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编码一种在视网膜中特异性表达的铜结合胺氧化酶的AOC2基因的特征分析。

Characterization of AOC2 gene encoding a copper-binding amine oxidase expressed specifically in retina.

作者信息

Zhang Qiang, Mashima Yukihiko, Noda Setsuko, Imamura Yutaka, Kudoh Jun, Shimizu Nobuyoshi, Nishiyama Takatsune, Umeda Shinsuke, Oguchi Yoshihisa, Tanaka Yasuhiko, Iwata Takeshi

机构信息

National Institute of Sensory Organs, National Tokyo Medical Center, 2-5-1 Higashigaoka, Meguro, Tokyo 152-8902, Japan.

出版信息

Gene. 2003 Oct 30;318:45-53. doi: 10.1016/s0378-1119(03)00753-4.

Abstract

We have previously cloned a human, retina-specific, amine oxidase gene (RAO, gene symbol: AOC2), a member of the copper-binding amine oxidase super family. AOC2 shares sequence identity with the human kidney amine oxidase gene (KAO, gene symbol: AOC1) and the vascular adhesion protein-1 gene (VAP-1, gene symbol: AOC3). For further analysis of AOC2, the sequences surrounding the human AOC2 and the complete mouse and partial rat homologue of AOC2 were cloned for characterization. Real-time quantitative PCR, in situ hybridization, and immunohistochemistry were performed to determine the specific expression of AOC2 in the mouse retina and especially in the retinal ganglion cells. Our results demonstrated that the copper-binding motif and the enzyme active site of AOC1 and AOC3 were both conserved in mouse AOC2. The human and mouse AOC2 was flanked by two genes, the Psme3 gene for PA-28 gamma subunit and, surprisingly, the AOC3 gene. Rat AOC2 contained a stop codon that terminated the peptide length to 127 amino acids. The presence of human and rat AOC pseudogene in this region, in addition to the tandemly positioned two AOC genes, indicates the possibility of successful AOC3 replication to retina-specific AOC2 for human and mouse but unsuccessful for rat.

摘要

我们之前克隆了一个人类视网膜特异性胺氧化酶基因(RAO,基因符号:AOC2),它是铜结合胺氧化酶超家族的成员。AOC2与人类肾脏胺氧化酶基因(KAO,基因符号:AOC1)和血管黏附蛋白1基因(VAP-1,基因符号:AOC3)具有序列同源性。为了进一步分析AOC2,我们克隆了人类AOC2周围的序列以及AOC2完整的小鼠同源物和部分大鼠同源物,以进行特征鉴定。我们进行了实时定量PCR、原位杂交和免疫组化,以确定AOC2在小鼠视网膜尤其是视网膜神经节细胞中的特异性表达。我们的结果表明,AOC1和AOC3的铜结合基序和酶活性位点在小鼠AOC2中均保守。人类和小鼠的AOC2两侧分别有两个基因,即PA-28γ亚基的Psme3基因,令人惊讶的是,还有AOC3基因。大鼠AOC2含有一个终止密码子,使肽长度缩短至127个氨基酸。除了串联排列的两个AOC基因外,该区域存在人类和大鼠AOC假基因,这表明AOC3有可能成功复制为人和小鼠的视网膜特异性AOC2,但对大鼠则未成功。

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