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兔红细胞特异性15-脂氧合酶mRNA的完整序列:红细胞脂氧合酶预测氨基酸序列与其他脂氧合酶的比较。

The complete sequence of the rabbit erythroid cell-specific 15-lipoxygenase mRNA: comparison of the predicted amino acid sequence of the erythrocyte lipoxygenase with other lipoxygenases.

作者信息

Fleming J, Thiele B J, Chester J, O'Prey J, Janetzki S, Aitken A, Anton I A, Rapoport S M, Harrison P R

机构信息

Beatson Institute for Cancer Research, Glasgow, U.K.

出版信息

Gene. 1989 Jun 30;79(1):181-8. doi: 10.1016/0378-1119(89)90103-0.

Abstract

We report the complete sequence of the rabbit reticulocyte (RBC) 15-lipoxygenase (LOX) mRNA as deduced from (i) sequencing cDNA recombinants isolated by screening cDNA libraries or polymerase-chain-reactions, and (ii) the sequence originating from the transcription start point obtained by primer extension-sequencing reactions. Like the human leukocyte 5-LOX mRNA, the RBC 15-LOX mRNA contains a very short 5'-untranslated region with a long 3'-untranslated region. But, unlike the human leukocyte 5-LOX mRNA, the RBC 15-LOX mRNA contains an intriguing repeated sequence (ten copies with the consensus sequence C4PuC3TCTTC4AAG) just after the translational stop codon, which may be involved in its regulation during reticulocyte maturation. Comparison of the RBC 15-LOX mRNA sequence with those of the previously published human 5-LOX mRNA and the soybean 3-LOX gene shows only a few short regions of sequence similarity. However, the predicted amino acid sequences of the encoded LOX enzymes show certain conserved regions that are presumably involved in their catalytic activity, in particular a cluster of five conserved histidines that we predict chelate the iron moiety involved in the active site.

摘要

我们报告了兔网织红细胞(RBC)15-脂氧合酶(LOX)mRNA的完整序列,该序列是通过以下方法推导得出的:(i)对通过筛选cDNA文库或聚合酶链反应分离得到的cDNA重组体进行测序,以及(ii)对通过引物延伸测序反应获得的转录起始点的序列进行测序。与人类白细胞5-LOX mRNA一样,RBC 15-LOX mRNA含有一个非常短的5'-非翻译区和一个长的3'-非翻译区。但是,与人类白细胞5-LOX mRNA不同的是,RBC 15-LOX mRNA在翻译终止密码子之后包含一个有趣的重复序列(十个拷贝,共有序列为C4PuC3TCTTC4AAG),这可能在网织红细胞成熟过程中参与其调节。将RBC 15-LOX mRNA序列与先前发表的人类5-LOX mRNA序列和大豆3-LOX基因序列进行比较,仅发现了几个短的序列相似区域。然而,所编码的LOX酶的预测氨基酸序列显示出某些保守区域,推测这些区域与其催化活性有关,特别是一簇五个保守的组氨酸,我们预测它们螯合了活性位点中涉及的铁部分。

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