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Protein similarities beyond disulphide bridge topology

机译:超越二硫桥拓扑结构的蛋白质相似性

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Structural superimposition is an important procedure to analyse the relationships between proteins. A new approach and program, KNOT-MATCH, has been developed for automated structural superimposition of proteins by means of their disulphide bridge topology. As a result of the superimposition, regular secondary structures, loops and clusters of residues become correctly aligned. This fact allows us to find out important structural overlaps of residues, sometimes with functional significance, not only among proteins belonging to the same family but also between apparently non-related proteins. Different disulphide-rich protein families, such as EGF-like, defensin-like and plant protease inhibitors, have been self or cross analysed with this approach. Some amino acids that have been experimentally determined to be structural and/or functional key residues for these proteins are conserved in the three-dimensional space after superimposition by KNOT-MATCH. The program can be very useful for finding relationships among proteins that would be hidden to the current alignment methods based on sequence and on main-chain topology. (C) 1998 Academic Press. [References: 44]
机译:结构叠加是分析蛋白质之间关系的重要过程。已经开发了一种新的方法和程序KNOT-MAT​​CH,用于通过其二硫键桥拓扑自动进行蛋白质的结构叠加。叠加的结果是,规则的二级结构,残基环和簇正确对齐。这一事实使我们不仅在属于同一家族的蛋白质之间,而且在显然无关的蛋白质之间,也能发现残基的重要结构重叠,有时具有功能重要性。使用此方法已对自身的或交叉分析了不同的富含二硫化物的蛋白质家族,例如EGF类,防御素类和植物蛋白酶抑制剂。通过KNOT-MAT​​CH叠加后,已通过实验确定为这些蛋白质的结构和/或功能关键残基的一些氨基酸在三维空间中保守。该程序对于发现蛋白质之间的关系非常有用,这些蛋白质将基于序列和主链拓扑结构被当前的比对方法所隐藏。 (C)1998年学术出版社。 [参考:44]

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