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Expanding the polypeptide backbone: hydrogen-bonded conformations in hybrid polypeptides containing the higher homologues of α-amino acids

机译:扩大多肽主链:杂合多肽中的氢键构象,该杂合多肽包含较高的α-氨基酸同源性

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摘要

Half a century has passed since the hydrogen-bonded secondary structures of polypeptides and proteins were first recognized. An extraordinary wealth of conformational information is now available on peptides and proteins, which are formed of α-amino acid residues. More recently, the discovery of well-folded structures in oligopeptides containing β-amino acids has focused a great deal of current interest on the conformational properties of peptides constructed from higher homologues (ω) of α-amino acids. This review examines the nature of intramolecularly hydrogen-bonded conformations of hybrid peptides formed by amino acid residues, with a varying number of backbone atoms. The β-turn, a ubiquitous structural feature formed by two residue (αα) segments in proteins and peptides, is stabilized by a 10-atom (C10) intramolecular 4→1 hydrogen bond. Hybrid turns may be classified by comparison with their αα counterparts. The available crystallographic information on hydrogen-bonded hybrid turns is surveyed in this review. Several recent examples demonstrate that individual ω-amino acid residues and hybrid dipeptide segments may be incorporated into the regular structures of α-peptides. Examples of both peptide helices and hairpins are presented. The present review explores the relationships between folded conformations in hybrid sequences and their counterparts in all α-residue sequences. The use of stereochemically constrained ω-residues promises to expand the range of peptide design strategies to include ω-amino acids. This approach is exemplified by well-folded structures like the C12 (αγ) and C14 (γγ) helices formed in short peptides containing multiply substituted γ-residues. The achiral γ-residue gabapentin is a readily accessible building block in the design of peptides containing γ-amino acids. The construction of globular polypeptide structures using diverse hybrid sequences appears to be a realistic possibility.
机译:自从首次认识到多肽和蛋白质的氢键结合二级结构以来,已经过去了半个世纪。现在可获得有关由α-氨基酸残基形成的肽和蛋白质的大量构象信息。最近,在含有β-氨基酸的寡肽中良好折叠的结构的发现将大量的当前关注集中在由α-氨基酸的较高同源物(ω)构成的肽的构象性质上。这篇综述检查了由氨基酸残基形成的具有不同数目主链原子的杂合肽的分子内氢键构象的性质。 β-转角是蛋白质和肽中两个残基(αα)片段形成的普遍结构特征,通过10原子(C10)分子内4→1氢键稳定。混合匝可以通过与它们的αα对应物进行比较来分类。在这篇评论中调查了氢键杂化匝的可用晶体学信息。最近的几个例子表明,单个的ω-氨基酸残基和杂二肽片段可以掺入α-肽的规则结构中。给出了肽螺旋和发夹的例子。本综述探讨了杂合序列中的折叠构象与所有α-残基序列中的对应构象之间的关系。立体化学约束的ω-残基的使用有望将肽设计策略的范围扩大到包括ω-氨基酸。这种方法以在包含多个取代的γ-残基的短肽中形成的C12(αγ)和C14(γγ)螺旋等折叠结构为例。在包含γ-氨基酸的肽设计中,非手性γ残基加巴喷丁是容易获得的结构单元。使用多种杂合序列构建球形多肽结构似乎是现实的可能性。

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