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Chirality Driven Twisting as a Driving Force of Primitive Folding in Binary Mixtures

机译:手性驱动扭曲作为二元混合物中原始折叠的驱动力

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The N-trifluoroacetylated alpha-aminoalcohols (TFAAAs) are able to form quasi-one-dimensional supramolecular fibers (strings) when chirally pure, and isometric precipitates in the racemate. The strings' formation leads to the reversible gelation of the solution. The fresh gels occupy all the available volume, however during the incubation, they contract and concentrate in the central region of the tube. The microscopic observations revealed the growth of the strings' diameter and their rotation in the course of the incubation at the hour time-scale. The rotation provides for the hairpins forming that serve as hooks on the rotating string, which provides for coiling of the strings, which was observed as gel contraction. The morphology of the twisted strings resembles the structures observed in modern proteins, which allows drawing an analogy between the folding of biopolymers and the formation of the clew of strings. In addition, the rotation found in the TFAAA gels is an example of a simple system converting the energy of intermolecular agglutination to the rotational movement, so they could be considered as molecular motors.
机译:N-三氟乙酰化α-氨基醇(TFAAAS)能够在外消旋体中的心脏纯度和等距沉淀物时形成准一维超分子纤维(弦)。字符串的形成导致解决方案的可逆凝胶化。新鲜凝胶占据所有可用体积,然而在孵化期间,它们在管的中心区域合同并集中在管中。显微镜观察揭示了弦直径的生长及其在时间级孵育过程中的旋转。旋转为发夹形成,其用作旋转柱上的钩子,其提供串的卷绕,这被观察到凝胶收缩。扭曲串的形态类似于在现代蛋白中观察到的结构,其允许在生物聚合物的折叠和形成弦线的折叠之间进行类比。另外,在TFAAA凝胶中发现的旋转是将分子间凝集能量的能量转化为旋转运动的简单系统的示例,因此它们可以被认为是分子电动机。

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