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DNA nanotechnology provides an avenue for the construction of programmable dynamic molecular systems

机译:DNA纳米技术为施工提供了可编程动态分子系统的途径提供了一种途径

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摘要

Self-assembled supramolecular structures in living cells and their dynamics underlie various cellular events, such as endocytosis, cell migration, intracellular transport, cell metabolism, and gene expression. Spatiotemporally regulated association/dissociation and generation/degradation of assembly components is one of the remarkable features of biological systems. The significant advancement in DNA nanotechnology over the last few decades has enabled the construction of various-shaped nanostructures via programmed self-assembly of sequence-designed oligonucleotides. These nanostructures can further be assembled into micrometer-sized structures, including ordered lattices, tubular structures, macromolecular droplets, and hydrogels. In addition to being a structural material, DNA is adopted to construct artificial molecular circuits capable of activating/inactivating or producing/decomposing target DNA molecules based on strand displacement or enzymatic reactions. In this review, we provide an overview of recent studies on artificially designed DNA-based self-assembled systems that exhibit dynamic features, such as association/dissociation of components, phase separation, stimulus responsivity, and DNA circuit-regulated structural formation. These biomacromolecule-based, bottom-up approaches for the construction of artificial molecular systems will not only throw light on bio-inspired nano/micro engineering, but also enable us to gain insights into how autonomy and adaptability of living systems can be realized.
机译:活细胞中的自组装超分子结构及其动力学在各种细胞事件下进行,例如内吞作用,细胞迁移,细胞内转运,细胞代谢和基因表达。时尚调节的协会/解离以及组装组分的发电和产生/降解是生物系统的显着特征之一。在过去几十年中,DNA纳米技术的显着发展使得通过序列设计的寡核苷酸的编程自组装使各种形状的纳米结构构成。这些纳米结构可以进一步组装成微米尺寸的结构,包括有序的晶格,管状结构,大分子液滴和水凝胶。除了形成结构材料之外,采用DNA构建能够基于链位移或酶促反应激活/灭活或产生/分解靶DNA分子的人工分子电路。在本文中,我们概述了最近关于人工设计的基于DNA的自组装系统的研究,其表现出动态特征,例如组分,相分离,刺激反应性和DNA电压调节结构形成的关联/解离。这些基于生物摩擦的施工的基于生物摩擦性的基于生物化的分子系统的途径,不仅可以在生物启发的纳米/微型工程上抛光,而且还使我们能够实现如何实现生活系统的自主权和自治权的见解。

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