Chakrabarti Saikat, Sowdhamini R
National Centre for Biological Sciences, UAS-GKVK Campus, Bellary Road, Bangalore 560 065, India.
FEBS Lett. 2004 Jul 2;569(1-3):31-6. doi: 10.1016/j.febslet.2004.05.028.
Structurally conserved regions or structural templates have been identified and examined for features such as amino acid content, solvent accessibility, secondary structures, non-polar interaction, residue packing and extent of structural deviations in 179 aligned members of superfamilies involving 1208 pairs of protein domains. An analysis of these structural features shows that the retention of secondary structural conservation and similar hydrogen bonding pattern within the templates is 2.5 and 1.8 times higher, respectively, than full-length alignments suggesting that they form the minimum structural requirement of a superfamily. The identification and availability of structural templates find value in different areas of protein structure prediction and modelling such as in sensitive sequence searches, accurate sequence alignment and three-dimensional modelling on the basis of distant relationships.
在涉及1208对蛋白质结构域的超家族的179个比对成员中,已经识别并检查了结构保守区域或结构模板的特征,如氨基酸含量、溶剂可及性、二级结构、非极性相互作用、残基堆积以及结构偏差程度。对这些结构特征的分析表明,模板内二级结构保守性和相似氢键模式的保留率分别比全长比对高2.5倍和1.8倍,这表明它们构成了超家族的最低结构要求。结构模板的识别和可用性在蛋白质结构预测和建模的不同领域具有价值,例如在敏感序列搜索、精确序列比对以及基于远缘关系的三维建模中。