de Alba E, Rico M, Jiménez M A
Instituto de Estructura de la Materia, Consejo Superior de Investigaciones Cientificas, Madrid, Spain.
Protein Sci. 1999 Nov;8(11):2234-44. doi: 10.1110/ps.8.11.2234.
A previous NMR investigation of model decapeptides with identical beta-strand sequences and different turn sequences demonstrated that, in these peptide systems, the turn residues played a more predominant role in defining the type of beta-hairpin adopted than cross-strand side-chain interactions. This result needed to be tested in longer beta-hairpin forming peptides, containing more potentially stabilizing cross-strand hydrogen bonds and side-chain interactions that might counterbalance the influence of the turn sequence. In that direction, we report here on the design and 1H NMR conformational study of three beta-hairpin forming pentadecapeptides. The design consists of adding two and three residues at the N- and C-termini, respectively, of the previously studied decapeptides. One of the designed pentadecapeptides includes a potentially stabilizing R-E salt bridge to investigate the influence of this interaction on beta-hairpin stability. We suggest that this peptide self-associates by forming intermolecular salt bridges. The other two pentadecapeptides behave as monomers. A conformational analysis of their 1H NMR spectra reveals that they adopt different types of beta-hairpin structure despite having identical strand sequences. Hence, the beta-turn sequence drives beta-hairpin formation in the investigated pentadecapeptides that adopt beta-hairpins that are longer than the average protein beta-hairpins. These results reinforce our previous suggestion concerning the key role played by the turn sequence in directing the kind of beta-hairpin formed by designed peptides.
先前对具有相同β-链序列和不同转角序列的模型十肽进行的核磁共振研究表明,在这些肽体系中,与跨链侧链相互作用相比,转角残基在确定所采用的β-发夹类型方面发挥了更主要的作用。这一结果需要在更长的形成β-发夹的肽中进行验证,这类肽含有更多潜在稳定的跨链氢键和侧链相互作用,可能会抵消转角序列的影响。朝着这个方向,我们在此报告三种形成β-发夹的十五肽的设计和1H NMR构象研究。设计方案是分别在先前研究的十肽的N端和C端添加两个和三个残基。其中一种设计的十五肽包含一个潜在稳定的R-E盐桥,以研究这种相互作用对β-发夹稳定性的影响。我们认为这种肽通过形成分子间盐桥进行自缔合。另外两种十五肽表现为单体。对它们的1H NMR光谱进行的构象分析表明,尽管它们具有相同的链序列,但它们采用了不同类型的β-发夹结构。因此,β-转角序列驱动了所研究的十五肽中β-发夹的形成,这些十五肽所采用的β-发夹比平均蛋白质β-发夹更长。这些结果强化了我们之前关于转角序列在指导设计肽形成β-发夹类型中所起关键作用的观点。