蛋白质超家族的系统发育推断:SH2结构域的分析。

K Sjölander
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引用次数: 0

摘要

本研究的重点是蛋白质超家族进化关系的推断,并利用这些关系来识别结构中的关键位置,根据进化距离推断属性,并识别序列注释中的潜在错误。相对熵是一种来自信息论的距离度量,它与Dirichlet混合先验相结合用于估计一组蛋白质的系统发育树。该方法推断出分子中关键的结构或功能位置,并引导树拓扑结构在子树中保留这些重要位置。最小描述长度原则用于确定将树切割成子树,以识别数据中的子族。该方法在含有sh2结构域的蛋白上得到了验证,得到了Src2-drome的新亚家族分配,并提出了Nck_human与Drk_drome、Sem5_caeel、Grb2_human和Grb2_chick之间的进化关系。
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Phylogenetic inference in protein superfamilies: analysis of SH2 domains.

This work focuses on the inference of evolutionary relationships in protein superfamilies, and the uses of these relationships to identify key positions in the structure, to infer attributes on the basis of evolutionary distance, and to identify potential errors in sequence annotations. Relative entropy, a distance metric from information theory, is used in combination with Dirichlet mixture priors to estimate a phylogenetic tree for a set of proteins. This method infers key structural or functional positions in the molecule, and guides the tree topology to preserve these important positions within subtrees. Minimum-description-length principles are used to determine a cut of the tree into subtrees, to identify the subfamilies in the data. This method is demonstrated on SH2-domain containing proteins, resulting in a new subfamily assignment for Src2-drome and a suggested evolutionary relationship between Nck_human and Drk_drome, Sem5_caeel, Grb2_human and Grb2_chick.

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