首页> 外文期刊>Journal of the American Chemical Society >Folding and Assembly of Short α, β, γ-Hybrid Peptides: Minor Variations in Sequence and Drastic Differences in Higher-Level Structures
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Folding and Assembly of Short α, β, γ-Hybrid Peptides: Minor Variations in Sequence and Drastic Differences in Higher-Level Structures

机译:短α,β,γ杂合肽的折叠和组装:高级结构中序列的微小变化和巨大差异

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Multilevel protein structures typically involve polypeptides of sufficient lengths. Here we report the folding and assembly of seven short tetrapeptides sharing the same types of alpha-, beta-, and aromatic gamma-amino acid residues. These are two sets of hybrid peptides, with three members in one set and four in the other, having complementary hydrogen bonding sequences that were hypothesized to pair into linear H-bonded duplexes. However, instead of undergoing the anticipated pairing, the initially examined three oligomers, 1 and 2a or 2b, differing only in their central alpha beta hybrid dipeptide sequence, do not associate with each other and exhibit distinctly different folding behavior. Experiments based on NMR and mass spectrometry, along with computational studies and systematic inference, reveal that oligomer 1 folds into an expanded beta-turn containing an unusual hybrid alpha/beta-amino acid sequence composed of glycine and beta-alanine, two alpha- and beta-amino acid residues that are conformationally most flexible, and peptides 2a and 2b adopt a noncanonical, extended helical conformation and dimerize into double helices undergoing rapid conformational exchange or helix inversion. The different central dipeptide sequences, alpha beta vs beta alpha, result in drastically different intramolecular H-bonding patterns that are responsible for the observed folding behavior of 1 and 2. The revealed turn and double helix have few natural or synthetic counterparts, and provide novel and unique folding prototypes based on which chiral alpha- and beta-amino acids are incorporated. The resultant derivatives 1a, 1b, 2c, and 2d follow the same folding and assembling behavior and demonstrate the generality of this system with the formation of expanded beta-turns and double helices with enhanced folding stabilities, hampered helix inversion, as well as defined and dominant helical sense. This work has demonstrated the unique capability of synthetic foldamers in generating structures with fascinating folding and assembling behavior. The revealed systems offer ample opportunity for further structural optimization and applications.
机译:多级蛋白质结构通常涉及足够长度的多肽。在这里,我们报告了七个短四肽的折叠和组装,它们共享相同类型的α-,β-和芳香族γ-氨基酸残基。这些是两组杂合肽,一组中有三个成员,另一组中有四个成员,它们具有互补的氢键序列,假设它们配对成线性的H键合双链体。然而,不是进行预期的配对,而是最初检查的三个寡聚物1和2a或2b仅在其中央α-β杂合二肽序列上不同,它们不彼此缔合并且表现出明显不同的折叠行为。基于NMR和质谱的实验以及计算研究和系统推断表明,低聚物1折叠成一个扩展的β-转弯,其中包含由甘氨酸和β-丙氨酸组成的不寻常的杂化α/β​​-氨基酸序列,两个α-和构象最灵活的β-氨基酸残基以及肽2a和2b采用非规范的扩展螺旋构象,并二聚为经历快速构象交换或螺旋反转的双螺旋。不同的中央二肽序列,即alpha beta vs beta alpha,导致分子内的H键键模式大不相同,这是观察到的1和2折叠行为的原因。揭示的转折和双螺旋几乎没有天然或合成的对应物,并且提供了新颖以及独特的折叠原型,基于它们的手性α-和β-氨基酸被并入。所得的导数1a,1b,2c和2d遵循相同的折叠和组装行为,并通过形成扩展的β-转弯和具有增强的折叠稳定性的双螺旋结构,阻碍的螺旋反转以及定义和定义来证明该系统的一般性。优势螺旋感。这项工作证明了合成折叠剂在产生具有引人入胜的折叠和组装行为的结构方面的独特能力。揭示的系统为进一步的结构优化和应用提供了充足的机会。

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