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鸟氨酸转氨酶基因在回旋状萎缩中的表达缺陷

Expression defect of ornithine aminotransferase gene in gyrate atrophy.

作者信息

Inana G, Hotta Y, Zintz C, Takki K, Weleber R G, Kennaway N G, Nakayasu K, Nakajima A, Shiono T

机构信息

National Eye Institute, National Institutes of Health, Bethesda, MD 20892.

出版信息

Invest Ophthalmol Vis Sci. 1988 Jul;29(7):1001-5.

PMID:3417397
Abstract

A generalized deficiency in the mitochondrial enzyme, ornithine aminotransferase (OAT: EC 2.6.1.13), is the hallmark of gyrate atrophy (GA), a hereditary degenerative disease of the choroid and retina of the eye that leads to blindness. A human OAT cDNA, previously constructed and characterized in our laboratory, and anti-human OAT antibody were used as probes to examine the OAT gene, mRNA and protein of GA patients. A blot analysis of the genomic DNAs, RNAs and proteins of 14 GA patients identified a case with a partial heterozygous deletion of the functional OAT gene located on chromosome 10, no detectable OAT mRNA, and a barely detectable level of OAT antibody-reactive protein. The rest of the cases showed grossly normal OAT gene, mRNA, and variably reduced levels of OAT protein. A restriction fragment length polymorphism (RFLP) was identified in the functional OAT gene sequence with EcoRI which may be useful for prenatal diagnosis of GA. RFLPs were also identified in the OAT-related gene sequences located on the X chromosome with Hind III and Pst I which may potentially show linkage to X-linked retinitis pigmentosa locus. The finding of an OAT gene, mRNA, and protein defect in a GA case constitutes the first real demonstration of the molecular genetic defect of OAT in GA.

摘要

线粒体酶鸟氨酸氨基转移酶(OAT:EC 2.6.1.13)的普遍缺乏是回旋状萎缩(GA)的标志,GA是一种导致失明的眼部脉络膜和视网膜的遗传性退行性疾病。我们实验室先前构建并表征的人OAT cDNA和抗人OAT抗体被用作探针,以检测GA患者的OAT基因、mRNA和蛋白质。对14名GA患者的基因组DNA、RNA和蛋白质进行的印迹分析发现,有1例患者位于10号染色体上的功能性OAT基因存在部分杂合缺失,未检测到OAT mRNA,且OAT抗体反应性蛋白水平几乎检测不到。其余病例的OAT基因、mRNA大体正常,OAT蛋白水平不同程度降低。在功能性OAT基因序列中用EcoRI鉴定出一种限制性片段长度多态性(RFLP),这可能有助于GA的产前诊断。在位于X染色体上的OAT相关基因序列中用Hind III和Pst I也鉴定出了RFLP,这可能与X连锁视网膜色素变性位点存在潜在连锁关系。在1例GA病例中发现OAT基因、mRNA和蛋白质缺陷,这首次真正证明了GA中OAT的分子遗传缺陷。

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