Afonnikov D A, Oshchepkov D Y, Kolchanov N A
Laboratory of Theoretical Genetics, Institute of Cytology and Genetics, 10 Lavrentyev Ave., Novosibirsk 630090, Russia. ada.bionet.nsc.ru
Bioinformatics. 2001 Nov;17(11):1035-46. doi: 10.1093/bioinformatics/17.11.1035.
It is known that the physico-chemical characteristics of proteins underlying specific folding of the polypeptide chain and the protein function are evolutionary conserved. Detection of such characteristics while analyzing homologous sequences would expand essentially the knowledge on protein function, structure, and evolution. These characteristics are maintained constant, in particular, by co-ordinated substitutions. In this process, the destabilizing effect of a substitution may be compensated by another substitution at a different position within the same protein, making the overall change in this protein characteristic insignificant. Consequently, the patterns of co-ordinated substitutions contain important information on conserved physico-chemical properties of proteins, requiring their investigation and development of the corresponding methods and software for correlation analysis of protein sequences available to a wide range of users.
A software package for analyzing correlated amino acid substitutions at different positions within aligned protein sequences was developed. The approach implies searching for evolutionary conserved physico-chemical characteristics of proteins based on the information on the pairwise correlations of amino acid substitutions at different protein positions. The software was applied to analyze DNA-binding domains of the homeodomain class. As a result, two conservative physico-chemical characteristics preserved due to the co-ordinated substitutions at certain groups of positions in the protein sequence. Possible functional roles of these characteristics are discussed.
The program package is available at http://wwwmgs.bionet.nsc.ru/programs/CRASP/.
众所周知,多肽链特定折叠及蛋白质功能所依赖的蛋白质物理化学特性在进化过程中是保守的。在分析同源序列时检测这些特性将极大地扩展我们对蛋白质功能、结构和进化的认识。这些特性尤其通过协同替换得以保持恒定。在此过程中,一个替换的去稳定化效应可能会被同一蛋白质内不同位置的另一个替换所补偿,从而使该蛋白质特性的总体变化微不足道。因此,协同替换模式包含了关于蛋白质保守物理化学性质的重要信息,需要对其进行研究并开发相应方法和软件,以便广大用户对蛋白质序列进行相关性分析。
开发了一个用于分析比对后蛋白质序列中不同位置相关氨基酸替换的软件包。该方法意味着基于不同蛋白质位置氨基酸替换的成对相关性信息来寻找蛋白质进化保守的物理化学特性。该软件被应用于分析同源异型域类的DNA结合结构域。结果发现,由于蛋白质序列中某些位置组的协同替换,保留了两种保守的物理化学特性。并讨论了这些特性可能的功能作用。