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设计β-发夹折叠的最小化与优化

Minimization and optimization of designed beta-hairpin folds.

作者信息

Andersen Niels H, Olsen Katherine A, Fesinmeyer R Matthew, Tan Xu, Hudson F Michael, Eidenschink Lisa A, Farazi Shabnam R

机构信息

Department of Chemistry, University of Washington, Seattle, Washington 98195, USA.

出版信息

J Am Chem Soc. 2006 May 10;128(18):6101-10. doi: 10.1021/ja054971w.

Abstract

Minimized beta hairpins have provided additional data on the geometric preferences of Trp interactions in TW-loop-WT motifs. This motif imparts significant fold stability to peptides as short as 8 residues. High-resolution NMR structures of a 16- (KKWTWNPATGKWTWQE, DeltaG(U)(298) >or= +7 kJ/mol) and 12-residue (KTWNPATGKWTE, DeltaG(U)(298) = +5.05 kJ/mol) hairpin reveal a common turn geometry and edge-to-face (EtF) packing motif and a cation-pi interaction between Lys(1) and the Trp residue nearest the C-terminus. The magnitude of a CD exciton couplet (due to the two Trp residues) and the chemical shifts of a Trp Hepsilon3 site (shifted upfield by 2.4 ppm due to the EtF stacking geometry) provided near-identical measures of folding. CD melts of representative peptides with the -TW-loop-WT- motif provided the thermodynamic parameters for folding, which reflect enthalpically driven folding at laboratory temperatures with a small DeltaC(p) for unfolding (+420 J K(-)(1)/mol). In the case of Asx-Pro-Xaa-Thr-Gly-Xaa loops, mutations established that the two most important residues in this class of direction-reversing loops are Asx and Gly: mutation to alanine is destabilizing by about 6 and 2 kJ/mol, respectively. All indicators of structuring are retained in a minimized 8-residue construct (Ac-WNPATGKW-NH(2)) with the fold stability reduced to DeltaG(U)(278) = -0.7 kJ/mol. NMR and CD comparisons indicate that -TWXNGKWT- (X = S, I) sequences also form the same hairpin-stabilizing W/W interaction.

摘要

最小化的β发夹结构为色氨酸在TW-loop-WT基序中相互作用的几何偏好提供了更多数据。这种基序赋予短至8个残基的肽显著的折叠稳定性。一个16残基(KKWTWNPATGKWTWQE,ΔG(U)(298)≥ +7 kJ/mol)和一个12残基(KTWNPATGKWTE,ΔG(U)(298) = +5.05 kJ/mol)发夹的高分辨率核磁共振结构揭示了一种常见的转角几何结构和边对面(EtF)堆积基序,以及赖氨酸(1)与最靠近C端的色氨酸残基之间的阳离子-π相互作用。一个CD激子偶合(由于两个色氨酸残基)的大小和一个色氨酸Hε3位点的化学位移(由于EtF堆积几何结构而向高场移动2.4 ppm)提供了几乎相同的折叠测量值。具有-TW-loop-WT-基序的代表性肽的CD熔解提供了折叠的热力学参数,这反映了在实验室温度下由焓驱动的折叠,展开时的ΔC(p)较小(+420 J K(-)(1)/mol)。对于Asx-Pro-Xaa-Thr-Gly-Xaa环,突变表明这类方向反转环中两个最重要的残基是Asx和Gly:突变为丙氨酸分别使稳定性降低约6和2 kJ/mol。所有结构形成的指标都保留在一个最小化的8残基构建体(Ac-WNPATGKW-NH(2))中,其折叠稳定性降至ΔG(U)(278) = -0.7 kJ/mol。核磁共振和CD比较表明,-TWXNGKWT-(X = S,I)序列也形成相同的稳定发夹的W/W相互作用。

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