Oetting W S, Mentink M M, Summers C G, Lewis R A, White J G, King R A
Department of Medicine, University of Minnesota, Minneapolis 55455.
Am J Hum Genet. 1991 Jul;49(1):199-206.
Mutations in the gene for the pigment-producing enzyme tyrosinase are responsible for type IA (tyrosinase-negative) oculocutaneous albinism (OCA). Most reported mutations have been single base substitutions. We now report three different frameshift mutations in three unrelated individuals with type IA OCA. The first individual has a single base deletion within a series of five guanidines, resulting in a premature stop codon in exon I on one allele and a missense mutation at codon 382 in exon III on the homologous allele. The second individual is a genetic compound of two separate frameshift mutations, including both the same exon I single base deletion found in the first individual and a deletion of a thymidine-guanidine pair, within the sequence GTGTG, forming a termination codon (TAG) in exon I on the homologous allele. The third individual has a single base insertion in exon I on one allele and a missense mutation at codon 373 in exon III on the homologous allele. The two missense mutations occur within the copper Bbinding region and may interfere with either copper binding to the enzyme or oxygen binding to the copper. These five different mutations disrupt tyrosinase function and are associated with a total lack of melanin biosynthesis.
产生色素的酶——酪氨酸酶的基因突变是导致IA型(酪氨酸酶阴性)眼皮肤白化病(OCA)的原因。大多数已报道的突变是单碱基替换。我们现在报告在三个患IA型OCA的不相关个体中发现的三种不同的移码突变。第一个个体在一系列五个鸟嘌呤内有一个单碱基缺失,导致一个等位基因外显子I中出现一个提前的终止密码子,而同源等位基因外显子III中密码子382处出现一个错义突变。第二个个体是两个不同移码突变的遗传复合杂合子,包括在第一个个体中发现的相同的外显子I单碱基缺失,以及在序列GTGTG内一个胸腺嘧啶 - 鸟嘌呤对的缺失,在同源等位基因外显子I中形成一个终止密码子(TAG)。第三个个体在一个等位基因的外显子I中有一个单碱基插入,在同源等位基因外显子III中密码子373处有一个错义突变。这两个错义突变发生在铜结合区域内,可能会干扰铜与该酶的结合或氧与铜的结合。这五种不同的突变破坏了酪氨酸酶的功能,并与黑色素生物合成完全缺乏有关。