Gibbs Alan C, Bjorndahl Trent C, Hodges Robert S, Wishart David S
Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, Alberta, Canada T6G 2N8.
J Am Chem Soc. 2002 Feb 20;124(7):1203-13. doi: 10.1021/ja011005e.
The structural determinants of type II' beta-turns were probed through a comprehensive CD, NMR, and molecular dynamics analysis of 10 specially designed beta-hairpin peptides. The peptide model used in this study is a synthetic, water-soluble, 14-residue cyclic analogue of gramicidin S which contains two well-defined type II' beta-turns connected by a highly stable, amphipathic, antiparallel beta-sheet. A variety of coded and noncoded amino acids were systematically substituted in one of the two type II' turns to analyze the effects of backbone chirality, side-chain steric restriction, and side-chain/side-chain interactions. beta-Sheet content (as measured through a variety of experimental methods), molecular dynamics, and 3D structural analysis of the turn regions were used to assess the effects of each amino acid substitution on type II' beta-turn stabilization. Our results demonstrate that backbone heterochirality, which determines equatorial and axial side-chain orientation at the i+1 and i+2 residues of type II' turns, may account for up to 60% of type II' beta-turn stabilization. Steric restriction through side-chain N-alkylation appears to enhance type II' beta-turn propensity and may account for up to 20% of type II' beta-turn stabilization. Finally, aromatic/proline side-chain interactions appear to account for approximately 10% of type II' beta-turn stabilization. We believe this information could be particularly useful for the prediction of beta-turn propensity, the development of peptide-based drugs, and the de novo design of peptides, proteins, and peptidyl mimetics.
通过对10种特别设计的β-发夹肽进行全面的圆二色光谱(CD)、核磁共振(NMR)和分子动力学分析,探究了II'型β-转角的结构决定因素。本研究中使用的肽模型是短杆菌肽S的一种合成的、水溶性的、14个残基的环状类似物,它包含两个通过高度稳定的两亲性反平行β-折叠连接的明确的II'型β-转角。在两个II'型转角之一中系统地取代了各种编码和非编码氨基酸,以分析主链手性、侧链空间限制和侧链/侧链相互作用的影响。通过多种实验方法测量的β-折叠含量、分子动力学以及转角区域的三维结构分析,用于评估每种氨基酸取代对II'型β-转角稳定性的影响。我们的结果表明,决定II'型转角i+1和i+2残基处赤道和轴向侧链取向的主链异手性,可能占II'型β-转角稳定性的60%。通过侧链N-烷基化的空间限制似乎增强了II'型β-转角倾向,可能占II'型β-转角稳定性的20%。最后,芳香族/脯氨酸侧链相互作用似乎占II'型β-转角稳定性的约10%。我们认为这些信息对于预测β-转角倾向、基于肽的药物开发以及肽、蛋白质和肽模拟物的从头设计可能特别有用。