Literature DB >> 15459956

CRB1 mutation spectrum in inherited retinal dystrophies.

Anneke I den Hollander1, Jason Davis, Saskia D van der Velde-Visser, Marijke N Zonneveld, Chiara O Pierrottet, Robert K Koenekoop, Ulrich Kellner, L Ingeborgh van den Born, John R Heckenlively, Carel B Hoyng, Penny A Handford, Ronald Roepman, Frans P M Cremers.   

Abstract

Mutations in the Crumbs homologue 1 (CRB1) gene have been reported in patients with a variety of autosomal recessive retinal dystrophies, including retinitis pigmentosa (RP) with preserved paraarteriolar retinal pigment epithelium (PPRPE), RP with Coats-like exudative vasculopathy, early onset RP without PPRPE, and Leber congenital amaurosis (LCA). We extended our investigations of CRB1 in these retinal dystrophies, and identified nine novel CRB1 sequence variants. In addition, we screened patients with "classic" RP and classic Coats disease (without RP), but no pathologic sequence variants were found in the CRB1 gene. In total, 71 different sequence variants have been identified on 184 CRB1 alleles of patients with retinal dystrophies, including amino acid substitutions, frameshift, nonsense, and splice site mutations, in-frame deletions, and large insertions. Recent studies in two animal models, mouse and Drosophila, and in vivo high-resolution microscopy in patients with LCA, have shed light on the role of CRB1 in the pathogenesis of retinal dystrophies and its function in the photoreceptors. In this article, we provide an overview of the currently known CRB1 sequence variants, predict their effect, and propose a genotype-phenotype correlation model for CRB1 mutations. Copyright 2004 Wiley-Liss, Inc.

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Year:  2004        PMID: 15459956     DOI: 10.1002/humu.20093

Source DB:  PubMed          Journal:  Hum Mutat        ISSN: 1059-7794            Impact factor:   4.878


  66 in total

Review 1.  CRB1 mutations in inherited retinal dystrophies.

Authors:  Kinga Bujakowska; Isabelle Audo; Saddek Mohand-Saïd; Marie-Elise Lancelot; Aline Antonio; Aurore Germain; Thierry Léveillard; Mélanie Letexier; Jean-Paul Saraiva; Christine Lonjou; Wassila Carpentier; José-Alain Sahel; Shomi S Bhattacharya; Christina Zeitz
Journal:  Hum Mutat       Date:  2011-12-27       Impact factor: 4.878

Review 2.  Light and inherited retinal degeneration.

Authors:  D M Paskowitz; M M LaVail; J L Duncan
Journal:  Br J Ophthalmol       Date:  2006-05-17       Impact factor: 4.638

Review 3.  Perspective on genes and mutations causing retinitis pigmentosa.

Authors:  Stephen P Daiger; Sara J Bowne; Lori S Sullivan
Journal:  Arch Ophthalmol       Date:  2007-02

4.  Next-generation sequencing (NGS) as a diagnostic tool for retinal degeneration reveals a much higher detection rate in early-onset disease.

Authors:  Morag E Shanks; Susan M Downes; Richard R Copley; Stefano Lise; John Broxholme; Karl Az Hudspith; Alexandra Kwasniewska; Wayne Il Davies; Mark W Hankins; Emily R Packham; Penny Clouston; Anneke Seller; Andrew Om Wilkie; Jenny C Taylor; Jiannis Ragoussis; Andrea H Németh
Journal:  Eur J Hum Genet       Date:  2012-09-12       Impact factor: 4.246

Review 5.  Sticking together the Crumbs - an unexpected function for an old friend.

Authors:  Barry J Thompson; Franck Pichaud; Katja Röper
Journal:  Nat Rev Mol Cell Biol       Date:  2013-05       Impact factor: 94.444

6.  Nok plays an essential role in maintaining the integrity of the outer nuclear layer in the zebrafish retina.

Authors:  Xiangyun Wei; Jian Zou; Masaki Takechi; Shoji Kawamura; Lihua Li
Journal:  Exp Eye Res       Date:  2006-03-10       Impact factor: 3.467

7.  GFAP-driven GFP expression in activated mouse Müller glial cells aligning retinal blood vessels following intravitreal injection of AAV2/6 vectors.

Authors:  Wendy M Aartsen; Koen W R van Cleef; Lucie P Pellissier; Robert M Hoek; Rogier M Vos; Bas Blits; Erich M E Ehlert; Kamaljit S Balaggan; Robin R Ali; Joost Verhaagen; Jan Wijnholds
Journal:  PLoS One       Date:  2010-08-24       Impact factor: 3.240

8.  Cone and rod photoreceptor transplantation in models of the childhood retinopathy Leber congenital amaurosis using flow-sorted Crx-positive donor cells.

Authors:  J Lakowski; M Baron; J Bainbridge; A C Barber; R A Pearson; R R Ali; J C Sowden
Journal:  Hum Mol Genet       Date:  2010-09-21       Impact factor: 6.150

9.  Novel mutations in CRB1 and ABCA4 genes cause Leber congenital amaurosis and Stargardt disease in a Swedish family.

Authors:  Frida Jonsson; Marie S Burstedt; Ola Sandgren; Anna Norberg; Irina Golovleva
Journal:  Eur J Hum Genet       Date:  2013-02-27       Impact factor: 4.246

10.  Proteomic profiling of the retinal dysplasia and degeneration chick retina.

Authors:  Sorcha Finnegan; Joanne Robson; Paul M Hocking; Manir Ali; Chris F Inglehearn; Alan Stitt; William J Curry
Journal:  Mol Vis       Date:  2010-01-11       Impact factor: 2.367

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