Penel Simon, Morrison R Gwilym, Dobson Paul D, Mortishire-Smith Russell J, Doig Andrew J
Department of Biomolecular Sciences, UMIST, PO Box 88, Manchester M60 1QD, UK.
Protein Eng. 2003 Dec;16(12):957-61. doi: 10.1093/protein/gzg147.
We analysed the length distributions of different types of beta-strand in a high resolution, non-homologous set of 500 protein structures, finding differences in their mean lengths. Antiparallel edge strands in strand-turn-strand motifs show a preference for an even number of residues. This propensity is enhanced if the length is corrected for beta-bulges, which insert an extra residue into the strand. Residues in antiparallel edge beta-strands alternate between being in hydrogen bonded and non-hydrogen bonded rings. Antiparallel edges with an even number of residues are more likely to have their final beta residue in a non-hydrogen bonded ring. This suggests that non-hydrogen bonded rings are intrinsically more stable than hydrogen bonded rings, perhaps because its side chain packing is closer. Therefore, we suggest that a simple way to increase beta-hairpin stability, or the stability of an antiparallel edge strand, is to have a non-hydrogen bonded ring at the end of the strand.
我们分析了500个高分辨率、非同源蛋白质结构中不同类型β链的长度分布,发现它们的平均长度存在差异。链-转角-链基序中的反平行边缘链倾向于具有偶数个残基。如果对β凸起进行长度校正(β凸起会在链中插入一个额外的残基),这种倾向会增强。反平行边缘β链中的残基在氢键结合环和非氢键结合环之间交替。具有偶数个残基的反平行边缘更有可能使其最后的β残基处于非氢键结合环中。这表明非氢键结合环比氢键结合环本质上更稳定,可能是因为其侧链堆积更紧密。因此,我们认为增加β发夹稳定性或反平行边缘链稳定性的一种简单方法是在链的末端有一个非氢键结合环。