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首页> 外文期刊>Angewandte Chemie >Spontaneous Symmetry Breaking in the Formation of Supramolecular Polymers: Implications for the Origin of Biological Homochirality
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Spontaneous Symmetry Breaking in the Formation of Supramolecular Polymers: Implications for the Origin of Biological Homochirality

机译:在成分聚合物的形成中破开的自发对称性:对生物沉积物起源的影响

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摘要

Aqueous solutions of the achiral, monomeric, nucleobase mimics (2,4,6-triaminopyrimidine, TAP, and a cyanuric acid derivative, CyCo6) spontaneously assemble into macroscopic homochiral domains of supramolecular polymers. These assemblies exhibit a high degree of chiral amplification. Addition of a small quantity of one handedness of a chiral derivative of CyCo6 generates exclusively homochiral structures. This system exhibits the highest reported degree of chiral amplification for dynamic helical polymers or supramolecular helices. Significantly, homochiral polymers comprised of hexameric rosettes with structural features that resemble nucleic acids are formed from mixtures of cyanuric acid (Cy) and ribonucleotides (L-, d-pTARC) that arise spontaneously from the reaction of TAP with the sugars. These findings support the hypothesis that nucleic acid homochirality was a result of symmetry breaking at the supramolecular polymer level.
机译:Achiral,单体,核酸酶模拟物(2,4,6-三胺嘧啶,龙头和氰尿酸衍生物,Cyco6)的水溶液自发地组装成超分子聚合物的宏观冠大学域。 这些组件具有高度的手性扩增。 添加Cyco6的手性衍生物的少量一致性地产生独家冠编制。 该系统表现出称为动态螺旋聚合物或超分子螺旋的最高报告的手性扩增程度。 显着地,由具有类似氰酸(Cy)和核糖核苷酸(L-,D-PTARC)的具有类似核酸的结构特征的六聚玫瑰花属组成的冠制聚合物由与糖的反应产生自发的氰尿酸(CY)和核糖核苷酸(L-,D-PTARC)形成。 这些发现支持的假设是核酸批量论是在超分子聚合物水平处断裂的结果。

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