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由DNA制成的手性系统。

Chiral Systems Made from DNA.

作者信息

Winogradoff David, Li Pin-Yi, Joshi Himanshu, Quednau Lauren, Maffeo Christopher, Aksimentiev Aleksei

机构信息

Center for the Physics of Living Cells University of Illinois at Urbana-Champaign Urbana IL USA.

Department of Physics University of Illinois at Urbana-Champaign Urbana IL USA.

出版信息

Adv Sci (Weinh). 2021 Jan 21;8(5):2003113. doi: 10.1002/advs.202003113. eCollection 2021 Mar.

Abstract

The very chemical structure of DNA that enables biological heredity and evolution has non-trivial implications for the self-organization of DNA molecules into larger assemblies and provides limitless opportunities for building functional nanostructures. This progress report discusses the natural organization of DNA into chiral structures and recent advances in creating synthetic chiral systems using DNA as a building material. How nucleic acid chirality naturally comes into play in a diverse array of situations is considered first, at length scales ranging from an individual nucleotide to entire chromosomes. Thereafter, chiral liquid crystal phases formed by dense DNA mixtures are discussed, including the ongoing efforts to understand their origins. The report then summarizes recent efforts directed toward building chiral structures, and other structures of complex topology, using the principle of DNA self-assembly. Discussed last are existing and proposed functional man-made nanostructures designed to either probe or harness DNA's chirality, from plasmonics and spintronics to biosensing.

摘要

DNA的化学结构实现了生物遗传与进化,这对于DNA分子自组装成更大的聚集体具有重要意义,并为构建功能性纳米结构提供了无限机遇。本进展报告讨论了DNA自然形成手性结构的过程,以及利用DNA作为构建材料创建合成手性系统的最新进展。首先考虑核酸手性如何在从单个核苷酸到整个染色体的各种长度尺度的不同情况下自然发挥作用。此后,讨论了由密集DNA混合物形成的手性液晶相,包括目前对其起源的研究。报告接着总结了利用DNA自组装原理构建手性结构以及其他复杂拓扑结构的最新研究。最后讨论了现有的和提议的功能性人造纳米结构,这些结构旨在探测或利用DNA的手性,从等离子体学和自旋电子学到生物传感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa2e/7927625/13bd593d6639/ADVS-8-2003113-g001.jpg

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