       Impact factor: 21.198

8.  Mutational hot spot potential of a novel base pair mutation of the CSPG2 gene in a family with Wagner syndrome.

Authors:  Shawn M Ronan; Khanh-Nhat Tran-Viet; Erica L Burner; Ravikanth Metlapally; Cynthia A Toth; Terri L Young
Journal:  Arch Ophthalmol       Date:  2009-11

9.  Mutations in KCNJ13 cause autosomal-dominant snowflake vitreoretinal degeneration.

Authors:  J Fielding Hejtmancik; Xiaodong Jiao; Anren Li; Yuri V Sergeev; Xiaoyan Ding; Anil K Sharma; Chi-Chao Chan; Igor Medina; Albert O Edwards
Journal:  Am J Hum Genet       Date:  2008-01       Impact factor: 11.025

10.  WAGNER syndrome: anatomic, functional and genetic characterization of a Portuguese family.

Authors:  Joana R Araújo; João Tavares-Ferreira; Sérgio Estrela-Silva; Paulo Rocha; Elisete Brandão; Pedro Alves Faria; Fernando Falcão-Reis; Amândio Rocha-Sousa
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2017-10-25       Impact factor: 3.117

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