Literature DB >> 19304658

Involvement of all-trans-retinal in acute light-induced retinopathy of mice.

Akiko Maeda1, Tadao Maeda, Marcin Golczak, Steven Chou, Amar Desai, Charles L Hoppel, Shigemi Matsuyama, Krzysztof Palczewski.   

Abstract

Exposure to bright light can cause visual dysfunction and retinal photoreceptor damage in humans and experimental animals, but the mechanism(s) remain unclear. We investigated whether the retinoid cycle (i.e. the series of biochemical reactions required for vision through continuous generation of 11-cis-retinal and clearance of all-trans-retinal, respectively) might be involved. Previously, we reported that mice lacking two enzymes responsible for clearing all-trans-retinal, namely photoreceptor-specific ABCA4 (ATP-binding cassette transporter 4) and RDH8 (retinol dehydrogenase 8), manifested retinal abnormalities exacerbated by light and associated with accumulation of diretinoid-pyridinium-ethanolamine (A2E), a condensation product of all-trans-retinal and a surrogate marker for toxic retinoids. Now we show that these mice develop an acute, light-induced retinopathy. However, cross-breeding these animals with lecithin:retinol acyltransferase knock-out mice lacking retinoids within the eye produced progeny that did not exhibit such light-induced retinopathy until gavaged with the artificial chromophore, 9-cis-retinal. No significant ocular accumulation of A2E occurred under these conditions. These results indicate that this acute light-induced retinopathy requires the presence of free all-trans-retinal and not, as generally believed, A2E or other retinoid condensation products. Evidence is presented that the mechanism of toxicity may include plasma membrane permeability and mitochondrial poisoning that lead to caspase activation and mitochondria-associated cell death. These findings further understanding of the mechanisms involved in light-induced retinal degeneration.

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Year:  2009        PMID: 19304658      PMCID: PMC2685698          DOI: 10.1074/jbc.M900322200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  54 in total

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2.  Mutation of the Stargardt disease gene (ABCR) in age-related macular degeneration.

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3.  Rod outer segment retinol dehydrogenase: substrate specificity and role in phototransduction.

Authors:  K Palczewski; S Jäger; J Buczyłko; R K Crouch; D L Bredberg; K P Hofmann; M A Asson-Batres; J C Saari
Journal:  Biochemistry       Date:  1994-11-22       Impact factor: 3.162

4.  X-linked IAP is a direct inhibitor of cell-death proteases.

Authors:  Q L Deveraux; R Takahashi; G S Salvesen; J C Reed
Journal:  Nature       Date:  1997-07-17       Impact factor: 49.962

5.  A photoreceptor cell-specific ATP-binding transporter gene (ABCR) is mutated in recessive Stargardt macular dystrophy.

Authors:  R Allikmets; N Singh; H Sun; N F Shroyer; A Hutchinson; A Chidambaram; B Gerrard; L Baird; D Stauffer; A Peiffer; A Rattner; P Smallwood; Y Li; K L Anderson; R A Lewis; J Nathans; M Leppert; M Dean; J R Lupski
Journal:  Nat Genet       Date:  1997-03       Impact factor: 38.330

6.  Insights into the function of Rim protein in photoreceptors and etiology of Stargardt's disease from the phenotype in abcr knockout mice.

Authors:  J Weng; N L Mata; S M Azarian; R T Tzekov; D G Birch; G H Travis
Journal:  Cell       Date:  1999-07-09       Impact factor: 41.582

7.  Acetaldehyde cytotoxicity in cultured rat astrocytes.

Authors:  A Holownia; M Ledig; J J Braszko; J F Ménez
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8.  Isolation and characterization of a retinal pigment epithelial cell fluorophore: an all-trans-retinal dimer conjugate.

Authors:  Nathan E Fishkin; Janet R Sparrow; Rando Allikmets; Koji Nakanishi
Journal:  Proc Natl Acad Sci U S A       Date:  2005-05-03       Impact factor: 11.205

9.  Role of photoreceptor-specific retinol dehydrogenase in the retinoid cycle in vivo.

Authors:  Akiko Maeda; Tadao Maeda; Yoshikazu Imanishi; Vladimir Kuksa; Andrei Alekseev; J Darin Bronson; Houbin Zhang; Li Zhu; Wenyu Sun; David A Saperstein; Fred Rieke; Wolfgang Baehr; Krzysztof Palczewski
Journal:  J Biol Chem       Date:  2005-03-08       Impact factor: 5.157

10.  Opsin/all-trans-retinal complex activates transducin by different mechanisms than photolyzed rhodopsin.

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Journal:  Biochemistry       Date:  1996-03-05       Impact factor: 3.162

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  137 in total

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3.  Retinoid receptors trigger neuritogenesis in retinal degenerations.

Authors:  Yanhua Lin; Bryan W Jones; Aihua Liu; James F Tucker; Kevin Rapp; Ling Luo; Wolfgang Baehr; Paul S Bernstein; Carl B Watt; Jia-Hui Yang; Marguerite V Shaw; Robert E Marc
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Review 4.  The ATP-binding cassette transporter ABCA4: structural and functional properties and role in retinal disease.

Authors:  Yaroslav Tsybovsky; Robert S Molday; Krzysztof Palczewski
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7.  Transcriptional profile analysis of RPGRORF15 frameshift mutation identifies novel genes associated with retinal degeneration.

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8.  Fundus autofluorescence and the bisretinoids of retina.

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9.  Cellular retinol binding protein 1 modulates photoreceptor outer segment folding in the isolated eye.

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10.  Inner and outer retinal changes in retinal degenerations associated with ABCA4 mutations.

Authors:  Wei Chieh Huang; Artur V Cideciyan; Alejandro J Roman; Alexander Sumaroka; Rebecca Sheplock; Sharon B Schwartz; Edwin M Stone; Samuel G Jacobson
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