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基于约束双环和无环β-氨基酸衍生物的混合寡脲:亚单位构型对折叠的意义。

Mixed oligoureas based on constrained bicyclic and acyclic β-amino acids derivatives: on the significance of the subunit configuration for folding.

机构信息

IBMM, UMR 5247 CNRS, Universités Montpellier 1 et 2, 15 avenue Charles Flahault, 34093 Montpellier Cedex 5 (France).

出版信息

Chemistry. 2013 Dec 9;19(50):16963-71. doi: 10.1002/chem.201302829. Epub 2013 Nov 6.

Abstract

The combination of a non-functionalized constrained bicyclo[2.2.2]octane motif along with urea linkages allowed the formation of a highly rigid 2.5(12/14) helical system both in solution and the solid state. In this work, we aimed at developing stable and functionalized systems as promising materials for biological applications in investigating the impact of this constrained motif and its configuration on homo and heterochiral mixed-oligourea helix formation. Di-, tetra-, hexa-, and octa-oligoureas alternating the highly constrained bicyclic motif of (R) or (S) configuration with acyclic (S)-β(3)-amino acid derivatives were constructed. Circular dichroism (CD), NMR experiments, and the X-ray crystal structure of the octamer unequivocally proved that the alternating heterochiral R/S sequences form a stable left-handed 2.5-helix in contrast to the mixed (S/S)-oligoureas, which did not adopt any defined secondary structure. We observed that the (-)-synclinal conformation around the C(α)-C(β) bond of the acyclic residues, although sterically less favorable than the (+)-synclinal conformation, was imposed by the (R)-bicyclic amino carbamoyl (BAC) residue. This highlighted the strong ability of the BAC residue to drive helical folding in heterochiral compounds. The role of the stereochemistry of the BAC unit was assessed and a model was proposed to explain the misfolding of the S/S sequences.

摘要

非功能化的约束双环[2.2.2]辛烷基元与脲键的组合允许在溶液中和固态中形成高度刚性的 2.5(12/14)螺旋系统。在这项工作中,我们旨在开发稳定和功能化的系统,作为具有生物应用潜力的材料,以研究这种约束基元和其构型对同手性和异手性混合寡脲螺旋形成的影响。构建了具有(R)或(S)构型的高度约束双环基元与非环(S)-β(3)-氨基酸衍生物交替的二聚体、四聚体、六聚体和八聚体寡脲。圆二色(CD)、NMR 实验和八聚体的 X 射线晶体结构明确证明,与不采用任何确定二级结构的混合(S/S)寡脲相比,交替的异手性 R/S 序列形成稳定的左手 2.5 螺旋。我们观察到,尽管非环残基 C(α)-C(β)键周围的 (-)-顺式构象在立体上不如 (+)-顺式构象有利,但它是由(R)-双环氨基甲酰基(BAC)残基强制形成的。这突出了 BAC 残基在异手性化合物中驱动螺旋折叠的强大能力。评估了 BAC 单元立体化学的作用,并提出了一个模型来解释 S/S 序列的错误折叠。

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