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End-to-End Stacking and Liquid Crystal Condensation of 6-to 20-Base Pair DNA Duplexes

机译:6至20个碱基对DNA双链体的端对端堆叠和液晶缩合

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摘要

Short complementary B-form DNA oligomers, 6 to 20 base pairs in length, are found to exhibit nematic and columnar liquid crystal phases, even though such duplexes lack the shape anisotropy required for liquid crystal ordering. Structural study shows that these phases are produced by the end-to-end adhesion and consequent stacking of the duplex oligomers into polydisperse anisotropic rod-shaped aggregates, which can order into liquid crystals. Upon cooling mixed solutions of short DNA oligomers, in which only a small fraction of the DNA present is complementary, the duplex-forming oligomers phase-separate into liquid crystal droplets, leaving the unpaired single strands in isotropic solution. In a chemical environment where oligomer ligation is possible, such ordering and condensation would provide an autocatalytic link whereby complementarity promotes the extended polymerization of complementary oligomers.
机译:发现短的互补B型DNA低聚物,长度为6至20个碱基对,表现出向列相和柱状液晶相,即使这种双链体缺乏液晶排序所需的形状各向异性。结构研究表明,这些相是由端到端的粘附和随后的双相低聚物堆积成多分散的各向异性棒状聚集体(可以排列成液晶)而产生的。冷却短的DNA低聚物的混合溶液(其中仅存在的一小部分DNA是互补的)后,形成双链体的低聚物会相分离成液晶液滴,从而在各向同性溶液中留下未配对的单链。在可能发生低聚物连接的化学环境中,这种有序和缩合将提供自催化连接,从而互补性会促进互补低聚物的扩展聚合。

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