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人视网膜特异性胺氧化酶:基因(AOC2)的基因组结构、可变剪接变体及在视网膜中的mRNA表达

Human retina-specific amine oxidase: genomic structure of the gene (AOC2), alternatively spliced variant, and mRNA expression in retina.

作者信息

Imamura Y, Noda S, Mashima Y, Kudoh J, Oguchi Y, Shimizu N

机构信息

Department of Molecular Biology, Keio University School of Medicine, Tokyo, Japan.

出版信息

Genomics. 1998 Jul 15;51(2):293-8. doi: 10.1006/geno.1998.5357.

DOI:10.1006/geno.1998.5357
PMID:9722954
Abstract

Previously, we reported the isolation of cDNA for human retina-specific amine oxidase (RAO) and the expression of RAO exclusively in retina. Bacterial artificial chromosome clones containing the human RAO gene (AOC2) were mapped to human chromosome 17q21 (Imamura et al., 1997, Genomics 40: 277-283). Here, we report the complete genomic structure of the RAO gene, including 5' flanking sequence, and mRNA expression in retina. The human RAO gene spans 6 kb and is composed of four exons corresponding to the amino acid sequence 1-530, 530-598, 598-641, and 642-729 separated by three introns of 3000, 310, and 351 bp. Screening of a human retina cDNA library revealed the existence of an alternatively spliced cDNA variant with an additional 81 bp at the end of exon 2. The sizes of exons and the locations of exon/intron boundaries in the human RAO gene showed remarkable similarity to those of the human kidney diamine oxidase gene (AOC1). In situ hybridization revealed that mRNA coding for RAO is expressed preferentially in the ganglion cell layer of the mouse retina. We designed four sets of PCR primers to amplify four exons, which will be valuable for analyzing mutations in patients with ocular diseases affecting the retinal ganglion cell layer.

摘要

此前,我们报道了人视网膜特异性胺氧化酶(RAO)cDNA的分离以及RAO仅在视网膜中的表达。包含人RAO基因(AOC2)的细菌人工染色体克隆被定位到人类染色体17q21(今村等人,1997年,《基因组学》40:277 - 283)。在此,我们报道RAO基因的完整基因组结构,包括5'侧翼序列以及在视网膜中的mRNA表达。人RAO基因跨度为6 kb,由四个外显子组成,分别对应氨基酸序列1 - 530、530 - 598、598 - 641和642 - 729,被三个长度分别为3000、310和351 bp的内含子隔开。对人视网膜cDNA文库的筛选揭示了存在一种选择性剪接的cDNA变体,其在外显子2末端有一个额外的81 bp。人RAO基因中外显子的大小以及外显子/内含子边界的位置与人类肾脏二胺氧化酶基因(AOC1)的显著相似。原位杂交显示,编码RAO的mRNA在小鼠视网膜的神经节细胞层中优先表达。我们设计了四组PCR引物来扩增四个外显子,这对于分析影响视网膜神经节细胞层的眼部疾病患者的突变将具有重要价值。

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