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Kinomer v. 1.0: a database of systematically classified eukaryotic protein kinases.

机译:Kinomer v。1.0:系统分类的真核蛋白激酶的数据库。

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摘要

The regulation of protein function through reversible phosphorylation by protein kinases and phosphatases is a general mechanism controlling virtually every cellular activity. Eukaryotic protein kinases can be classified into distinct, well-characterized groups based on amino acid sequence similarity and function. We recently reported a highly sensitive and accurate hidden Markov model-based method for the automatic detection and classification of protein kinases into these specific groups. The Kinomer v. 1.0 database presented here contains annotated classifications for the protein kinase complements of 43 eukaryotic genomes. These span the taxonomic range and include fungi (16 species), plants (6), diatoms (1), amoebas (2), protists (1) and animals (17). The kinomes are stored in a relational database and are accessible through a web interface on the basis of species, kinase group or a combination of both. In addition, the Kinomer v. 1.0 HMM library is made available for users to perform classification on arbitrary sequences. The Kinomer v. 1.0 database is a continually updated resource where direct comparison of kinase sequences across kinase groups and across species can give insights into kinase function and evolution. Kinomer v. 1.0 is available at http://www.compbio.dundee.ac.uk/kinomer/.
机译:通过蛋白激酶和磷酸酶可逆的磷酸化来调节蛋白功能是控制几乎所有细胞活性的通用机制。基于氨基酸序列的相似性和功能,真核生物蛋白激酶可以分为特征明确的不同组。我们最近报告了一种高度敏感和准确的基于隐马尔可夫模型的隐藏方法,可将蛋白激酶自动检测和分类为这些特定的组。这里介绍的Kinomer v。1.0数据库包含43个真核基因组蛋白激酶互补序列的注释分类。这些包括分类(真菌)(16种),植物(6),硅藻(1),变形虫(2),原生生物(1)和动物(17)。动力学组存储在关系数据库中,可基于物种,激酶组或两者的组合通过网络界面访问。此外,Kinomer v。1.0 HMM库可用于用户对任意序列进行分类。 Kinomer v。1.0数据库是一个不断更新的资源,可以直接比较跨激酶组和跨物种的激酶序列,从而洞悉激酶的功能和进化。 Kinomer v。1.0可从http://www.compbio.dundee.ac.uk/kinomer/获得。

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