Literature DB >> 16332273

Generation, characterization, and molecular cloning of the Noerg-1 mutation of rhodopsin in the mouse.

Lawrence H Pinto1, Martha H Vitaterna, Kazuhiro Shimomura, Sandra M Siepka, Erin L McDearmon, Deborah Fenner, Stephen L Lumayag, Chiaki Omura, Anne W Andrews, Matthew Baker, Brandon M Invergo, Marissa A Olvera, Edward Heffron, Robert F Mullins, Val C Sheffield, Edwin M Stone, Joseph S Takahashi.   

Abstract

We performed genome-wide mutagenesis of C57BL/6J mice using the mutagen N-ethyl-N-nitrosourea (ENU) and screened the third generation (G3) offspring for visual system alterations using electroretinography and fundus photography. Several mice in one pedigree showed characteristics of retinal degeneration when tested at 12-14 weeks of age: no recordable electroretinogram (ERG), attenuation of retinal vessels, and speckled pigmentation of the fundus. Histological studies showed that the retinas undergo a photoreceptor degeneration with apoptotic loss of outer nuclear layer nuclei but visual acuity measured using the optomotor response under photopic conditions persists in spite of considerable photoreceptor loss. The Noerg-1 mutation showed an autosomal dominant pattern of inheritance in progeny. Studies in early postnatal mice showed degeneration to occur after formation of partially functional rods. The Noerg-1 mutation was mapped genetically to chromosome 6 by crossing C57BL/6J mutants with DBA/2J or BALB/cJ mice to produce an N2 generation and then determining the ERG phenotypes and the genotypes of the N2 offspring at multiple loci using SSLP and SNP markers. Fine mapping was accomplished with a set of closely spaced markers. A non-recombinant region from 112.8 Mb to 115.1 Mb was identified, encompassing the rhodopsin (Rho) coding region. A single nucleotide transition from G to A was found in the Rho gene that is predicted to result in a substitution of Tyr for Cys at position 110, in an intradiscal loop. This mutation has been found in patients with autosomal dominant retinitis pigmentosa (RP) and results in misfolding of rhodopsin expressed in vitro. Thus, ENU mutagenesis is capable of replicating mutations that occur in human patients and is useful for generating de novo models of human inherited eye disease. Furthermore, the availability of the mouse genomic sequence and extensive DNA polymorphisms made the rapid identification of this gene possible, demonstrating that the use of ENU-induced mutations for functional gene identification is now practical for individual laboratories.

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Year:  2005        PMID: 16332273     DOI: 10.1017/S0952523805225117

Source DB:  PubMed          Journal:  Vis Neurosci        ISSN: 0952-5238            Impact factor:   3.241


  11 in total

1.  Missing optomotor head-turning reflex in the DBA/2J mouse.

Authors:  Peter Barabas; Wei Huang; Hui Chen; Christopher L Koehler; Gareth Howell; Simon W M John; Ning Tian; René C Rentería; David Krizaj
Journal:  Invest Ophthalmol Vis Sci       Date:  2011-08-29       Impact factor: 4.799

Review 2.  Lighting a candle in the dark: advances in genetics and gene therapy of recessive retinal dystrophies.

Authors:  Anneke I den Hollander; Aaron Black; Jean Bennett; Frans P M Cremers
Journal:  J Clin Invest       Date:  2010-09-01       Impact factor: 14.808

Review 3.  Psychophysical testing in rodent models of glaucomatous optic neuropathy.

Authors:  Stephanie L Grillo; Peter Koulen
Journal:  Exp Eye Res       Date:  2015-07-02       Impact factor: 3.467

4.  Mutations of the opsin gene (Y102H and I307N) lead to light-induced degeneration of photoreceptors and constitutive activation of phototransduction in mice.

Authors:  Ewa Budzynski; Alecia K Gross; Suzanne D McAlear; Neal S Peachey; Meera Shukla; Feng He; Malia Edwards; Jungyeon Won; Wanda L Hicks; Theodore G Wensel; Jurgen K Naggert; Patsy M Nishina
Journal:  J Biol Chem       Date:  2010-03-05       Impact factor: 5.157

5.  A novel mutation in Prph2, a gene regulated by Nr2e3, causes retinal degeneration and outer-segment defects similar to Nr2e3 ( rd7/rd7 ) retinas.

Authors:  Arne M Nystuen; Andrew J Sachs; Yang Yuan; Laura Heuermann; Neena B Haider
Journal:  Mamm Genome       Date:  2008-09-03       Impact factor: 2.957

6.  Allelic variance between GRM6 mutants, Grm6nob3 and Grm6nob4 results in differences in retinal ganglion cell visual responses.

Authors:  Dennis M Maddox; Kirstan A Vessey; Gary L Yarbrough; Brandon M Invergo; Donald R Cantrell; Samsoon Inayat; Victoria Balannik; Wanda L Hicks; Norman L Hawes; Shannon Byers; Richard S Smith; Ron Hurd; Douglas Howell; Ronald G Gregg; Bo Chang; Jürgen K Naggert; John B Troy; Lawrence H Pinto; Patsy M Nishina; Maureen A McCall
Journal:  J Physiol       Date:  2008-08-07       Impact factor: 5.182

7.  Severe retinal degeneration caused by a novel rhodopsin mutation.

Authors:  Haiquan Liu; Meng Wang; Chun-Hong Xia; Xin Du; John G Flannery; Kevin D Ridge; Bruce Beutler; Xiaohua Gong
Journal:  Invest Ophthalmol Vis Sci       Date:  2009-09-09       Impact factor: 4.799

8.  Generation, identification and functional characterization of the nob4 mutation of Grm6 in the mouse.

Authors:  Lawrence H Pinto; Martha H Vitaterna; Kazuhiro Shimomura; Sandra M Siepka; Victoria Balannik; Erin L McDearmon; Chiaki Omura; Stephen Lumayag; Brandon M Invergo; Brett Glawe; Donald R Cantrell; Samsoon Inayat; Marissa A Olvera; Kirstan A Vessey; Maureen A McCall; Dennis Maddox; Catherine W Morgans; Brandon Young; Mathew T Pletcher; Robert F Mullins; John B Troy; Joseph S Takahashi
Journal:  Vis Neurosci       Date:  2007 Jan-Feb       Impact factor: 3.241

Review 9.  Large-scale mutagenesis and phenotypic screens for the nervous system and behavior in mice.

Authors:  Martha Hotz Vitaterna; Lawrence H Pinto; Joseph S Takahashi
Journal:  Trends Neurosci       Date:  2006-03-07       Impact factor: 13.837

Review 10.  Mouse Models of Inherited Retinal Degeneration with Photoreceptor Cell Loss.

Authors:  Gayle B Collin; Navdeep Gogna; Bo Chang; Nattaya Damkham; Jai Pinkney; Lillian F Hyde; Lisa Stone; Jürgen K Naggert; Patsy M Nishina; Mark P Krebs
Journal:  Cells       Date:  2020-04-10       Impact factor: 7.666

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