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Two Novel Splicing Mutations in the SLC45A2 Gene Cause Oculocutaneous Albinism Type IV by Unmasking Cryptic Splice Sites

Overview
Journal J Hum Genet
Specialty Genetics
Date 2015 May 29
PMID 26016411
Citations 4
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Abstract

Oculocutaneous albinism (OCA) is characterized by hypopigmentation of the skin, hair and eye, and by ophthalmologic abnormalities caused by a deficiency in melanin biosynthesis. OCA type IV (OCA4) is one of the four commonly recognized forms of albinism, and is determined by mutation in the SLC45A2 gene. Here, we investigated the genetic basis of OCA4 in an Italian child. The mutational screening of the SLC45A2 gene identified two novel potentially pathogenic splicing mutations: a synonymous transition (c.888G>A) involving the last nucleotide of exon 3 and a single-nucleotide insertion (c.1156+2dupT) within the consensus sequence of the donor splice site of intron 5. As computer-assisted analysis for mutant splice-site prediction was not conclusive, we investigated the effects on pre-mRNA splicing of these two variants by using an in vitro minigene approach. Production of mutant transcripts in HeLa cells demonstrated that both mutations cause the almost complete abolishment of the physiologic donor splice site, with the concomitant unmasking of cryptic donor splice sites. To our knowledge, this work represents the first in-depth molecular characterization of splicing defects in a OCA4 patient.

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References
1.
Sengupta M, Chaki M, Arti N, Ray K . SLC45A2 variations in Indian oculocutaneous albinism patients. Mol Vis. 2007; 13:1406-11. View

2.
Kirkwood B . Albinism and its implications with vision. Insight. 2009; 34(2):13-6. View

3.
Morice-Picard F, Lasseaux E, Francois S, Simon D, Rooryck C, Bieth E . SLC24A5 mutations are associated with non-syndromic oculocutaneous albinism. J Invest Dermatol. 2013; 134(2):568-571. DOI: 10.1038/jid.2013.360. View

4.
Cullinane A, Vilboux T, OBrien K, Curry J, Maynard D, Carlson-Donohoe H . Homozygosity mapping and whole-exome sequencing to detect SLC45A2 and G6PC3 mutations in a single patient with oculocutaneous albinism and neutropenia. J Invest Dermatol. 2011; 131(10):2017-25. PMC: 3174312. DOI: 10.1038/jid.2011.157. View

5.
Bartolke R, Heinisch J, Wieczorek H, Vitavska O . Proton-associated sucrose transport of mammalian solute carrier family 45: an analysis in Saccharomyces cerevisiae. Biochem J. 2014; 464(2):193-201. DOI: 10.1042/BJ20140572. View