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使用新型自动注释工具对红鳍东方鲀PCOLCE区域进行的比较分析。

Comparative analysis of the PCOLCE region in Fugu rubripes using a new automated annotation tool.

作者信息

Riboldi Tunnicliffe G, Gloeckner G, Elgar G S, Brenner S, Rosenthal A

机构信息

Institute for Molecular Biotechnology, Department of Genome Analysis, Jena, Germany.

出版信息

Mamm Genome. 2000 Mar;11(3):213-9. doi: 10.1007/s003350010039.

Abstract

The Japanese pufferfish Fugu rubripes with a genome of about 400 Mb is becoming increasingly recognized as a vertebrate model organism for comparative gene analysis (see Elgar 1996 for review). We have isolated and sequenced two Fugu cosmids spanning a genomic region of 66 kb containing the Fugu homolog to the human PCOLCE-I (Glöckner et al. 1998). We then examined if RUMMAGE-DP, a newly developed analysis tool for gene discovery which was designed for human and mouse genomic DNA, can be used for automatic annotation of Fugu genomic sequence. The exon prediction programs contained in RUMMAGE-DP performed better overall for the human sequence than for the Fugu contig. The GENSCAN program was the only exon prediction programme that performed equally well for both organisms. We show that RUMMAGE-DP is very useful in automatic analysis of Fugu sequences. Comparative analysis of the genomic structure of the PCOLCE-I genes in Fugu and human reveals that the exon/intron structure throughout the protein coding region is almost identical. We defined an additional domain based on the high degree of similarity of 26 aa between mammals and Fugu. The PCOLCE-I protein in both organisms contains two highly conserved CUB domains. Exons 6 and 7 are the only coding exons that differ in length between the two species. We assume that these exons do not code for any catalytic domain of the protein. Analysis of the remaining five Fugu genes within the 66 kb interval revealed no conserved synteny with the corresponding human 7q22 region.

摘要

基因组约为400兆碱基对的日本河豚红鳍东方鲀,正日益被视为用于比较基因分析的脊椎动物模式生物(综述见Elgar 1996)。我们分离并测序了两个河豚黏粒,它们跨越了一个66千碱基对的基因组区域,其中包含与人类PCOLCE-I同源的河豚基因(Glöckner等人,1998)。然后我们研究了RUMMAGE-DP(一种新开发的用于基因发现的分析工具,专为人类和小鼠基因组DNA设计)是否可用于河豚基因组序列的自动注释。RUMMAGE-DP中包含的外显子预测程序对人类序列的总体表现比对河豚重叠群更好。GENSCAN程序是唯一对两种生物表现同样良好的外显子预测程序。我们表明RUMMAGE-DP在河豚序列的自动分析中非常有用。河豚和人类中PCOLCE-I基因的基因组结构比较分析表明,整个蛋白质编码区域的外显子/内含子结构几乎相同。基于哺乳动物和河豚之间26个氨基酸的高度相似性,我们定义了一个额外的结构域。两种生物中的PCOLCE-I蛋白都包含两个高度保守的CUB结构域。外显子6和7是两个物种之间长度唯一不同的编码外显子。我们假设这些外显子不编码该蛋白质的任何催化结构域。对66千碱基对区间内其余五个河豚基因的分析表明,与相应的人类7q22区域没有保守的同线性。

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