Dhanasekaran Muthu, Prakash Om, Gong Yu Xi, Baures Paul W
Department of Chemistry, Kansas State University, Manhattan, KS, USA.
Org Biomol Chem. 2004 Jul 21;2(14):2071-82. doi: 10.1039/b315228f. Epub 2004 Jun 24.
A model beta-hairpin dodecapeptide [EFGWVpGKWTIK] was designed by including a favorable D-ProGly Type II' beta-turn sequence and a Trp-zip interaction, while also incorporating a beta-strand unfavorable glycine residue in the N-terminal strand. This peptide is highly folded and monomeric in aqueous solution as determined by combined analysis with circular dichroism and 1H NMR spectroscopy. A peptide representing the folded conformation of the model beta-hairpin [cyclic(EFGWVpGKWTIKpG)] and a linear peptide representing the unfolded conformation [EFGWVPGKWTIK] yield unexpected relative deviations between the CD and 1H NMR spectroscopic results that are attributed to variations in the packing interactions of the aromatic side chains. Mutational analysis of the model beta-hairpin indicates that the Trp-zip interaction favors folding and stability relative to an alternate hydrophobic cluster between Trp and Tyr residues [EFGYVpGKWTIK]. The significance of select diagonal interactions in the model beta-hairpin was tested by rearranging the cross-strand hydrophobic interactions to provide a folded peptide [EWFGIpGKTYWK] displaying evidence of an unusual backbone conformation at the hydrophobic cluster. This unusual conformation does not appear to be a result of the glycine residue in the beta-strand, as replacement with a serine results in a peptide [EWFSIpGKTYWK] with a similar and seemingly characteristic CD spectrum. However, an alternate arrangement of hydrophobic residues with a Trp-zip interaction in a similar position to the parent beta-hairpin [EGFWVpGKWITK] results in a folded beta-hairpin conformation. The differences between side chain packing of these peptides precludes meaningful thermodynamic analysis and illustrates the caution necessary when interpreting beta-hairpin folding thermodynamics that are driven, at least in part, by aromatic cross strand interactions.
通过纳入一个有利的D - ProGly II'型β-转角序列和一个色氨酸拉链相互作用,同时在N端链中引入一个不利于β-链形成的甘氨酸残基,设计了一种模型β-发夹十二肽[EFGWVpGKWTIK]。通过圆二色光谱和1H NMR光谱的联合分析确定,该肽在水溶液中高度折叠且呈单体状态。代表模型β-发夹折叠构象的肽[环化(EFGWVpGKWTIKpG)]和代表未折叠构象的线性肽[EFGWVPGKWTIK]在CD和1H NMR光谱结果之间产生了意想不到的相对偏差,这归因于芳香族侧链堆积相互作用的变化。对模型β-发夹的突变分析表明,相对于色氨酸和酪氨酸残基之间的另一种疏水簇[EFGYVpGKWTIK],色氨酸拉链相互作用有利于折叠和稳定性。通过重新排列跨链疏水相互作用,测试了模型β-发夹中特定对角相互作用的重要性,以提供一种折叠肽[EWFGIpGKTYWK],该肽在疏水簇处显示出异常主链构象的证据。这种异常构象似乎不是β-链中甘氨酸残基的结果,因为用丝氨酸取代会产生具有相似且看似特征性CD光谱的肽[EWFSIpGKTYWK]。然而,在与亲本β-发夹[EGFWVpGKWITK]相似位置具有色氨酸拉链相互作用的疏水残基的另一种排列方式会导致折叠的β-发夹构象。这些肽的侧链堆积差异排除了有意义的热力学分析,并说明了在解释至少部分由芳香族跨链相互作用驱动的β-发夹折叠热力学时所需的谨慎。