| Literature DB >> 22294196 |
Jung Min Ko1, Jung-Ah Yang, Seon-Yong Jeong, Hyon-Ju Kim.
Abstract
Oculocutaneous albinism (OCA) is a group of inherited disorders characterized by defective melanin biosynthesis. OCA1, the most common and severe form, is caused by mutations in the tyrosinase (TYR) gene. OCA4, caused by mutations in the SLC45A2 gene, has frequently been reported in the Japanese population. To determine the mutational spectrum in Korean OCA patients, 12 patients were recruited. The samples were first screened for TYR mutations, and negative samples were screened for SLC45A2 mutations. OCA1 was confirmed in 8 of 12 (66.7%) patients, and OCA4 was diagnosed in 1 (8.3%) patient. In the OCA1 patients, a total of 6 distinct TYR mutations were found in 15 of 16 (93.8%) alleles, all of which had been previously reported. Out of the 6 alleles, c.929insC was the most frequently detected (31.3%), and was mainly associated with OCA1A phenotypes. Other TYR mutations identified included c.1037-7T>A/c.1037-10delTT, p.D383N, p.R77Q and p.R299H. These largely overlapped with mutations found in Japanese and Chinese patients. The SLC45A2 gene analysis identified 1 novel mutation, p.D93N, in 1 patient. This study has provided information on the mutation spectrum in Korean OCA patients, and allows us to estimate the relative frequencies of OCA1 and OCA4 in Korea.Entities:
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Year: 2012 PMID: 22294196 PMCID: PMC3493039 DOI: 10.3892/mmr.2012.764
Source DB: PubMed Journal: Mol Med Rep ISSN: 1791-2997 Impact factor: 2.952
PCR primer pairs used for the amplification of TYR and SLC45A2 coding sequences.
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| ||
|---|---|---|
| Exon | Forward | Reverse |
| 1–1 | CCC ACT GGT GGG ATA CGA | GGT CCC CAA AAG CCA AAC |
| 1–2 | CCC TAG AGC CTG TGT CTC C | CCC TGC CTG AAG AAG TGA T |
| 2 | CCT CAG GAG AAG TCT AAC AAC | ACA ACA CAT ATT CTT GGT C |
| 3 | TGG GTA TCC AGA ATG TAA A | TTT AAA TCC AAT GAG CAC G |
| 4 | TTT TAA TAT ATG CCT TAT TTT AC | GGT AAC ACT AGA TTC AGC AA |
| 5 | CTC CAA AGG ACT GTG AAA GGA | GGT CTT TAC AGA AAA ATA C |
TYR, tyrosinase.
Clinical parameters and mutations in 12 Korean OCA families.
| Patient | Age (years) | Gender | Diagnosis | Causing gene | Mutation | Clinical phenotype | |||
|---|---|---|---|---|---|---|---|---|---|
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| ||||||||
| Paternal | Maternal | Hair color | Skin color | Nystagmus | |||||
| 1 | 2.2 | M | OCA1A | c.929insC | c.929insC | White | White | + | |
| 2 | 0.9 | F | OCA1A | p.R299H | c.929insC | White | White | + | |
| 3 | 2.1 | M | OCA1A | c.929insC | p.D383N | White | White | + | |
| 4 | 14.2 | M | OCA1A | p.D383N | p.R77Q | White | White | + | |
| 5 | 27.0 | M | OCA1A | p.R77Q | c.1037-7T>A; c.1037-10delTT | White | White | + | |
| 6 | 1.1 | F | OCA1B | c.929insC | c.1037-7T>A; c.1037-10delTT | Blond | White | + | |
| 7 | 0.8 | F | OCA1B | c.1037-7T>A; c.1037-10delTT | Not identified | Blond | White | + | |
| 8 | 29.0 | F | OCA1B | p.R52I | c.1037-7T>A; c.1037-10delTT | Blond | White | + | |
| 9 | 4.5 | M | OCA4 | p.D93N | p.D157N | Blond | White | + | |
| 10 | 5.9 | F | OCA | - | Not identified | Not identified | Blond | White | + |
| 11 | 1.0 | F | OCA | - | Not identified | Not identified | Blond | White | - |
| 12 | 29.0 | F | OCA | - | Not identified | Not identified | Blond | White | + |
OCA, oculocutaneous albinism; TYR, tyrosinase.
Allelic frequencies of the TYR gene in 8 Korean OCA1 patients.
| Location | Nucleotide change | Amino acid change | No. (%) of alleles identified | ||
|---|---|---|---|---|---|
|
| |||||
| Korean patients (n=16) | Japanese patients (n=60) | Chinese patients (n=178) | |||
| Exon 1 | c.155G>T | p.R52I | 1 (6.3) | 0 (0) | 0 (0) |
| c.230G>A | p.R77Q | 2 (12.5) | 9 (15.0) | 7 (3.9) | |
| Exon 2 | c.896G>A | p.R299H | 1 (6.3) | 0 (0) | 26 (14.6) |
| c.929insC | p.R311LfsX7 | 5 (31.3) | 30 (50.0) | 25 (14.0) | |
| Intron 2 | c.1037-7T>A | Mis-splicing | 4 (25.0) | 5 (8.3) | 5 (2.8) |
| c.1037-10delTT | |||||
| Exon 3 | c.1147G>A | p.D383N | 2 (12.5) | 2 (3.3) | 1 (0.6) |
| Total | 15 (93.8) | 46 (76.7) | 64 (35.9) | ||
OCA1, Oculocutaneous albinism 1, TYR, tyrosinase.
Figure 1Partial sequence of the SLC45A2 reveals a novel mutation detected in the present study. (A) The wild form compared with (B) the heterozygous G>A mutation in exon 1 replaces an aspartate with an asparagine at codon 93.