Blue cone monochromatism in a female due to skewed X-inactivation
OPHTHALMIC GENETICS
Authors: Frederiksen, Anja L.; Duno, Morten; Welinder, Lotte G.
Abstract
Blue cone monochromatism (BCM) is a rare cone dystrophy with recessive X-linked inheritance and therefore diagnosed in males whereas females are clinically unaffected. We present a female with clinically manifested BCM. The diagnosis was genetically verified with the identification of one single red-green OPN1LW/MW hybrid gene harboring a point mutation c.607C>G, p.Cys203Arg that associates with BCM and in addition a completely biased X-inactivation in DNA isolated from full blood and buccal mucosa. The present case illustrates that females may develop symptoms of recessive X-linked eye diseases in rare cases.
Genotype determination of the OPN1LW/OPN1MW genes: novel disease-causing mechanisms in Japanese patients with blue cone monochromacy
SCIENTIFIC REPORTS
Authors: Katagiri, Satoshi; Iwasa, Maki; Hayashi, Takaaki; Hosono, Katsuhiro; Yamashita, Takahiro; Kuniyoshi, Kazuki; Ueno, Shinji; Kondo, Mineo; Ueyama, Hisao; Ogita, Hisakazu; Shichida, Yoshinori; Inagaki, Hidehito; Kurahashi, Hiroki; Kondo, Hiroyuki; Ohji, Masahito; Hotta, Yoshihiro; Nakano, Tadashi
Abstract
Blue cone monochromacy (BCM) is characterized by loss of function of both OPN1LW (the first) and OPN1MW (the downstream) genes on the X chromosome. The purpose of this study was to investigate the first and downstream genes in the OPN1LW/OPN1MW array in four unrelated Japanese males with BCM. In Case 1, only one gene was present. Abnormalities were found in the promoter, which had a mixed unique profile of first and downstream gene promoters and a -71A >C substitution. As the promoter was active in the reporter assay, the cause of BCM remains unclear. In Case 2, the same novel mutation, M273K, was present in exon 5 of both genes in a two-gene array. The mutant pigments showed no absorbance at any of the wavelengths tested, suggesting that the mutation causes pigment dysfunction. Case 3 had a large deletion including the locus control region and entire first gene. Case 4 also had a large deletion involving exons 2-6 of the first gene. As an intact LCR was present upstream and one apparently normal downstream gene was present, BCM in Case 4 was not ascribed solely to the deletion. The deletions in Cases 3 and 4 were considered to have been caused by non-homologous recombination.