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肽折叠的立体化学控制。

Stereochemical control of peptide folding.

作者信息

Kaul R, Balaram P

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore.

出版信息

Bioorg Med Chem. 1999 Jan;7(1):105-17. doi: 10.1016/s0968-0896(98)00221-1.

Abstract

Stereochemically constrained amino acid residues that strongly favour specific backbone conformations may be used to nucleate and stabilize specific secondary structures in designed peptides. An overview of the use of alphaalpha-dialkyl amino acids in stabilizing helical structures in synthetic peptides is presented, with an emphasis on work carried out in the authors laboratory. Alpha-aminoisobutyric acid (Aib) and related achiral homologs facilitate stable helix formation in oligopeptides as exemplified by a large number of crystal structure determinations in the solid state. The ability to design conformationally rigid helical modules has been exploited in attempts to design structurally well characterized helix-linker helix, using potential nonhelical linking segments. Beta-hairpin design has been approached by exploiting the tendency of 'prime turns' to nucleate hairpin formation. The use of nucleating (D)Pro-Gly segments has resulted in the generation of several well characterized beta-hairpin structures, including the crystallographic observation of beta-hairpin in a synthetic apolar octapeptide. Extensions of this approach to three stranded beta-sheets and larger structures containing multiple (D)Pro-Gly segments appear readily possible.

摘要

强烈倾向于特定主链构象的立体化学受限氨基酸残基可用于在设计的肽中形成特定二级结构的核心并使其稳定。本文概述了α,α-二烷基氨基酸在稳定合成肽螺旋结构中的应用,并着重介绍了作者实验室开展的工作。α-氨基异丁酸(Aib)及相关非手性同系物有助于寡肽中稳定螺旋的形成,大量固态晶体结构测定结果证明了这一点。利用潜在的非螺旋连接片段,尝试设计结构特征明确的螺旋-连接子-螺旋结构时,构象刚性螺旋模块的设计能力得到了利用。通过利用“prime turn”形成发夹结构的趋势来进行β-发夹设计。使用成核(D)Pro-Gly片段已产生了几种特征明确的β-发夹结构,包括在合成非极性八肽中对β-发夹的晶体学观察。将这种方法扩展到三链β-折叠和包含多个(D)Pro-Gly片段的更大结构似乎很容易实现。

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