Literature DB >> 9326942

Mutation of the gene encoding cellular retinaldehyde-binding protein in autosomal recessive retinitis pigmentosa.

M A Maw1, B Kennedy, A Knight, R Bridges, K E Roth, E J Mani, J K Mukkadan, D Nancarrow, J W Crabb, M J Denton.   

Abstract

Inadequate levels of all-trans-retinol in the blood cause retinal dysfunction; hence, genes implicated in retinal vitamin-A metabolism represent candidates for inherited retinal degenerations. In the current study, molecular genetic analysis of a consanguineous pedigree segregating for non-syndromic autosomal recessive retinitis pigmentosa (arRP) indicated that the affected siblings were homozygous by descent for a G4763A nucleotide substitution in RLBP1, the gene encoding cellular retinaldehyde-binding protein (CRALBP). This substitution is predicted to replace an arginine with glutamine at residue 150. CRALBP is not expressed in photoreceptors but is abundant in the retinal pigment epithelium (RPE) and Müller cells of the neuroretina, where it carries 11-cis-retinol and 11-cis-retinaldehyde. When expressed in bacteria, recombinant CRALBP (rCRALBP) containing the R150Q substitution was less soluble than wild-type rCRALBP. Mutant rCRALBP was purified from the soluble cell lysate and the protein structure was verified by mass spectrometry. The mutant protein lacked the ability to bind 11-cis-retinaldehyde. These findings suggest that arRP in the current pedigree results from a lack of functional CRALBP, presumably leading to disruption of retinal vitamin-A metabolism.

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Year:  1997        PMID: 9326942     DOI: 10.1038/ng1097-198

Source DB:  PubMed          Journal:  Nat Genet        ISSN: 1061-4036            Impact factor:   38.330


  84 in total

1.  Retinal dystrophies caused by mutations in RPE65: assessment of visual functions.

Authors:  C P Hamel; J M Griffoin; L Lasquellec; C Bazalgette; B Arnaud
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Journal:  Br J Ophthalmol       Date:  2001-03       Impact factor: 4.638

Review 3.  Retinoid-binding proteins: mediators of retinoid action.

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Review 4.  The retinal pigment epithelium in health and disease.

Authors:  J R Sparrow; D Hicks; C P Hamel
Journal:  Curr Mol Med       Date:  2010-12       Impact factor: 2.222

5.  Mutation of key residues of RPE65 abolishes its enzymatic role as isomerohydrolase in the visual cycle.

Authors:  T Michael Redmond; Eugenia Poliakov; Shirley Yu; Jen-Yue Tsai; Zhongjian Lu; Susan Gentleman
Journal:  Proc Natl Acad Sci U S A       Date:  2005-09-06       Impact factor: 11.205

6.  Severe autosomal recessive retinitis pigmentosa maps to chromosome 1p13.3-p21.2 between D1S2896 and D1S457 but outside ABCA4.

Authors:  Qingjiong Zhang; Fareeha Zulfiqar; Xueshan Xiao; S Amer Riazuddin; Radha Ayyagari; Farooq Sabar; Raphael Caruso; Paul A Sieving; Sheikh Riazuddin; J Fielding Hejtmancik
Journal:  Hum Genet       Date:  2005-09-28       Impact factor: 4.132

7.  Isomerization of 11-cis-retinoids to all-trans-retinoids in vitro and in vivo.

Authors:  J K McBee; J P Van Hooser; G F Jang; K Palczewski
Journal:  J Biol Chem       Date:  2001-10-16       Impact factor: 5.157

8.  Genetic and phenotypic analysis of Tcm, a mutation affecting early eye development.

Authors:  Ken S Wang; Lauren E Zahn; Jack Favor; Kristen M Huang; Dwight Stambolian
Journal:  Mamm Genome       Date:  2005-05       Impact factor: 2.957

9.  Screening for homozygosity by descent in families with autosomal recessive retinitis pigmentosa.

Authors:  Kota Lalitha; Subhadra Jalali; Tejas Kadakia; Chitra Kannabiran
Journal:  J Genet       Date:  2002-08       Impact factor: 1.166

10.  Alternative splicing and gene polymorphism of the human TAP3/SEC14L4 gene.

Authors:  Petra Kempna; Roberta Ricciarelli; Angelo Azzi; Jean-Marc Zingg
Journal:  Mol Biol Rep       Date:  2009-12-10       Impact factor: 2.316

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