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开启和关闭肽轮烷中手性的表达。

Switching "on" and "off" the expression of chirality in peptide rotaxanes.

作者信息

Asakawa Masumi, Brancato Giuseppe, Fanti Marianna, Leigh David A, Shimizu Toshimi, Slawin Alexandra M Z, Wong Jenny K Y, Zerbetto Francesco, Zhang Songwei

机构信息

Nanoarchitectonics Research Center, National Institute of Advanced Industrial Science and Technology, Tsukuba Central 5, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8565, Japan.

出版信息

J Am Chem Soc. 2002 Mar 27;124(12):2939-50. doi: 10.1021/ja015995f.

Abstract

The hydrogen-bond-directed synthesis, X-ray crystal structures, and optical properties of the first chiral peptide rotaxanes are reported. Collectively these systems provide the first examples of single molecular species where the expression of chirality in the form of a circular dichroism (CD) response can selectively be switched "on" or "off", and its magnitude altered, through controlling the interactions between mechanically interlocked submolecular components. The switching is achievable both thermally and through changes in the nature of the environment. Peptido[2]rotaxanes consisting of an intrinsically achiral benzylic amide macrocycle locked onto various chiral dipeptide (Gly-L-Ala, Gly-L-Leu, Gly-L-Met, Gly-L-Phe, and Gly-L-Pro) threads exhibit strong (10-20k deg cm(2) dmol(-1)) negative induced CD (theta;) values in nonpolar solvents (e.g. CHCl(3)), where the intramolecular hydrogen bonding between thread and macrocycle is maximized. In polar solvents (e.g., MeOH), where the intercomponent hydrogen bonding is weakened, or switched off completely, the elliptical polarization falls close to zero in some cases and can even be switched to large positive values in others. Importantly, the mechanism of generating the switchable CD response in the chiral peptide rotaxanes is also determined: a combination of semiempirical calculations and geometrical modeling using the continuous chirality measure (CCM) shows that the chirality is transmitted from the amino acid asymmetric center on the thread via the macrocycle to the C-terminal stopper of the rotaxane. This understanding could have important implications for other areas where chiral transmission from one chemical entity to another underpins a physical or chemical response, such as the seeding of supertwisted nematic liquid crystalline phases or asymmetric synthesis.

摘要

报道了首例手性肽轮烷的氢键导向合成、X射线晶体结构及光学性质。总体而言,这些体系提供了首个单分子物种的实例,通过控制机械互锁的亚分子组分之间的相互作用,以圆二色性(CD)响应形式表现出的手性可以选择性地“开启”或“关闭”,其幅度也可改变。这种切换可通过热作用以及环境性质的变化来实现。由本质上无手性的苄基酰胺大环锁定在各种手性二肽(甘氨酸-L-丙氨酸、甘氨酸-L-亮氨酸、甘氨酸-L-甲硫氨酸、甘氨酸-L-苯丙氨酸和甘氨酸-L-脯氨酸)链上构成的肽[2]轮烷,在非极性溶剂(如CHCl₃)中表现出强烈的(10 - 20k deg cm² dmol⁻¹)负诱导CD(θ)值,此时链与大环之间的分子内氢键达到最大化。在极性溶剂(如甲醇)中,组分间氢键减弱或完全关闭,在某些情况下椭圆偏振接近零,在其他情况下甚至可切换为大的正值。重要的是,还确定了手性肽轮烷中产生可切换CD响应的机制:使用连续手性量度(CCM)的半经验计算和几何建模相结合表明,手性从链上的氨基酸不对称中心通过大环传递至轮烷的C端封端基。这种认识可能对其他领域具有重要意义,在这些领域中,从一个化学实体到另一个化学实体的手性传递是物理或化学反应的基础,例如超扭曲向列液晶相的晶种形成或不对称合成。

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