Journal Article

A Mutation in Guanylate Cyclase Activator 1A (GUCA1A) in an Autosomal Dominant Cone Dystrophy Pedigree Mapping to a New Locus on Chromosome 6p21.1

Annette M. Payne, Susan M. Downes, David A.R. Bessant, Rachel Taylor, Graham E. Holder, Martin J. Warren, Alan C. Bird and Shomi S. Bhattacharya

in Human Molecular Genetics

Volume 7, issue 2, pages 273-277
Published in print February 1998 | ISSN: 0964-6906
Published online February 1998 | e-ISSN: 1460-2083 | DOI: http://dx.doi.org/10.1093/hmg/7.2.273
A Mutation in Guanylate Cyclase Activator 1A (GUCA1A) in an Autosomal Dominant Cone Dystrophy Pedigree Mapping to a New Locus on Chromosome 6p21.1

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We report a mutation (Y99C) in guanylate cyclase activator 1A (GUCA1A), the gene for guanylate cyclase activating protein (GCAP1), in a family with autosomal dominant cone dystrophy. Linkage analysis excluded all the known cone and cone-rod dystrophy loci, except the chromosome 6p21.1 region. This is known to contain the RDS gene, which is associated with dominant cone-rod dystrophy. Screening of the RDS gene by heteroduplex analysis and direct sequencing failed to demonstrate sequence changes in the coding region of this gene. The gene for GCAP1, a calcium binding protein which is highly expressed in photoreceptor outer segments, is also located in 6p21.1. It was screened for mutations, and all affected individuals showed a single base pair missense mutation (A→G) at codon 99 in exon 2 of this gene generating a tyrosine-to-cysteine change in the GCAP1 protein. This change was absent from 206 unrelated normal controls. We propose that this change would at least disrupt the EF3 hand of GCAP1 thereby preventing calcium binding and consequently interfere with activation. The resulting effect on cGMP production would predictably modify the number of open cGMP gated cation channels, and could explain the ultimate demise of cone photoreceptor cells.

Journal Article.  2862 words.  Illustrated.

Subjects: Genetics and Genomics

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