Thomas Annick, Deshayes Sébastien, Decaffmeyer Marc, Van Eyck Marie Hélène, Charloteaux Benoit, Brasseur Robert
Centre de Biophysique Moléculaire Numérique FSAGx, 2, Passage des Déportés, Gembloux 5030, Belgium.
Proteins. 2006 Dec 1;65(4):889-97. doi: 10.1002/prot.21151.
Rational design of peptides is a challenge, which would benefit from a better knowledge of the rules of sequence-structure-function relationships. Peptide structures can be approached by spectroscopy and NMR techniques but data from these approaches too frequently diverge. Structures can also be calculated in silico from primary sequence information using three algorithms: Pepstr, Robetta, and PepLook. The most recent algorithm, PepLook introduces indexes for evaluating structural polymorphism and stability. For peptides with converging experimental data, calculated structures from PepLook and, to a lesser extent from Pepstr, are close to NMR models. The PepLook index for polymorphism is low and the index for stability points out possible binding sites. For peptides with divergent experimental data, calculated and NMR structures can be similar or, can be different. These differences are apparently due to polymorphism and to different conditions of structure assays and calculations. The PepLook index for polymorphism maps the fragments encoding disorder. This should provide new means for the rational design of peptides.
肽的合理设计是一项挑战,若能更深入了解序列 - 结构 - 功能关系规则将从中受益。肽结构可通过光谱学和核磁共振技术来研究,但这些方法得到的数据常常存在差异。也可以使用三种算法(Pepstr、Robetta和PepLook)从一级序列信息进行计算机模拟计算结构。最新的算法PepLook引入了评估结构多态性和稳定性的指标。对于实验数据趋同的肽,PepLook计算得到的结构,以及在较小程度上Pepstr计算得到的结构,与核磁共振模型相近。PepLook的多态性指标较低,稳定性指标则指出了可能的结合位点。对于实验数据存在差异的肽,计算得到的结构和核磁共振结构可能相似,也可能不同。这些差异显然是由于多态性以及结构测定和计算的不同条件所致。PepLook的多态性指标描绘了编码无序的片段。这应为肽的合理设计提供新方法。