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首页> 外文期刊>BMC Genomics >RNRdb, a curated database of the universal enzyme family ribonucleotide reductase, reveals a high level of misannotation in sequences deposited to Genbank
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RNRdb, a curated database of the universal enzyme family ribonucleotide reductase, reveals a high level of misannotation in sequences deposited to Genbank

机译:RNRdb,通用酶家族核糖核苷酸还原酶的精选数据库,揭示了沉积在Genbank序列中的高水平错误注释

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Background Ribonucleotide reductases (RNRs) catalyse the only known de novo pathway for deoxyribonucleotide synthesis, and are therefore essential to DNA-based life. While ribonucleotide reduction has a single evolutionary origin, significant differences between RNRs nevertheless exist, notably in cofactor requirements, subunit composition and allosteric regulation. These differences result in distinct operational constraints (anaerobicity, iron/oxygen dependence and cobalamin dependence), and form the basis for the classification of RNRs into three classes. Description In RNRdb (Ribonucleotide Reductase database), we have collated and curated all known RNR protein sequences with the aim of providing a resource for exploration of RNR diversity and distribution. By comparing expert manual annotations with annotations stored in Genbank, we find that significant inaccuracies exist in larger databases. To our surprise, only 23% of protein sequences included in RNRdb are correctly annotated across the key attributes of class, role and function, with 17% being incorrectly annotated across all three categories. This illustrates the utility of specialist databases for applications where a high degree of annotation accuracy may be important. The database houses information on annotation, distribution and diversity of RNRs, and links to solved RNR structures, and can be searched through a BLAST interface. RNRdb is accessible through a public web interface at http://rnrdb.molbio.su.se webcite . Conclusion RNRdb is a specialist database that provides a reliable annotation and classification resource for RNR proteins, as well as a tool to explore distribution patterns of RNR classes. The recent expansion in available genome sequence data have provided us with a picture of RNR distribution that is more complex than believed only a few years ago; our database indicates that RNRs of all three classes are found across all three cellular domains. Moreover, we find a number of organisms that encode all three classes.
机译:背景技术核糖核苷酸还原酶(RNR)催化脱氧核糖核苷酸合成的唯一已知的从头途径,因此对于基于DNA的生命至关重要。尽管核糖核苷酸的减少具有单一的进化起源,但是RNR之间仍然存在显着差异,特别是在辅因子需求,亚基组成和变构调节方面。这些差异导致明显的操作限制(厌氧性,铁/氧依赖性和钴胺素依赖性),并形成了将RNRs分为三类的基础。描述在RNRdb(核糖核苷酸还原酶数据库)中,我们整理和整理了所有已知的RNR蛋白序列,目的是为探索RNR多样性和分布提供资源。通过将专家手册注释与Genbank中存储的注释进行比较,我们发现较大的数据库中存在严重的不准确性。令我们惊讶的是,RNRdb中包含的蛋白质序列中只有23%在类,角色和功能的关键属性中得到了正确的注释,而在所有三个类别中,有17%的蛋白被错误地注释了。这说明了专家数据库对于高度注释准确性可能很重要的应用程序的实用性。该数据库包含有关RNR的注释,分布和多样性的信息,以及指向已解决的RNR结构的链接,并且可以通过BLAST界面进行搜索。可通过位于http://rnrdb.molbio.su.se webcite上的公共Web界面访问RNRdb。结论RNRdb是一个专业数据库,可为RNR蛋白提供可靠的注释和分类资源,以及探索RNR类分布模式的工具。现有基因组序列数据的最新扩展为我们提供了RNR分布的图片,它比仅仅几年前认为的要复杂得多。我们的数据库表明,在所有三个蜂窝域中都可以找到所有这三个类别的RNR。此外,我们发现了许多编码所有三个类别的生物。

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