Roy Rituparna S, Gopi Hosahudya N, Raghothama S, Gilardi Richard D, Karle Isabella L, Balaram Padmanabhan
Molecular Biophysics Unit, Indian Institute of Science, Bangalore-560012, India.
Biopolymers. 2005;80(6):787-99. doi: 10.1002/bip.20294.
The incporation of beta-amino acid residues into the strand segments of designed beta-hairpin leads to the formation of polar sheets, since in the case of beta-peptide strands, all adjacent carbonyl groups point in one direction and the amide groups orient in the opposite direction. The conformational analysis of two designed peptide hairpins composed of alpha/beta-hybrid segments are described: Boc-Leu-betaPhe-Val-(D)-Pro-Gly-Leu-betaPhe-Val-OMe (1) and Boc-betaLeu-Phe-betaVal-D-Pro-Gly-betaLeu-Phe-betaVal-OMe (2). A 500-MHz 1H-NMR (nuclear magnetic resonance) analysis in methanol supports a significant population of hairpin conformations in both peptides. Diagnostic nuclear Overhauser effects (NOEs) are observed in both cases. X-ray diffraction studies on single crystals of peptide 1 reveal a beta-hairpin conformation in both the molecules, which constitute the crystallographic asymmetric unit. Three cross-strand hydrogen bonds and a nucleating type II' beta-turn at the D-Pro-Gly segment are observed in the two independent molecules. In peptide 1, the betaPhe residues at positions 2 and 7 occur at the nonhydrogen-bonding position, with the benzyl side chains pointing on opposite faces of the beta-sheet. The observed aromatic centroid-to-centroid distances are 8.92 A (molecule A) and 8.94 A (molecule B). In peptide 2, the aromatic rings must occupy facing positions in antiparallel strands, in the NMR-derived structure. Peptide 1 yields a normal "hairpin-like" CD spectrum in methanol with a minimum at 224 nm. The CD spectrum of peptide 2 reveals a negative band at 234 nm and a positive band at 221 nm, suggestive of an exciton split doublet. Modeling of the facing Phe side chains at the hydrogen-bonding position of a canonical beta-hairpin suggests that interring separation is approximately 4.78 A for the gauche+ gauche- (g+ g-) rotamer. A previously reported peptide beta-hairpin composed of only alpha-amino acids, Boc-Leu-Phe-Val-D-Pro-Gly-Leu-Phe-Val-OMe also exhibited an anomalous far-UV (ultraviolet) CD (circular dichroism) spectrum, which was interpreted in terms of interactions between facing aromatic chromophores, Phe 2 and Phe 7 (C. Zhao, P. L. Polavarapu, C. Das, and P. Balaram, Journal of the American Chemical Society, 2000, Vol 122, pp. 8228-8231).
将β-氨基酸残基引入设计的β-发夹的链段中会导致形成极性片层,因为在β-肽链的情况下,所有相邻的羰基都指向一个方向,而酰胺基团则朝相反的方向取向。本文描述了由α/β-杂合片段组成的两种设计肽发夹的构象分析:Boc-Leu-βPhe-Val-(D)-Pro-Gly-Leu-βPhe-Val-OMe (1) 和 Boc-βLeu-Phe-βVal-D-Pro-Gly-βLeu-Phe-βVal-OMe (2)。在甲醇中进行的500-MHz 1H-NMR(核磁共振)分析表明,两种肽中都有相当数量的发夹构象。在两种情况下都观察到了诊断性的核Overhauser效应(NOE)。对肽1单晶的X射线衍射研究表明,构成晶体学不对称单元的两个分子均呈β-发夹构象。在两个独立的分子中观察到了三个跨链氢键以及在D-Pro-Gly片段处的成核型II'β-转角。在肽1中,第2和第7位的βPhe残基位于非氢键结合位置,苄基侧链指向β-折叠的相反面。观察到的芳香质心到质心的距离分别为8.92 Å(分子A)和8.94 Å(分子B)。在肽2中,根据NMR推导的结构,芳香环必须在反平行链中占据相对的位置。肽1在甲醇中产生正常的“发夹状”CD光谱,在224 nm处有一个最小值。肽2的CD光谱在234 nm处显示一个负带,在221 nm处显示一个正带,表明是激子分裂双峰。对典型β-发夹氢键结合位置处相对的Phe侧链进行建模表明,对于gauche+ gauche- (g+ g-) 旋转异构体,环间距离约为4.78 Å。先前报道的仅由α-氨基酸组成的肽β-发夹Boc-Leu-Phe-Val-D-Pro-Gly-Leu-Phe-Val-OMe也表现出异常的远紫外(UV)CD(圆二色性)光谱,这是根据相对的芳香发色团Phe 2和Phe 7之间的相互作用来解释的(C. Zhao、P. L. Polavarapu、C. Das和P. Balaram,《美国化学会志》,2000年,第122卷,第8228 - 8231页)。