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Review
. 2010:664:273-82.
doi: 10.1007/978-1-4419-1399-9_31.

GCAP1 mutations associated with autosomal dominant cone dystrophy

Affiliations
Review

GCAP1 mutations associated with autosomal dominant cone dystrophy

Li Jiang et al. Adv Exp Med Biol. 2010.

Abstract

We discuss the heterogeneity of autosomal dominant cone and cone-rod dystrophies (adCD, and adCORD, respectively). As one of the best characterized adCD genes, we focus on the GUCA1A gene encoding guanylate cyclase activating protein 1 (GCAP1), a protein carrying three high affinity Ca(2+) binding motifs (EF hands). GCAP1 senses changes in cytoplasmic free [Ca(2+)] and communicates these changes to GC1, by either inhibiting it (at high free [Ca(2+)]), or stimulating it (at low free [Ca(2+)]). A number of missense mutations altering the structure and Ca(2+) affinity of EF hands have been discovered. These mutations are associated with a gain of function, producing dominant cone and cone rod dystrophy phenotypes. In this article we review these mutations and describe the consequences of specific mutations on GCAP1 structure and GC stimulation.We discuss the heterogeneity of autosomal dominant cone and cone-rod dystrophies (adCD, and adCORD, respectively). As one of the best characterized adCD genes, we focus on the GUCA1A gene encoding guanylate cyclase activating protein 1 (GCAP1), a protein carrying three high affinity Ca(2+) binding motifs (EF hands). GCAP1 senses changes in cytoplasmic free [Ca(2+)] and communicates these changes to GC1, by either inhibiting it (at high free [Ca(2+)]), or stimulating it (at low free [Ca(2+)]). A number of missense mutations altering the structure and Ca(2+) affinity of EF hands have been discovered. These mutations are associated with a gain of function, producing dominant cone and cone rod dystrophy phenotypes. In this article we review these mutations and describe the consequences of specific mutations on GCAP1 structure and GC stimulation.

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Figures

Figure 31.1
Figure 31.1
Cartoon of the activation of GC1 by GCAP1. At high free Ca2+ (dark), GCAP and GC form a complex, but enzymatic activity is very low (basal activity is needed to maintain micromolar cGMP in the cytoplasm). At low free Ca2+ (light), GCAP1 converts into an activator of GC and GC activity accelerates.
Figure 31.2
Figure 31.2
Structure of GCAP1 (adapted from (Baehr & Palczewski, 2009). N-terminal (blue) and C-terminal (red) helices bury the myristoyl group attached to Gly-2. The EF hands are solvent exposed and shown with bound Ca2+. The EF1 motif is incompetent for Ca2+ binding. Approximate locations of residues associated with cone dystrophy are depicted in red.
Figure 31.3
Figure 31.3
Cartoon of the EF3 and EF4 hand motifs in GCAP1. The 12 amino acids comprising the Ca2+-binding loop are boxed and shaded blue, flanking hydrophobic amino acids are highlighted on dark blue background. Mutations linked to adCD are identified by red arrows.

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References

    1. Alpadi K, Magupalli VG, Kappel S, Koblitz L, Schwarz K, Seigel GM, Sung CH, Schmitz F. RIBEYE recruits Munc119, a mammalian ortholog of the Caenorhabditis elegans protein unc119, to synaptic ribbons of photoreceptor synapses. J Biol.Chem. 2008;283:26461–26467. - PMC - PubMed
    1. Baehr W, Palczewski K. Guanylate cyclase-activating proteins and retina disease. Subcell.Biochem. 2007;45:71–91. - PubMed
    1. Baehr W, Palczewski K. Focus on Molecules: Guanylate cyclase-activating proteins (GCAPs) Exp Eye Res. 2009 in press. - PMC - PubMed
    1. Dizhoor AM, Boikov SG, Olshevskaya E. Constitutive activation of photoreceptor guanylate cyclase by Y99C mutant of GCAP-1. J.Biol.Chem. 1998;273:17311–17314. - PubMed
    1. Downes SM, Payne AM, Kelsell RE, Fitzke FW, Holder GE, Hunt DM, Moore AT, Bird AC. Autosomal dominant cone-rod dystrophy with mutations in the guanylate cyclase 2D gene encoding retinal guanylate cyclase-1. Arch.Ophthalmol. 2001;119:1667–1673. - PubMed

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