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α/β杂合肽中序列特异性的异常(1→2)型螺旋转角

Sequence-specific unusual (1-->2)-type helical turns in alpha/beta-hybrid peptides.

作者信息

Prabhakaran Panchami, Kale Sangram S, Puranik Vedavati G, Rajamohanan P R, Chetina Olga, Howard Judith A K, Hofmann Hans-Jörg, Sanjayan Gangadhar J

机构信息

Division of Organic Chemistry, Center for Materials Characterization, Central NMR Facility, National Chemical Laboratory, Dr. Homi Bhabha Road, Pune 411 008, India.

出版信息

J Am Chem Soc. 2008 Dec 31;130(52):17743-54. doi: 10.1021/ja804297f.

Abstract

This article describes novel conformationally ordered alpha/beta-hybrid peptides consisting of repeating l-proline-anthranilic acid building blocks. These oligomers adopt a compact, right-handed helical architecture determined by the intrinsic conformational preferences of the individual amino acid residues. The striking feature of these oligomers is their ability to display an unusual periodic pseudo beta-turn network of nine-membered hydrogen-bonded rings formed in the forward direction of the sequence by 1-->2 amino acid interactions both in solid-state and in solution. Conformational investigations of several of these oligomers by single-crystal X-ray diffraction, solution-state NMR, and ab initio MO theory suggest that the characteristic steric and dihedral angle restraints exerted by proline are essential for stabilizing the unusual pseudo beta-turn network found in these oligomers. Replacing proline by the conformationally flexible analogue alanine (Ala) or by the conformationally more constrained alpha-amino isobutyric acid (Aib) had an adverse effect on the stabilization of this structural architecture. These findings increase the potential to design novel secondary structure elements profiting from the steric and dihedral angle constraints of the amino acid constituents and help to augment the conformational space available for synthetic oligomer design with diverse backbone structures.

摘要

本文描述了由重复的L-脯氨酸-邻氨基苯甲酸结构单元组成的新型构象有序的α/β-杂合肽。这些低聚物采用紧凑的右手螺旋结构,该结构由各个氨基酸残基的固有构象偏好决定。这些低聚物的显著特征是它们能够展示一种不寻常的周期性假β-转角网络,该网络由固态和溶液中序列正向的1→2氨基酸相互作用形成九元氢键环。通过单晶X射线衍射、溶液态核磁共振和从头算分子轨道理论对其中几种低聚物进行的构象研究表明,脯氨酸施加的特征空间位阻和二面角限制对于稳定这些低聚物中发现的不寻常假β-转角网络至关重要。用构象灵活的类似物丙氨酸(Ala)或构象更受限的α-氨基异丁酸(Aib)取代脯氨酸对这种结构架构的稳定性有不利影响。这些发现增加了利用氨基酸成分的空间位阻和二面角限制设计新型二级结构元件的潜力,并有助于扩大可用于具有不同主链结构的合成低聚物设计的构象空间。

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