Cubellis M V, Caillez F, Blundell T L, Lovell S C
Dipartimento di Chimica Biologica, Napoli, Italia.
Proteins. 2005 Mar 1;58(4):880-92. doi: 10.1002/prot.20327.
The polyproline II (PPII) conformation of protein backbone is an important secondary structure type. It is unusual in that, due to steric constraints, its main-chain hydrogen-bond donors and acceptors cannot easily be satisfied. It is unable to make local hydrogen bonds, in a manner similar to that of alpha-helices, and it cannot easily satisfy the hydrogen-bonding potential of neighboring residues in polyproline conformation in a manner analogous to beta-strands. Here we describe an analysis of polyproline conformations using the HOMSTRAD database of structurally aligned proteins. This allows us not only to determine amino acid propensities from a much larger database than previously but also to investigate conservation of amino acids in polyproline conformations, and the conservation of the conformation itself. Although proline is common in polyproline helices, helices without proline represent 46% of the total. No other amino acid appears to be greatly preferred; glycine and aromatic amino acids have low propensities for PPII. Accordingly, the hydrogen-bonding potential of PPII main-chain is mainly satisfied by water molecules and by other parts of the main-chain. Side-chain to main-chain interactions are mostly nonlocal. Interestingly, the increased number of nonsatisfied H-bond donors and acceptors (as compared with alpha-helices and beta-strands) makes PPII conformers well suited to take part in protein-protein interactions.
蛋白质主链的多聚脯氨酸II(PPII)构象是一种重要的二级结构类型。它不同寻常之处在于,由于空间位阻限制,其主链氢键供体和受体不易得到满足。它无法像α螺旋那样形成局部氢键,也不能像β折叠那样轻易满足多聚脯氨酸构象中相邻残基的氢键形成潜力。在此,我们描述了一项利用结构比对蛋白质的HOMSTRAD数据库对多聚脯氨酸构象进行的分析。这不仅使我们能够从一个比以往大得多的数据库中确定氨基酸倾向,还能研究多聚脯氨酸构象中氨基酸的保守性以及构象本身的保守性。尽管脯氨酸在多聚脯氨酸螺旋中很常见,但不含脯氨酸的螺旋占总数的46%。似乎没有其他氨基酸受到特别偏爱;甘氨酸和芳香族氨基酸形成PPII的倾向较低。因此,PPII主链的氢键形成潜力主要由水分子和主链的其他部分来满足。侧链与主链的相互作用大多是非局部性的。有趣的是,与α螺旋和β折叠相比,未满足的氢键供体和受体数量增加使得PPII构象体非常适合参与蛋白质-蛋白质相互作用。